Product Description
Product Description
Product function: It’s suitable For low-efficiency wells, test wells and remote wells wellhead natural gas recovery, local production of CNG. finished products The dry gas recovery skid can adapt to the characteristics and working conditions of well gas, the installation is simple, the period is short, and it is convenient for the rapid transfer of equipment.
The equipment flow diagram is as follows:
To better adapt to the field conditions of well gas recovery, the air intake separation system uses a high pressure separator to separate the gas and liquid level, using a liquid level controller to automatically control the liquid level; the pressurization system uses a hydraulic piston compressor, which can meet the intake pressure range of 3-20 MPa. Pressurization to 25 MPa, is more energy-efficient and leak-free than traditional mechanical pressurization, with low failure rate, high reliability and simple maintenance; the drying system adopts the A,B tower molecular sieve mode, which can be dried and regenerated simultaneously, with a maximum drying capacity of 2000 Nm3h, dew point is -55ºC; the control system is controlled by PLC logic control program to control each process such as separation, pressurization, drying, metering, instrument wind and so on, to realize unattended, automatic opening / stopping control; The filling metering system adopts mass Flowmeter, which meets the requirements of the state on metering, measuring range :1~4000 N m3/ h.
Application and parameter:
1.Gas intake separation system 2.Supercharging system 3.Drying system 4.Control system
5.Filling metering system 6.Fuel gas supply system 7.Housing system
| Structure | skid |
| Suction pressure | 3-20Mpa |
| Discharge pressure | 25Mpa |
| Gas treated ( Nm3/d) | 20000-50000 |
| Amount of treatment (t/d) | 50 |
| Main motor power | 135kw |
| Noise | ≤75dBa |
| Size | 10000mm*3000mm*3000mm |
| Total power | 170KW |
| Fuel tank (L) | 1500 |
| Scope of measurement (Nm3/h) | 1-4000 |
| Weight | ≈24t |
Product Advantage:
1. Skidding, high degree of integration, good flexibility, short construction period.
2.High degree of automation, centralized control points, low labor intensity.
3. Compressor adopts hydraulic piston type, which has the characteristics of wide intake range, energy saving, no leakage, very low failure rate and simple maintenance, so it can better adapt to the characteristics of large variation of wellbore pressure range.
4. No need to be equipped with water jacket CHINAMFG and pressure regulating equipment, safety risks are small, no throttling energy waste.
5.Use high pressure post dehydration, dehydration effect is good, conducive to product sales.
6. Recovery process equipment has strong adaptability to wellhead pressure and components, and the equipment input cost is small.
Company Profile
HangZhou Qidakon Energy Equipment Co., Ltd was established in 2007 in HangZhou, ZheJiang Province, with a plant covering an area of 18,000 square meters. We are specializing in the R&D, production and sales of natural gas compressor series products, we adhere to the professional, fine, specialty, brand development of the road, to provide customers with the best overall technical solutions of high-tech enterprises. Professional production and manufacturing of natural gas compressor for CNG filling station and its service, professional production and manufacturing of natural gas compressor for oil and gas field natural gas extraction, recovery, gathering and transportation, storage and transportation and after-sales service, products and services have covered the CNG market all over the country and major domestic oil and gas fields, and radiation to Russia, India and other Belt and Road foreign markets.
Qidakon company has always been committed to technological innovation. Its core business team has more than 30 years of working experience in compressor design and manufacturing, and led the drafting of the industry standard for hydraulic natural gas compressors for automobile filling stations (JB/T11422-2013). Obtained nearly 100 national patents, won the national technology innovation fund, and the first in the industry through the whole machine safety explosion-proof certification, by the Ministry of Science and Technology technology innovation fund committee identified as the national technology innovation products, with its “safety, energy saving, environmental protection, investment province, simple structure and many other advantages, in more than 20 provinces (autonomous regions) used, Market share is among the best, its technical advancement, reliability, economy and industry leading position by the national attention.
Qidakon adheres to the enterprise mission of “gas melts everything, the way to secure the world”, adheres to the business philosophy of “customer first and sustainable development”, forms the core values of “loyalty and dedication, innovation and transcendence, truth-seeking and honest, fair sharing” and the enterprise spirit of “persistence, cooperation, gratitude, tolerance, dedication”, and is determined to become a global CHINAMFG brand of gas supercharging system.
Our Advantages
Professional R&D Team
About 100 technical patents
Industry standard setter
The national industry standard JB/T 11422-2013 setter, Hydraulic Natural Gas Compressor for Automobile Filling Station, drives the technical progress of the industry and leads the development direction of the industry.
Advanced production workshop and strict production process
Sapare parts area Welding
Assemble skiding Pre-factory commissioning
Strict quality control process and testing
Certification and Honor
Partner & Cases
CNG refueling station site
Indian partner
After Sales Service
Service Purpose: Cusomer’s Satisfaction Our Pursuit
Pre- Sale Services
Provide installation and commissioning training for customer operators according to customer requirements. At the same time, organize and register product information and set up customer files.
Services on sale
The prodessional technical service engineer guides the installation and commissioning on the side or on the line. Andwarning of the possible failure of the equipment.
After-Sales Service
Timely and rapid response ,24-hour on-line service, provide lifelong maintenance.
FAQ
1.How long is the lead-time of production?
120Days.
2. What is the configuration of the whole skid equipment?
According to different customer needs to do the country’s explosion-proof certification and industry certification.
3.Which sea ports are supported for shipment?
ZheJiang ,HangZhou or Other international ports in China.
4.What payment methods are supported?
T/T, LC, D/P D/D ect.
5.What technical support is available?
We provide basic parameters for customers’ reference before sales; conduct relevant certifications according to customers’ requirements during sales; be responsible for online debugging until successful operation after sales; arrange technicians to provide on-site guidance when necessary.
6.How long is the warranty period?
For a period of 12 months from the date of commissioning at end customer site or 15 months from the date of receipt by purchaser , whichever is earlier.
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What Is the Noise Level of Gas Air Compressors?
The noise level of gas air compressors can vary depending on several factors, including the compressor’s design, engine type, operating conditions, and the presence of noise-reducing features. Here’s a detailed explanation:
1. Compressor Design:
The design of the gas air compressor can influence its noise level. Some compressors are engineered with noise reduction in mind, utilizing features such as sound insulation, vibration dampening materials, and mufflers to minimize noise generation. Compressors with enclosed cabinets or acoustic enclosures tend to have lower noise levels compared to open-frame compressors.
2. Engine Type:
The type of engine used in the gas air compressor can impact the noise level. Gas air compressors typically use internal combustion engines powered by gasoline or propane. Gasoline engines tend to produce higher noise levels compared to diesel engines or electric motors. However, advancements in engine technology have led to quieter gasoline engines with improved noise control.
3. Operating Conditions:
The operating conditions of the gas air compressor can affect the noise level. Factors such as the load capacity, speed of operation, and ambient temperature can influence the amount of noise generated. Compressors operating at higher loads or speeds may produce more noise compared to those running at lower levels.
4. Noise-Reducing Features:
Some gas air compressors are equipped with noise-reducing features to minimize sound emissions. These may include built-in silencers, acoustic enclosures, or noise-absorbing materials. Such features help dampen the noise produced by the compressor and reduce its overall noise level.
5. Manufacturer Specifications:
Manufacturers often provide noise level specifications for their gas air compressors. These specifications typically indicate the sound pressure level (SPL) in decibels (dB) at a specific distance from the compressor. It is important to refer to these specifications to get an idea of the expected noise level of a particular compressor model.
6. Distance and Location:
The distance between the gas air compressor and the listener can impact the perceived noise level. As sound waves disperse, the noise level decreases with distance. Locating the compressor in an area that is isolated or distant from occupied spaces can help minimize the impact of noise on the surrounding environment.
It is important to note that gas air compressors, especially those used in industrial or heavy-duty applications, can generate substantial noise levels. Occupational health and safety regulations may require the use of hearing protection for individuals working in close proximity to loud compressors.
Overall, the noise level of gas air compressors can vary, and it is advisable to consult the manufacturer’s specifications and consider noise-reducing features when selecting a compressor. Proper maintenance, such as regular lubrication and inspection of components, can also help minimize noise levels and ensure optimal performance.
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How Do You Transport Gas Air Compressors to Different Job Sites?
Transporting gas air compressors to different job sites requires careful planning and consideration of various factors. Here’s a detailed explanation:
1. Equipment Size and Weight:
The size and weight of the gas air compressor are crucial factors to consider when planning transportation. Gas air compressors come in different sizes and configurations, ranging from portable units to larger, skid-mounted or trailer-mounted compressors. Assess the dimensions and weight of the compressor to determine the appropriate transportation method.
2. Transportation Modes:
Gas air compressors can be transported using different modes of transportation, depending on their size, weight, and distance to the job site:
- Truck or Trailer: Smaller gas air compressors can be loaded onto a truck bed or trailer for transportation. Ensure that the vehicle or trailer has the necessary capacity to accommodate the weight and dimensions of the compressor.
- Flatbed or Lowboy Trailer: Larger gas compressors or skid-mounted units may require transportation on a flatbed or lowboy trailer. These trailers are designed to carry heavy equipment and provide stability during transportation.
- Shipping Container: For long-distance transportation or international shipments, gas air compressors can be transported in shipping containers. The compressor must be properly secured and protected within the container to prevent any damage during transit.
3. Securing and Protection:
It is essential to secure the gas air compressor properly during transportation to prevent shifting or damage. Use appropriate tie-down straps, chains, or fasteners to secure the compressor to the transport vehicle or trailer. Protect the compressor from potential impacts, vibrations, and weather conditions by using suitable covers, padding, or weatherproof enclosures.
4. Permits and Regulations:
Depending on the size and weight of the gas air compressor, special permits or escorts may be required for transportation. Familiarize yourself with local, state, and federal regulations regarding oversize or overweight loads, and obtain the necessary permits to ensure compliance with transportation laws.
5. Route Planning:
Plan the transportation route carefully, considering factors such as road conditions, height and weight restrictions, bridges, tunnels, and any other potential obstacles. Identify alternative routes if needed, and communicate with transportation authorities or agencies to ensure a smooth and safe journey.
6. Equipment Inspection and Maintenance:
Prior to transportation, conduct a thorough inspection of the gas air compressor to ensure it is in proper working condition. Check for any leaks, damage, or loose components. Perform routine maintenance tasks, such as oil changes, filter replacements, and belt inspections, to minimize the risk of equipment failure during transportation.
In summary, transporting gas air compressors to different job sites requires considering factors such as equipment size and weight, choosing appropriate transportation modes, securing and protecting the compressor, obtaining necessary permits, planning the route, and conducting equipment inspection and maintenance. Careful planning and adherence to transportation regulations contribute to the safe and efficient transportation of gas air compressors.
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Can Gas Air Compressors Be Used in Remote Locations?
Yes, gas air compressors are well-suited for use in remote locations where access to electricity may be limited or unavailable. Their portability and reliance on gas engines make them an ideal choice for providing a reliable source of compressed air in such environments. Here’s a detailed explanation of how gas air compressors can be used in remote locations:
1. Independence from Electrical Grid:
Gas air compressors do not require a direct connection to the electrical grid, unlike electric air compressors. This independence from the electrical grid allows gas air compressors to be used in remote locations, such as wilderness areas, remote job sites, or off-grid locations, where it may be impractical or cost-prohibitive to establish electrical infrastructure.
2. Mobility and Portability:
Gas air compressors are designed to be portable and easy to transport. They are often equipped with handles, wheels, or trailers, making them suitable for remote locations. The gas engine powering the compressor provides mobility, allowing the compressor to be moved to different areas within the remote location as needed.
3. Fuel Versatility:
Gas air compressors can be fueled by various types of combustible gases, including gasoline, diesel, natural gas, or propane. This fuel versatility ensures that gas air compressors can adapt to the available fuel sources in remote locations. For example, if gasoline or diesel is readily available, the gas air compressor can be fueled with these fuels. Similarly, if natural gas or propane is accessible, the compressor can be configured to run on these gases.
4. On-Site Power Generation:
In remote locations where electricity is limited, gas air compressors can serve as on-site power generators. They can power not only the compressor itself but also other equipment or tools that require electricity for operation. This versatility makes gas air compressors useful for a wide range of applications in remote locations, such as powering lights, tools, communication devices, or small appliances.
5. Off-Grid Operations:
Gas air compressors enable off-grid operations, allowing tasks and activities to be carried out in remote locations without relying on external power sources. This is particularly valuable in industries such as mining, oil and gas exploration, forestry, or construction, where operations may take place in remote and isolated areas. Gas air compressors provide the necessary compressed air for pneumatic tools, drilling equipment, and other machinery required for these operations.
6. Emergency Preparedness:
Gas air compressors are also beneficial for emergency preparedness in remote locations. In situations where natural disasters or emergencies disrupt the power supply, gas air compressors can provide a reliable source of compressed air for essential equipment and systems. They can power emergency lighting, communication devices, medical equipment, or backup generators, ensuring operational continuity in critical situations.
7. Adaptability to Challenging Environments:
Gas air compressors are designed to withstand various environmental conditions, including extreme temperatures, humidity, dust, and vibrations. This adaptability to challenging environments makes them suitable for use in remote locations, where environmental conditions may be harsh or unpredictable.
Overall, gas air compressors can be effectively used in remote locations due to their independence from the electrical grid, mobility, fuel versatility, on-site power generation capabilities, suitability for off-grid operations, emergency preparedness, and adaptability to challenging environments. These compressors provide a reliable source of compressed air, enabling a wide range of applications in remote settings.


editor by lmc 2024-11-19
China best Low Pressure Nitrogen Helium Hydrogen Oxygen 350bar Gas Compressor arb air compressor
Product Description
Reciprocating Micro-oil/ oil-free Piston Compressor
( Blue Font To View Hyperlink)
Our company specialize in making various kinds of compressors, such as:Diaphragm compressor,Piston compressor, Air compressors,Nitrogen generator,Oxygen generator ,Gas cylinder,etc. All products can be customized according to your parameters and other requirements.
This series of oil-free compressor is one of the first products produced by our factory in China. The product has the characteristics of low speed, high component strength, stable operation, long service life and convenient maintenance. This series compressor is in the form of unit. It integrates compressor, gas-liquid separator, filter, 2 position four-way valve, safety valve, check valve, explosion-proof motor and chassis. The utility model has the advantages of small volume, light weight, low noise, good sealing performance, easy installation, simple operation, etc.
Main components
1. Motion system: crankshaft, piston connecting rod assembly, coupling, etc.
2. Air distribution system: valve plate, valve spring, etc.
3. Sealing system: piston ring, oil seal, gasket, packing, etc.
4. Body system: crankcase, cylinder block, cylinder liner, cover plate, etc.
5. Lubrication system: lubricating oil pump, oil filter, pressure regulating valve, etc.;
6. Safety and energy regulation systems: safety valves, energy regulation devices, etc.
Working principle of piston compressor
When the crankshaft of the piston compressor rotates, the piston will reciprocate through the transmission of the connecting rod, and the working volume formed by the inner wall of the cylinder, the cylinder head and the top surface of the piston will periodically change. When the piston of a piston compressor starts to move from the cylinder head, the working volume in the cylinder gradually increases. At this time, the gas flows along the intake pipe and pushes the intake valve to enter the cylinder until the working volume reaches the maximum. , The intake valve is closed; when the piston of the piston compressor moves in the reverse direction, the working volume in the cylinder is reduced, and the gas pressure is increased. When the pressure in the cylinder reaches and is slightly higher than the exhaust pressure, the exhaust valve opens and the gas is discharged from the cylinder , Until the piston moves to the limit position, the exhaust valve is closed. When the piston of the piston compressor moves in the reverse direction again, the above process repeats. In short, the crankshaft of a piston compressor rotates once, the piston reciprocates once, and the process of air intake, compression, and exhaust is realized in the cylinder, which completes a work cycle.
Advantages of piston compressor
1. The applicable pressure range of the piston compressor is wide, and the required pressure can be reached regardless of the flow rate;
2. The piston compressor has high thermal efficiency and low unit power consumption;
3. Strong adaptability, that is, a wide exhaust range, and is not affected by the pressure level, and can adapt to a wider pressure range and cooling capacity requirements;
4. Piston compressors have low requirements for materials, and use common steel materials, which is easier to process and lower in cost;
5. The piston compressor is relatively mature in technology, and has accumulated rich experience in production and use;
6. The device system of the piston compressor is relatively simple.
Note: In the unloading process, the compressor pressurizes the gas from the storage tank and then presses it into the tank car through the gas-phase pipeline, and presses the liquid from the tank car to the storage tank through the gas-phase differential pressure to complete the unloading process. When the gas phase is pressurized, the temperature of the gas phase will rise. At this time, forced cooling is not necessary, because if the gas phase is compressed and then cooled, it is easy to liquefy, and it is difficult to establish the pressure difference of the gas phase, which is not conducive to the replacement of the gas phase and the liquid phase. In short, it will cause the prolongation of the unloading process. If it is necessary to recover the residual gas, the cooler can be selected to forcibly cool the gas phase during the recovery operation, so as to recover the residual gas as soon as possible.The loading process is opposite to the unloading process.
Chemical Process Compressor Description
Chemical process compressors refer to process reciprocating piston compressors used to compress various single or mixed media gases in petroleum and chemical processes, as well as chemical exhaust gas recycling systems. Its main function is to transport the medium gas in the reaction device and provide the required pressure to the reaction device.
Features 1. Designed for specific process flow. 2. The whole machine is skid-mounted and advanced in structure. 3. The compressor types are: Z type, D type, M type. 4. The middle body of the slideway and the cylinder can be designed in different structural forms according to the process requirements.
Reference Technical parameters and specifications
| Model | Volume flow(Nm3/h) | Suction pressure(Mpa) | Exhaust pressure (Mpa) | Motor power(kw) | Dimension (mm) | |
| 1 | ZW-0.4/ 2-250 | 60 | 0.2 | 25 | 18.5 | 2800*2200*1600 |
| 2 | ZW-0.81/ (1~3)-25 | 120 | 0.1~0.3 | 2.5 | 22 | 1000*580*870 |
| 3 | DW-5.8/0.5-5 | 400~500 | 0.05 | 0.5 | 37 | 2000*1600*1200 |
| 4 | DW-10/2 | 510 | Atmospheric pressure | 0.2 | 37 | 2000*1600*1200 |
| 5 | DW-6.0/5 | 300 | Atmospheric pressure | 0.5 | 37 | 2000*1600*1200 |
| 6 | DW-0.21/(20~30)-250 | 270 | 2~3 | 25 | 45 | 3200*2200*1600 |
| 7 | ZW-0.16/60-250 | 480 | 6 | 25 | 45 | 3000*2200*1600 |
| 8 | ZW-0.46 /(5~10)-250 | 200 | 0.5~1.0 | 25 | 45 | 3000*2200*1600 |
| 9 | DW-1.34/2-250 | 208 | 0.2 | 25 | 55 | 3400*2200*1600 |
| 10 | DW-0.6/24-85 | 720 | 2.4 | 8.5 | 55 | 2200*1600*1200 |
| 11 | ZW-2.9/14.2-20 | 220 | 1.42 | 2 | 55 | 2200*1600*1200 |
| 12 | VW-2.0/(2~4)-25 | 410 | 0.2~0.4 | 2.5 | 55 | 3400*2200*1600 |
| 13 | DW-0.85/(3~4)-250 | 180 | 0.3~0.4 | 25 | 55 | 2400*1800*1500 |
| 14 | DW-25-(0.2~0.3)-1.5 | 1620 | 0.02~0.03 | 0.15 | 75 | 2400*1800*1500 |
| 15 | VW-8.0/0.3-25 | 540 | 0.03 | 2.5 | 90 | 2400*1800*1500 |
| 16 | DW-6.8/0.05-40 | 200~400 | 0.005 | 4 | 90 | 2400*1800*1500 |
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| Lubrication Style: | Oil-free |
|---|---|
| Cooling System: | Air Cooling |
| Cylinder Arrangement: | Balanced Opposed Arrangement |
| Cylinder Position: | Vertical |
| Structure Type: | Closed Type |
| Compress Level: | Single-Stage |
| Customization: |
Available
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Can Gas Air Compressors Be Used for High-Pressure Applications?
Gas air compressors can be used for high-pressure applications, but there are certain considerations to keep in mind. Here’s a detailed explanation:
Gas air compressors are available in various sizes and configurations, and their suitability for high-pressure applications depends on factors such as the compressor’s design, power output, and the specific requirements of the application. Here are some key points to consider:
1. Compressor Design:
Not all gas air compressors are designed to handle high-pressure applications. Some compressors are specifically built for low-to-medium pressure ranges, while others are designed to deliver higher pressure outputs. It is important to select a gas air compressor model that is rated for the desired pressure range. The compressor’s specifications and manufacturer’s guidelines will provide information on the maximum pressure it can generate.
2. Power Output:
The power output of a gas air compressor is a crucial factor in determining its suitability for high-pressure applications. High-pressure compressors require more power to achieve and sustain the desired pressure levels. It is important to ensure that the gas air compressor has sufficient power output to meet the demands of the specific high-pressure application.
3. Cylinder Configuration:
The cylinder configuration of the gas air compressor can also affect its ability to handle high-pressure applications. Compressors with multiple cylinders or stages are designed to generate higher pressures compared to compressors with a single cylinder. Multi-stage compressors compress the air in multiple steps, allowing for higher pressure ratios.
4. Safety Considerations:
High-pressure applications require careful attention to safety considerations. Gas air compressors used for high-pressure applications should be equipped with appropriate safety features such as pressure relief valves, pressure gauges, and safety shut-off systems. It is crucial to follow all safety guidelines and regulations to ensure safe operation.
5. Maintenance and Inspection:
Regular maintenance and inspection are essential for gas air compressors used in high-pressure applications. High-pressure operation can put additional stress on the compressor components, and proper maintenance helps ensure optimal performance and safety. Regular inspections and adherence to maintenance schedules will help identify and address any potential issues before they become major problems.
6. Application-specific Considerations:
Each high-pressure application may have specific requirements and considerations. It is important to evaluate factors such as the required pressure level, duty cycle, flow rate, and any specific environmental conditions that may impact the performance of the gas air compressor. Consulting with the compressor manufacturer or a qualified professional can help determine the suitability of a gas air compressor for a particular high-pressure application.
In summary, gas air compressors can be used for high-pressure applications, provided that they are designed, rated, and configured appropriately. It is essential to consider factors such as compressor design, power output, safety features, maintenance requirements, and application-specific considerations to ensure safe and reliable operation at high pressures.
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What Is the Role of Air Receivers in Gas Air Compressor Systems?
Air receivers play a crucial role in gas air compressor systems by serving as storage tanks for compressed air. Here’s a detailed explanation:
1. Storage and Stabilization:
The primary function of an air receiver is to store compressed air generated by the gas air compressor. As the compressor produces compressed air, the air receiver collects and stores it. This storage capacity helps meet fluctuating demand in compressed air usage, providing a buffer between the compressor and the system’s air consumption.
By storing compressed air, the air receiver helps stabilize the supply to the system, reducing pressure fluctuations and ensuring a consistent and reliable flow of compressed air. This is particularly important in applications where the demand for compressed air may vary or experience peaks and valleys.
2. Pressure Regulation:
Another role of the air receiver is to assist in pressure regulation within the gas air compressor system. As compressed air enters the receiver, the pressure inside increases. When the pressure reaches a predetermined upper limit, typically set by a pressure switch or regulator, the compressor stops supplying air, and the excess air is stored in the receiver.
Conversely, when the pressure in the system drops below a certain lower limit, the pressure switch or regulator signals the compressor to start, replenishing the compressed air in the receiver and maintaining the desired pressure level. This cycling of the compressor based on pressure levels helps regulate and control the overall system pressure.
3. Condensate Separation:
During the compression process, moisture or condensate can form in the compressed air due to the cooling effect. The air receiver acts as a reservoir that allows the condensate to settle at the bottom, away from the outlet. The receiver often includes a drain valve at the bottom to facilitate the removal of accumulated condensate, preventing it from reaching downstream equipment and causing potential damage or performance issues.
4. Energy Efficiency:
Air receivers contribute to energy efficiency in gas air compressor systems. They help optimize the operation of the compressor by reducing the occurrence of short-cycling, which refers to frequent on-off cycling of the compressor due to rapid pressure changes. Short-cycling can cause excessive wear on the compressor and reduce its overall efficiency.
The presence of an air receiver allows the compressor to operate in longer and more efficient cycles. The compressor runs until the receiver reaches the upper pressure limit, ensuring a more stable and energy-efficient operation.
5. Air Quality Improvement:
Depending on the design, air receivers can also aid in improving air quality in the compressed air system. They provide a space for the compressed air to cool down, allowing moisture and some contaminants to condense and separate from the air. This can be further enhanced with the use of additional filtration and drying equipment installed downstream of the receiver.
In summary, air receivers play a vital role in gas air compressor systems by providing storage capacity, stabilizing compressed air supply, regulating system pressure, separating condensate, improving energy efficiency, and contributing to air quality control. They are an integral component in ensuring the reliable and efficient operation of compressed air systems across various industries and applications.
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How Do You Choose the Right Size Gas Air Compressor for Your Needs?
Choosing the right size gas air compressor is crucial to ensure optimal performance and efficiency for your specific needs. Selecting a compressor that is too small may result in insufficient airflow or pressure, while choosing one that is too large can lead to unnecessary energy consumption and higher costs. Here’s a detailed explanation of the factors to consider when choosing the right size gas air compressor:
1. Required Airflow:
Determine the airflow requirements of your applications. Consider the tools, equipment, or processes that will be powered by the compressor and their respective airflow demands. The required airflow is typically measured in cubic feet per minute (CFM). Determine the total CFM required, taking into account any simultaneous or intermittent tool usage.
2. Operating Pressure:
Identify the operating pressure required for your applications. Different tools and systems have specific pressure requirements, measured in pounds per square inch (PSI). Ensure that the compressor you choose can deliver the required pressure consistently.
3. Duty Cycle:
Consider the duty cycle, which refers to the amount of time the compressor will be in operation within a given period. Some applications may require continuous operation, while others involve intermittent or occasional use. Take into account the duty cycle to ensure that the compressor can handle the expected workload without overheating or experiencing excessive wear.
4. Tank Size:
The tank size of a gas air compressor determines its ability to store compressed air and provide a steady supply. A larger tank can help accommodate fluctuations in demand and reduce the frequency of the compressor cycling on and off. Consider the required storage capacity based on the specific applications and the desired balance between continuous operation and storage capacity.
5. Power Source:
Gas air compressors can be powered by different fuels, such as gasoline, diesel, natural gas, or propane. Consider the availability and cost of the fuel options in your location, as well as the specific requirements of your applications. Choose a compressor that is compatible with a power source that suits your needs.
6. Portability:
Determine if portability is a requirement for your applications. If you need to move the compressor to different job sites or locations, consider a portable model with features like wheels, handles, or a compact design that facilitates easy transportation.
7. Noise Level:
If noise is a concern in your working environment, consider the noise level of the compressor. Gas air compressors can vary in their noise output, and certain models may have noise-reducing features or insulation to minimize sound emissions.
8. Manufacturer Recommendations:
Consult the manufacturer’s recommendations and guidelines for selecting the appropriate compressor size for your specific needs. Manufacturers often provide guidelines based on the anticipated applications, airflow requirements, and other factors to help you make an informed decision.
By considering these factors and carefully assessing your specific requirements, you can choose the right size gas air compressor that meets your airflow, pressure, duty cycle, and other operational needs. It’s advisable to consult with industry professionals or compressor experts for guidance, especially for complex or specialized applications.


editor by CX 2024-05-03
China Custom Low Pressure Convenient Oxygen Gas Booster O2 Compressor air compressor oil
Product Description
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Product Name |
Oil Free Gas Compressor |
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Power Range |
<55KW |
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Model No. |
GWX- 5/10/20/40/60/80/CUSTOMIZED |
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Cooling Method |
Air-cooled or Water-cooled |
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Speed Range |
300-600r/min |
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Compression Stages |
Level 3-4 |
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Exhaust Pressure Range |
≤25.0Mpa |
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Inspiratory Pressure Range |
0-0.6Mpa |
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Technical features
The equipment does not need to add lubricating oil, and the exhaust gas does not contain oil and oil vapor, so it can
be protected from pollution, eliminating the need for complex filtration and purification systems, saving equipment
costs and maintenance costs, and has significant features such as safety, reliability, and easy operation.
Technical features
Details Images
FAQ
Q1: Are you a trading company or manufacturer?
A:We are a manufacturer.
Q2: What is your term of payment?
A: 30%T/T in advance and balance before shipment.
Q3: How long is your delivery time?
A: Depending on what type of machine you are purchased, normally 5 to 10 working days.
Q4: What is your product quality assurance policy? A:We offer a warranty period of 1 year, free lifetime technology support.
Q5: Do you offer OEM/ODM service?
A: Yes.
Q6: Does your product used or new? RTS product or customized product?
A:Our machine is new unit, and following your specific require to design and make it.
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| After-sales Service: | Support |
|---|---|
| Warranty: | 1year |
| Lubrication Style: | Oil-less |
| Customization: |
Available
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Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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Initial Payment Full Payment |
| Currency: | US$ |
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| Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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Can Gas Air Compressors Be Used in Cold Weather Conditions?
Gas air compressors are generally designed to operate in a wide range of environmental conditions, including cold weather. However, there are certain considerations and precautions to keep in mind when using gas air compressors in cold weather conditions. Here’s a detailed explanation:
1. Cold Start-Up:
In cold weather, starting a gas air compressor can be more challenging due to the low temperatures affecting the engine’s performance. It is important to follow the manufacturer’s recommendations for cold start procedures, which may include preheating the engine, using a cold weather starting aid, or ensuring the proper fuel mixture. These measures help facilitate smooth start-up and prevent potential damage to the engine.
2. Fuel Type:
Consider the type of fuel used in the gas air compressor. Some fuels, such as gasoline, can be more susceptible to cold weather issues like vapor lock or fuel line freezing. In extremely cold conditions, it may be necessary to use a fuel additive or switch to a fuel type that is better suited for cold weather operation, such as winter-grade gasoline or propane.
3. Lubrication:
Cold temperatures can affect the viscosity of the oil used in the compressor’s engine. It is important to use the recommended oil grade suitable for cold weather conditions. Thicker oil can become sluggish and impede proper lubrication, while oil that is too thin may not provide adequate protection. Consult the manufacturer’s guidelines for the appropriate oil viscosity range for cold weather operation.
4. Moisture Management:
In cold weather, moisture can condense more readily in the compressed air system. It is crucial to properly drain the moisture from the compressor tank and ensure the air lines are free from any accumulated moisture. Failure to manage moisture can lead to corrosion, freezing of air lines, and decreased performance.
5. Protection from Freezing:
In extremely cold conditions, it is important to protect the gas air compressor from freezing. This may involve using insulated covers or enclosures, providing heat sources in the compressor area, or storing the compressor in a temperature-controlled environment when not in use. Taking measures to prevent freezing helps maintain proper operation and prevents potential damage to the compressor components.
6. Monitoring Performance:
Regularly monitor the performance of the gas air compressor in cold weather conditions. Pay attention to any changes in operation, such as reduced air pressure, increased noise, or difficulties in starting. Promptly address any issues and consult the manufacturer or a qualified technician if necessary.
By considering these factors and taking appropriate precautions, gas air compressors can be effectively used in cold weather conditions. However, it is important to consult the specific guidelines provided by the manufacturer for your compressor model, as they may have additional recommendations or specifications for cold weather operation.
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Can Gas Air Compressors Be Used for Pneumatic Tools?
Yes, gas air compressors can be used for pneumatic tools. Here’s a detailed explanation:
1. Versatile Power Source:
Gas air compressors, powered by gasoline or diesel engines, provide a portable and versatile power source for operating pneumatic tools. They eliminate the need for electrical power supply, making them suitable for remote locations or construction sites where electricity may not be readily available.
2. High Power Output:
Gas air compressors typically offer higher power output compared to electric compressors of similar size. This high power output enables gas compressors to deliver the necessary air pressure and volume required by pneumatic tools, ensuring optimal tool performance.
3. Mobility and Portability:
Gas air compressors are often designed with mobility and portability in mind. They are compact and equipped with wheels or handles, allowing for easy transportation to different job sites. This mobility is advantageous when using pneumatic tools in various locations or when working in confined spaces.
4. Continuous Operation:
Gas air compressors can provide continuous air supply for pneumatic tools without the need for frequent pauses or recharging. As long as there is an adequate fuel supply, gas compressors can operate for extended periods, allowing uninterrupted use of pneumatic tools for tasks such as drilling, nailing, sanding, or painting.
5. Suitable for High-Demand Applications:
Pneumatic tools used in heavy-duty applications often require a robust air supply to meet their performance requirements. Gas air compressors can generate higher air flow rates and maintain higher operating pressures, making them suitable for high-demand pneumatic tools like jackhammers, impact wrenches, or sandblasters.
6. Flexibility in Compressor Size:
Gas air compressors are available in various sizes and capacities, allowing users to choose the compressor that best matches the air demands of their pneumatic tools. From small portable compressors for light-duty tasks to larger industrial-grade compressors for heavy-duty applications, there is a wide range of options to suit different tool requirements.
7. Reduced Dependency on Electrical Infrastructure:
Using gas air compressors for pneumatic tools reduces reliance on electrical infrastructure. In situations where the electrical power supply is limited, unreliable, or expensive, gas compressors offer a viable alternative, ensuring consistent tool performance without concerns about power availability.
It’s important to note that gas air compressors emit exhaust gases during operation, so proper ventilation is necessary when using them in enclosed spaces to ensure the safety of workers.
In summary, gas air compressors can effectively power pneumatic tools, offering mobility, high power output, continuous operation, and suitability for various applications. They provide a reliable and portable solution for utilizing pneumatic tools in locations where electrical power supply may be limited or unavailable.
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How Does a Gas Air Compressor Work?
A gas air compressor works by utilizing a gas engine to power a compressor pump, which draws in air and compresses it to a higher pressure. The compressed air can then be used for various applications. Here’s a detailed explanation of how a gas air compressor operates:
1. Gas Engine:
A gas air compressor is equipped with a gas engine as its power source. The gas engine is typically fueled by gasoline, diesel, natural gas, or propane. When the engine is started, the fuel is combusted within the engine’s cylinders, generating mechanical energy in the form of rotational motion.
2. Compressor Pump:
The gas engine drives the compressor pump through a mechanical linkage, such as a belt or direct coupling. The compressor pump is responsible for drawing in atmospheric air and compressing it to a higher pressure. There are different types of compressor pumps used in gas air compressors, including reciprocating, rotary screw, or centrifugal, each with its own operating principles.
3. Intake Stroke:
In a reciprocating compressor pump, the intake stroke begins when the piston moves downward within the cylinder. This creates a vacuum, causing the inlet valve to open and atmospheric air to be drawn into the cylinder. In rotary screw or centrifugal compressors, air is continuously drawn in through the intake port as the compressor operates.
4. Compression Stroke:
During the compression stroke in a reciprocating compressor, the piston moves upward, reducing the volume within the cylinder. This compression action causes the air to be compressed and its pressure to increase. In rotary screw compressors, two interlocking screws rotate, trapping and compressing the air between them. In centrifugal compressors, air is accelerated and compressed by high-speed rotating impellers.
5. Discharge Stroke:
Once the air is compressed, the discharge stroke begins in reciprocating compressors. The piston moves upward, further reducing the volume and forcing the compressed air out of the cylinder through the discharge valve. In rotary screw compressors, the compressed air is discharged through an outlet port as the interlocking screws continue to rotate. In centrifugal compressors, the high-pressure air is discharged from the impeller into the surrounding volute casing.
6. Pressure Regulation:
Gas air compressors often include pressure regulation mechanisms to control the output pressure of the compressed air. This can be achieved through pressure switches, regulators, or control systems that adjust the compressor’s operation based on the desired pressure setting. These mechanisms help maintain a consistent and controlled supply of compressed air for the specific application requirements.
7. Storage and Application:
The compressed air produced by the gas air compressor is typically stored in a receiver tank or used directly for applications. The receiver tank helps stabilize the pressure and provides a reservoir of compressed air for immediate use. From the receiver tank, the compressed air can be distributed through pipelines to pneumatic tools, machinery, or other devices that require the compressed air for operation.
Overall, a gas air compressor operates by using a gas engine to power a compressor pump, which draws in air and compresses it to a higher pressure. The compressed air is then regulated and used for various applications, providing a reliable source of power for pneumatic tools, machinery, and other equipment.


editor by CX 2024-02-11
China factory Belt Driven Used Low Pressure Gas Screw Air Compressor for Cement Powder lowes air compressor
Product Description
Product details
Parameter
| MODEL | MAXIMUM WORKING PRESSURE | FREE AIR DELIVERY* OF UNIT AT WORKING PRESSURE | MOTOR | NOISE LEVEL** | AIR OUTLET DISCHARGE SIZE | WEIGHT | DIMENSIONS | ||||
| Bar | PSI | l/s | m3/min | CFM | kW | HP | dBA | KG | L X W X H (mm) |
||
| MCS-11D5 | 5 | 73 | 40 | 2.40 | 86 | 11 | 15 | 68±2 | G1 | 510 | 1380 x 850 x 1150 |
| MCS-15D5 | 5 | 73 | 50 | 3.00 | 107 | 15 | 20 | 68±2 | G1 | 550 | 1380 x 850 x 1150 |
| MCS-18.5D5 | 5 | 73 | 60 | 3.60 | 129 | 18.5 | 25 | 70±2 | G1 | 740 | 1380 x 850 x 1150 |
| MCS-22D5 | 5 | 73 | 83 | 5.00 | 179 | 22 | 30 | 70±2 | G1 1/2 | 850 | 1500 x 1000 x 1320 |
| MCS-30D5 | 5 | 73 | 105 | 6.30 | 225 | 30 | 40 | 70±2 | G1 1/2 | 1200 | 1500 x 1000 x 1320 |
| MCS-37D5 | 5 | 73 | 117 | 7.00 | 250 | 37 | 50 | 72±2 | G1 1/2 | 1300 | 1500 x 1000 x 1320 |
| MCS-45D5 | 5 | 73 | 167 | 10.00 | 357 | 45 | 60 | 72±2 | G2 | 1450 | 1900 x 1250 x 1600 |
| MCS-55D5 | 5 | 73 | 217 | 13.00 | 464 | 55 | 75 | 72±2 | G2 | 2150 | 2000 x 1250 x 1670 |
| MCS-75D5 | 5 | 73 | 267 | 16.00 | 571 | 75 | 100 | 74±2 | G21/2 | 2360 | 2000 x 1250 x 1670 |
| MCS-90D5 | 5 | 73 | 343 | 20.60 | 736 | 90 | 120 | 74±2 | G21/2 | 2360 | 2500 x 1470 x 1840 |
| MCS-110D5 | 5 | 73 | 410 | 24.60 | 879 | 110 | 150 | 76±2 | G21/2 | 2360 | 2500 x 1470 x 1840 |
| MCS-132D5 | 5 | 73 | 473 | 28.40 | 1014 | 132 | 175 | 76±2 | DN100 | 3100 | 2500 x 1470 x 1840 |
| MCS-160D5 | 5 | 73 | 550 | 33.00 | 1179 | 160 | 220 | 78±2 | DN100 | 3100 | 3000 x 1700 x 1950 |
| MCS-185D5 | 5 | 73 | 610 | 36.60 | 1307 | 185 | 250 | 78±2 | DN125 | 4150 | 3000 x 1700 x 1950 |
| MCS-200D5 | 5 | 73 | 703 | 42.20 | 1507 | 200 | 270 | 80±2 | DN125 | 4300 | 3200 x1980 x 2150 |
| MCS-220D5 | 5 | 73 | 850 | 51.00 | 1821 | 220 | 300 | 80±2 | DN150 | 4300 | 3200 x1980 x 2150 |
advantages
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1. Easy for Maintenance, Low cost for Maintenance All the pipe and spare parts is standardized, they can be changed fast. 2. 6000sets capacity for each month. As 1 of the largest Air compressor Manufacture, with Advanced Automatic Production Line, 6000set air compressor can be produced for each month. The production cost is greatly reduced by the production scale production. Providing the most cost-effective product for you. 3. Rich experience in compressed air system solution, 1 stop service and provide air compressor system design We can provide one- stop solution. We can not only provide the air compressor, but also high quality air treatment equipment, such as air tank, air dryer, air filter, air pipe, valves and air compressor spare parts. Save your time and cost greatly. 4. Strong R&D Capability Annual Increasing R&D investment. Introduce German GU technology and the Japanese Military technology. Long- term collaborative project with HangZhou Jiaotong University. |
Application
Sales Service
Professional online consultant to solve your question about compressor system.
√ Free site design consultant, and energy saving solution to help you save operation cost.
√ Negotiable technician available to service machinery overseas.
√ Online professional after-service until solve the problem.
√ 1 year warranty after commissioning or 16 months against shipping date, it depends on which 1 come firstly for the whole
machine(except maintenance consumable).
√ A sufficient number of spare parts are available, make sure the good after service.
Certificate
About mikovs
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Mikovs Compressor
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RFQ
Q1. Are you trading company or manufacture ?
A: We are professional manufacture of screw air compressor more than 8 years.
Q2. How long is the delivery time ?
A: For standard voltage ,15 working days. Non-standard ,please contact our sales.
Q3. What’s payment term ?
A: T/T, L/C, D/P, Western Union, Paypal, Credit Card, and etc. Also we could accept USD, RMB, Euro and other currency.
Q4. How about your after-sales service ?
A: 1.Provide customers with installation and commissioning online instructions.
2. Well-trained engineers available to overseas service.
3.Worldwid agents and after service avaiable.arrange our engineers to help you training and installation.
Q5. How about your warranty?
A: One year for the whole machine and 2 years for screw air end, except consumable spare parts.
Q6. Do you have any certificate ?
A: Yes, per different customer’s market need ,we can offer CE ,ISO etc certificate.
Q7. What about the maintenance ?
A: First maintenance need to be done after 500Hours, and then every 2000-3000 hours to do the normal maintenance,
and consider the actual environment.
Q8. How do you control quality ?
A: 1.Raw- material in checking.
2.Assembly.
3.Worldwid after service available.arrange our engineers to help you training and installation.
Q9. Do you offer OEM service ?
A: Yes.
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| Lubrication Style: | Lubricated |
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| Cooling System: | Air Cooling |
| Power Source: | AC Power |
| Customization: |
Available
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Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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| Payment Method: |
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Initial Payment Full Payment |
| Currency: | US$ |
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| Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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How Do Gas Air Compressors Compare to Diesel Air Compressors?
When comparing gas air compressors to diesel air compressors, there are several factors to consider, including fuel efficiency, power output, cost, maintenance requirements, and environmental impact. Here’s a detailed explanation of how these two types of air compressors compare:
1. Fuel Efficiency:
Diesel air compressors are generally more fuel-efficient compared to gas air compressors. Diesel engines have higher energy density and better overall efficiency than gasoline engines. This means that diesel compressors can produce more work output per unit of fuel consumed, resulting in lower fuel costs and longer runtimes between refueling.
2. Power Output:
Diesel air compressors typically provide higher power output compared to gas air compressors. Diesel engines are known for their robustness and ability to generate higher torque, making them suitable for heavy-duty applications that require a larger volume of compressed air or higher operating pressures.
3. Cost:
In terms of upfront cost, gas air compressors are generally more affordable compared to diesel air compressors. Gasoline engines and components are typically less expensive than their diesel counterparts. However, it’s important to consider long-term costs, including fuel expenses and maintenance, which can vary depending on factors such as fuel prices and usage patterns.
4. Maintenance Requirements:
Diesel air compressors often require more regular maintenance compared to gas air compressors. This is because diesel engines have additional components such as fuel filters, water separators, and injector systems that need periodic servicing. Gas air compressors, on the other hand, may have simpler maintenance requirements, resulting in reduced maintenance costs and time.
5. Environmental Impact:
When it comes to environmental impact, diesel air compressors produce higher emissions compared to gas air compressors. Diesel engines emit more particulate matter, nitrogen oxides (NOx), and carbon dioxide (CO2) compared to gasoline engines. Gas air compressors, especially those powered by propane, tend to have lower emissions and are considered more environmentally friendly.
6. Portability and Mobility:
Gas air compressors are generally more portable and easier to move compared to diesel air compressors. Gasoline engines are typically lighter and more compact, making gas air compressors suitable for applications where mobility is essential, such as construction sites or remote locations.
It’s important to note that the specific requirements of the application and the availability of fuel sources also play a significant role in choosing between gas air compressors and diesel air compressors. Each type has its own advantages and considerations, and the choice should be based on factors such as the intended usage, operating conditions, budget, and environmental considerations.
In conclusion, gas air compressors are often more affordable, portable, and suitable for lighter applications, while diesel air compressors offer higher power output, fuel efficiency, and durability for heavy-duty operations. Consider the specific needs and factors mentioned above to determine the most appropriate choice for your particular application.
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Can Gas Air Compressors Be Used for Pneumatic Tools?
Yes, gas air compressors can be used for pneumatic tools. Here’s a detailed explanation:
1. Versatile Power Source:
Gas air compressors, powered by gasoline or diesel engines, provide a portable and versatile power source for operating pneumatic tools. They eliminate the need for electrical power supply, making them suitable for remote locations or construction sites where electricity may not be readily available.
2. High Power Output:
Gas air compressors typically offer higher power output compared to electric compressors of similar size. This high power output enables gas compressors to deliver the necessary air pressure and volume required by pneumatic tools, ensuring optimal tool performance.
3. Mobility and Portability:
Gas air compressors are often designed with mobility and portability in mind. They are compact and equipped with wheels or handles, allowing for easy transportation to different job sites. This mobility is advantageous when using pneumatic tools in various locations or when working in confined spaces.
4. Continuous Operation:
Gas air compressors can provide continuous air supply for pneumatic tools without the need for frequent pauses or recharging. As long as there is an adequate fuel supply, gas compressors can operate for extended periods, allowing uninterrupted use of pneumatic tools for tasks such as drilling, nailing, sanding, or painting.
5. Suitable for High-Demand Applications:
Pneumatic tools used in heavy-duty applications often require a robust air supply to meet their performance requirements. Gas air compressors can generate higher air flow rates and maintain higher operating pressures, making them suitable for high-demand pneumatic tools like jackhammers, impact wrenches, or sandblasters.
6. Flexibility in Compressor Size:
Gas air compressors are available in various sizes and capacities, allowing users to choose the compressor that best matches the air demands of their pneumatic tools. From small portable compressors for light-duty tasks to larger industrial-grade compressors for heavy-duty applications, there is a wide range of options to suit different tool requirements.
7. Reduced Dependency on Electrical Infrastructure:
Using gas air compressors for pneumatic tools reduces reliance on electrical infrastructure. In situations where the electrical power supply is limited, unreliable, or expensive, gas compressors offer a viable alternative, ensuring consistent tool performance without concerns about power availability.
It’s important to note that gas air compressors emit exhaust gases during operation, so proper ventilation is necessary when using them in enclosed spaces to ensure the safety of workers.
In summary, gas air compressors can effectively power pneumatic tools, offering mobility, high power output, continuous operation, and suitability for various applications. They provide a reliable and portable solution for utilizing pneumatic tools in locations where electrical power supply may be limited or unavailable.
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What Are the Advantages of Using a Gas Air Compressor Over an Electric One?
Using a gas air compressor offers several advantages over an electric air compressor. Gas-powered compressors provide unique benefits in terms of mobility, versatility, power, and convenience. Here’s a detailed explanation of the advantages of using a gas air compressor:
1. Portability and Mobility:
Gas air compressors are typically more portable and mobile compared to electric compressors. They often feature handles, wheels, or trailers, allowing for easy transportation to different locations. This portability is especially advantageous in situations where compressed air is needed at remote job sites, outdoor events, or areas without access to electricity. Gas air compressors can be easily moved and positioned where they are required.
2. Independence from Electricity:
One of the primary advantages of gas air compressors is their independence from electricity. They are powered by gas engines, which means they do not rely on a direct connection to the electrical grid. This makes them suitable for use in areas where electrical power is limited, unreliable, or unavailable. Gas air compressors offer a reliable source of compressed air even in remote locations or during power outages.
3. Versatility in Fuel Options:
Gas air compressors provide versatility in terms of fuel options. They can be powered by various types of combustible gases, including gasoline, diesel, natural gas, or propane. This flexibility allows users to choose the most readily available or cost-effective fuel source based on their specific requirements. It also makes gas compressors adaptable to different environments and fuel availability in various regions.
4. Higher Power Output:
Gas air compressors typically offer higher power output compared to electric compressors. Gas engines can generate more horsepower, allowing gas compressors to deliver greater air pressure and volume. This higher power output is beneficial when operating pneumatic tools or equipment that require a significant amount of compressed air, such as jackhammers, sandblasters, or heavy-duty impact wrenches.
5. Continuous Operation:
Gas air compressors can provide continuous operation without the need for frequent breaks or cooldown periods. Electric compressors may overheat with prolonged use, requiring intermittent rest periods to cool down. Gas compressors, on the other hand, can operate continuously for longer durations without the risk of overheating. This continuous operation capability is particularly advantageous in demanding applications or situations that require extended periods of compressed air usage.
6. Quick Startup and Response:
Gas air compressors offer quick startup and response times. They can be started instantly by simply pulling a cord or pressing a button, whereas electric compressors may require time to power up and reach optimal operating conditions. Gas compressors provide immediate access to compressed air, allowing for efficient and prompt task completion.
7. Durability and Resistance to Voltage Fluctuations:
Gas air compressors are generally more durable and resistant to voltage fluctuations compared to electric compressors. Electric compressors can be affected by voltage drops or surges, which may impact their performance or cause damage. Gas compressors, however, are less susceptible to voltage-related issues, making them reliable in environments where voltage fluctuations are common.
8. Lower Energy Costs:
Gas air compressors can offer lower energy costs compared to electric compressors, depending on the price of the fuel being used. Gasoline or diesel fuel, for example, may be more cost-effective than electricity in certain regions or applications. This cost advantage can result in significant savings over time, especially for high-demand compressed air operations.
Overall, the advantages of using a gas air compressor over an electric one include portability, independence from electricity, fuel versatility, higher power output, continuous operation capability, quick startup and response times, durability, resistance to voltage fluctuations, and potentially lower energy costs. These advantages make gas air compressors a preferred choice in various industries, remote locations, and applications where mobility, power, and reliability are crucial.


editor by CX 2024-01-09
China best Low Pressure 7bar W3118 Small Diesel Portable Piston Air Compressor for Rcok Drilling Hot Sale in China Factory air compressor oil
Product Description
Product Description
W3118 Air compressor
The 0.7MPa reciprocating plug air compressor gathers the latest technical achievements of domestic and foreign micro and small air compressors.
Lean design, highlighting high pressure and efficiency:
1.) The 8 series air compressor adopts 4 lap piston rings, which can effectively improve the sealing and service life of the product. The optimized design of the air valve can effectively reduce the exhaust resistance and exhaust temperature, and improve the exhaust volume. The patented aluminum cover with inlet and outlet separation and high heat dissipation fins can realize rapid heat dissipation, effectively reduce exhaust temperature and reduce energy consumption.
2.) The intake air filter is used for load reduction to effectively reduce energy consumption.
3.) Use oil spray lubrication: the cylinder, connecting rod, crankshaft and bearing operate reliably.
Close to the actual needs of users:
The complete series of products, from small to large, meet the demand of different models of pneumatic rock drills, pneumatic picks and other pneumatic machinery, suitable for different users. Good quality and low investment cost
| Model | W3108 | W3118 | W3128 | |
| Exhaust Volume(m3/min) | 2 | 3 | 3.5 | |
| Exhaust Pressure(Mpa) | 0.7 | 0.7 | 0.7 | |
| Crankshaft drilling speed(r/min) | 1150 | 1080 | 990 | |
| Cylinder (Dia×Qty)(mm) | 3X108 | 3X118 | 3X128 | |
| Piston stroke(mm) | 80 | 100 | 110 | |
| Fuel tank capacity(L) | 130 | 200 | 230 | |
| Supporting power | S1105 diesel engine or 11kW, 2-pole motor |
S1105 diesel engine or 15kW, 2-pole motor |
S1125 diesel engine or 18.5kW, 2-pole motor |
|
| Pressure control method | Automatic exhaust | Turn off the air intake | Turn off the air intake | |
| Lubrication method | fly splash | Fly Splash | Fly Splash | |
| cooling method | Wind cooling | Wind cooling | Wind cooling | |
| transfer method | Clutch, V-belt | Clutch, V-belt | Clutch, V-belt | |
| Size(LxWxH)mm | 1630X750X1150 | 1750X940X1290 | 1800X940X1290 | |
| Weight(kg) | Diesel engine | 320 | 435 | 450 |
| Electric motor | 280 | 375 | 390 | |
Detailed Photos
Features:
1.Value plate and spring strip: made of special steel from Sweden and after special treatment; high efficient and reliable.
2.Piston ring: special design; integral casting; excellent flexibility; lowest lubricating oil consumption.
3.Cylinder: made of boron cast iron; wear resistant; special suitable for dust condition.
4.Cylinder cover: extrusion process adopted; streamlined external appearance; good heat emission performance.
5.Crankshaft: made from ductile cast iron; rare magnesium alloy after heat treatment and surface quenching;excellent performance.
6.Simple structure, light weight, easy to move.
Packaging & Shipping
Company Profile
Certifications
FAQ
1. How long is your air compressor & drilling rig warranty?
∗ 1 years for the whole machine after leave the factory
2. Do you provide After- sales service parts?
∗Of course, we have.
3.How long could your machine be used?
∗More than 10 years if have regular maintenance.
4. How is your machine quality?
∗All the machines must pass the strict test before leave factory.
And our factory has above 20 years manufacturing experience,can gurantee the quality.
5.Which payment term you accpet?
∗Now we will accpet TT,LC,Western Union,Trade Assurance online,Paypal,Cash,etc.
6.How about the delivery time?
∗Within about 1 week.
7.Can visit your factory?
∗Yes,welcome to our factory. We will treat you in China,and pick you up at airport.
We are near to HangZhou International Airport.
| After-sales Service: | 24 Hours Online Service |
|---|---|
| Warranty: | 1 Year |
| Lubrication Style: | Lubricated |
| Cooling System: | Air Cooling |
| Cylinder Position: | Horizontal |
| Structure Type: | Open Type |
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How are air compressors utilized in the aerospace industry?
Air compressors play a crucial role in various applications within the aerospace industry. They are utilized for a wide range of tasks that require compressed air or gas. Here are some key uses of air compressors in the aerospace industry:
1. Aircraft Systems:
Air compressors are used in aircraft systems to provide compressed air for various functions. They supply compressed air for pneumatic systems, such as landing gear operation, braking systems, wing flap control, and flight control surfaces. Compressed air is also utilized for starting aircraft engines and for cabin pressurization and air conditioning systems.
2. Ground Support Equipment:
Air compressors are employed in ground support equipment used in the aerospace industry. They provide compressed air for tasks such as inflating aircraft tires, operating pneumatic tools for maintenance and repair, and powering air-driven systems for fueling, lubrication, and hydraulic operations.
3. Component Testing:
Air compressors are utilized in component testing within the aerospace industry. They supply compressed air for testing and calibrating various aircraft components, such as valves, actuators, pressure sensors, pneumatic switches, and control systems. Compressed air is used to simulate operating conditions and evaluate the performance and reliability of these components.
4. Airborne Systems:
In certain aircraft, air compressors are employed for specific airborne systems. For example, in military aircraft, air compressors are used for air-to-air refueling systems, where compressed air is utilized to transfer fuel between aircraft in mid-air. Compressed air is also employed in aircraft de-icing systems, where it is used to inflate inflatable de-icing boots on the wing surfaces to remove ice accumulation during flight.
5. Environmental Control Systems:
Air compressors play a critical role in the environmental control systems of aircraft. They supply compressed air for air conditioning, ventilation, and pressurization systems, ensuring a comfortable and controlled environment inside the aircraft cabin. Compressed air is used to cool and circulate air, maintain desired cabin pressure, and control humidity levels.
6. Engine Testing:
In the aerospace industry, air compressors are utilized for engine testing purposes. They provide compressed air for engine test cells, where aircraft engines are tested for performance, efficiency, and durability. Compressed air is used to simulate different operating conditions and loads on the engine, allowing engineers to assess its performance and make necessary adjustments or improvements.
7. Oxygen Systems:
In aircraft, air compressors are involved in the production of medical-grade oxygen for onboard oxygen systems. Compressed air is passed through molecular sieve beds or other oxygen concentrator systems to separate oxygen from other components of air. The generated oxygen is then supplied to the onboard oxygen systems, ensuring a sufficient and continuous supply of breathable oxygen for passengers and crew at high altitudes.
It is important to note that air compressors used in the aerospace industry must meet stringent quality and safety standards. They need to be reliable, efficient, and capable of operating under demanding conditions to ensure the safety and performance of aircraft systems.
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What is the role of air compressors in manufacturing and industrial processes?
Air compressors play a crucial role in various manufacturing and industrial processes, providing a reliable source of compressed air that powers a wide range of equipment and tools. Here are some key roles of air compressors in manufacturing and industrial settings:
1. Pneumatic Tools and Equipment:
Air compressors power a wide range of pneumatic tools and equipment used in manufacturing processes. These tools include impact wrenches, air drills, sanders, grinders, nail guns, and spray guns. Compressed air provides the necessary force and energy for these tools, enabling efficient and precise operations.
2. Automation and Control Systems:
Compressed air is used in automation and control systems within manufacturing facilities. Pneumatic actuators and valves use compressed air to control the movement of machinery and components. These systems are widely used in assembly lines, packaging operations, and material handling processes.
3. Air Blowing and Cleaning:
Compressed air is employed for blowing and cleaning applications in manufacturing and industrial processes. Air blowguns and air nozzles are used to remove debris, dust, and contaminants from surfaces, machinery, and products. Compressed air is also used for drying, cooling, and purging operations.
4. Air Separation and Gas Generation:
Air compressors are used in air separation plants to generate industrial gases such as nitrogen, oxygen, and argon. These gases are essential for various industrial processes, including metal fabrication, chemical production, and food packaging.
5. HVAC Systems:
Compressed air is utilized in heating, ventilation, and air conditioning (HVAC) systems. It powers pneumatic actuators for damper control, pneumatic controls for pressure regulation, and pneumatic valves for flow control in HVAC applications.
6. Air Compression for Storage and Transport:
Compressed air is used for storage and transport purposes in manufacturing and industrial settings. It is often used to pressurize storage tanks or containers that hold gases or liquids. Compressed air also facilitates the transfer of materials through pipelines and pneumatic conveying systems.
7. Process Instrumentation:
Compressed air is utilized in process instrumentation and control systems. It powers pneumatic instruments such as pressure gauges, flow meters, and control valves. These instruments play a critical role in monitoring and regulating various parameters in industrial processes.
8. Material Handling and Pneumatic Conveying:
In manufacturing and industrial facilities, compressed air is used for material handling and pneumatic conveying systems. It enables the movement of bulk materials such as powders, granules, and pellets through pipelines, facilitating efficient and controlled material transfer.
Overall, air compressors are vital components in manufacturing and industrial processes, providing a versatile and efficient source of power for a wide range of applications. The specific role of air compressors may vary depending on the industry, process requirements, and operational needs.
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What is the difference between a piston and rotary screw compressor?
Piston compressors and rotary screw compressors are two common types of air compressors with distinct differences in their design and operation. Here’s a detailed explanation of the differences between these two compressor types:
1. Operating Principle:
- Piston Compressors: Piston compressors, also known as reciprocating compressors, use one or more pistons driven by a crankshaft to compress air. The piston moves up and down within a cylinder, creating a vacuum during the intake stroke and compressing the air during the compression stroke.
- Rotary Screw Compressors: Rotary screw compressors utilize two intermeshing screws (rotors) to compress air. As the male and female screws rotate, the air is trapped between them and gradually compressed as it moves along the screw threads.
2. Compression Method:
- Piston Compressors: Piston compressors achieve compression through a positive displacement process. The air is drawn into the cylinder and compressed as the piston moves back and forth. The compression is intermittent, occurring in discrete cycles.
- Rotary Screw Compressors: Rotary screw compressors also employ a positive displacement method. The compression is continuous as the rotating screws create a continuous flow of air and compress it gradually as it moves along the screw threads.
3. Efficiency:
- Piston Compressors: Piston compressors are known for their high efficiency at lower flow rates and higher pressures. They are well-suited for applications that require intermittent or variable air demand.
- Rotary Screw Compressors: Rotary screw compressors are highly efficient for continuous operation and are designed to handle higher flow rates. They are often used in applications with a constant or steady air demand.
4. Noise Level:
- Piston Compressors: Piston compressors tend to generate more noise during operation due to the reciprocating motion of the pistons and valves.
- Rotary Screw Compressors: Rotary screw compressors are generally quieter in operation compared to piston compressors. The smooth rotation of the screws contributes to reduced noise levels.
5. Maintenance:
- Piston Compressors: Piston compressors typically require more frequent maintenance due to the higher number of moving parts, such as pistons, valves, and rings.
- Rotary Screw Compressors: Rotary screw compressors have fewer moving parts, resulting in lower maintenance requirements. They often have longer service intervals and can operate continuously for extended periods without significant maintenance.
6. Size and Portability:
- Piston Compressors: Piston compressors are available in both smaller portable models and larger stationary units. Portable piston compressors are commonly used in construction, automotive, and DIY applications.
- Rotary Screw Compressors: Rotary screw compressors are typically larger and more suitable for stationary installations in industrial and commercial settings. They are less commonly used in portable applications.
These are some of the key differences between piston compressors and rotary screw compressors. The choice between the two depends on factors such as required flow rate, pressure, duty cycle, efficiency, noise level, maintenance needs, and specific application requirements.


editor by CX 2023-10-08
China Good quality Customizable 2 Bar 3 Bar 4 Bar 5 Bar Low Pressure Water-Injected Oilless Single Screw Type Air Compressors for Bulk Cement Plant air compressor CZPT freight
Product Description
2~40bar DIRECT-DRIVE WATER-INJECTED OIL-FREE SCREW AIR COMPRESSOR (PM VSD)
1. Low temperature means more efficiency
With an exceptionally low running temperature of less than 60ºC, near isothermal compression is achieved.
The superior cooling capability of water removes the heat and gives more air per kW of power.
This also eliminates the need for an internal cooler and aftercooler, the associated power consumption reduces pressure drop to a minimum.
2. Cutting the maintenance cost
Spare parts only need air filter elements and water filter elements
Low operating temperature ensures the long service life of the screw air end, avoiding expensive maintenance costs for the screw rotor.
Low temperature reduces the stress on other components ensuring long life.
3. Avoiding the costs of extra energy to combat pressure drop
These costs, although not apparent at the time of purchase, are very high and contribute substantially to the total cost of ownership.
4. No Gearbox No need for associated oil lubrication.
5. Simple structure
Fewer moving parts than the dry oil-free screw air compressor, meaning there is less to go wrong,
while balance bearing loads extend the compression element service life for low-cost operation.
Product Parameters
Product Description
Company Profile
Hot Sale Products
2~10bar Oil-injected 7~16bar All-in-1 Small Single-phase
Screw Air Compressor Screw Air Compressor Screw Air Compressor
2~40bar 100% Oil-free 8~12bar 100% Oil-free Diesel Engine Portable
Screw Air Compressor Scroll Air Compressor Screw Air Compressor
Main Product
What we can supply:
* Oil-injected Screw Air Compressor (2~16 bar)
* All-in-1 Screw Air Compressor with Tank, Dryer, and Filters (7~16 bar)
* Single-phase Small Screw Air Compressor for Home use (8~10 bar)
* Water-injected Oil-free Screw Air Compressor (2~40 bar)
* Oil-free Scroll Air Compressor (8~12 bar)
* Diesel&Electric Engine Portable Screw Air Compressor (8~30 bar)
* Air Dryer, Air tank, Filters, and other Spare parts
| After-sales Service: | 24*7 Online Services and Video Guide |
|---|---|
| Warranty: | 1 Year for The Whole Machine & 2 Years for Air End |
| Lubrication Style: | Oil-free |
| Cooling System: | Air Cooling |
| Power Source: | AC Power |
| Installation Type: | Stationary Type |
| Customization: |
Available
|
|
|---|

Choose an Air Compressor for Your Business
There are several factors to consider when choosing an air compressor for your business. One factor to consider is the type of compressor you are looking for, which may include single-stage, low noise, and positive displacement. Hope this article helps you make the right decision. After all, your business success will depend on this device! Let’s take a closer look at these factors. Also, consider what compressor manufacturers say about their products.
Positive displacement
Positive displacement air compressors compress air by drawing in a volume from an inlet and extruding it out of a chamber. This increases the pressure at which the gas can be pumped at rates that cannot be pumped through the outlet at lower pressures at higher mass flow rates. These types of compressors are available in single-acting and double-acting configurations. They are classified by the number of cylinders.
There are two different types of air compressors: reciprocating air compressors and screw compressors. Both are roll machines. Positive displacement air compressors use pistons and cylinders to compress air. The resulting air pressure builds up within the compressor housing, increasing the potential energy of the compressed air. Screw air compressors are the most popular positive displacement air compressors, which can be either single-stage screw-blade air compressors or multi-stage screw-blade oil-immersed screw air compressors.
Positive displacement flowmeters use a rotating measuring chamber to divide the fluid into discrete quantities. The number of times the chamber was refilled and emptied was used to estimate the total flow. However, positive displacement flow meters are prone to leaks, reducing the accuracy of the estimates. If a leak occurs, it can cause false readings and damage the compressor. However, leaks in positive displacement air compressors can reduce pressure.
The most common types of positive displacement air compressors are screw, reciprocating, and vane. Rotary positive displacement air compressors are also available as well as many other air compressors. Positive displacement air compressors are most commonly used in large manufacturing facilities. If you are considering an air compressor for commercial or industrial applications, it is imperative to understand how the components of the unit work. Please read the information below to learn more before deciding which application is best for you.
Positive displacement air compressors use a piston to force air into a chamber, compressing the air in the process. The piston moves in the opposite direction, thereby reducing the volume of the chamber. When the amount of air in the chamber reaches its maximum value, the valve opens, allowing it to escape at higher pressure. Positive displacement air compressors are generally less efficient than centrifugal compressors. However, they are still an excellent choice for a variety of applications.
Single-stage
The discharge pressure of the single-stage air compressor is used to control the operation of the compressor. Properly designed load/unload controls allow the air compressor to operate at its most efficient point while minimizing stress on the main engine bearings. Single-stage air compressors can approach variable speed efficiency with appropriate storage capacity. However, improper storage can cause premature bearing wear on the main unit. If this is the case, a single-stage air compressor may not be ideal.
A single-stage air compressor has only one cylinder, which means one stroke is required to move air from one cylinder to another. Pressure is measured in cubic feet per minute or CFM. Tank size is also important as a large single-stage air compressor may be required to operate multiple air tools. Single-stage air compressors can be used in a variety of applications and can last for years.
For the most common uses, single-stage air compressors are the most practical option. These devices work with most hand tools, from hammers to grinders. Single-stage air compressors are lightweight and easy to move. However, two-stage air compressors provide more CFM, making them a better choice for industrial or commercial use. However, two-stage compressors are not suitable for private use. Therefore, if your main purpose is DIY and craft projects, it is better to choose a single-stage air compressor.
Compared with two-stage air compressors, single-stage screw air compressors are cheaper. They come from a variety of manufacturers and range in power from 3 to 600 horsepower. Single-stage air compressors are a cost-effective solution for a variety of air compressor needs. They offer flexibility and multiple control methods, making them an excellent choice for many different applications. Therefore, when choosing an air compressor for your business, choose the one with the most suitable functions.
Single-stage air compressors are the most affordable and easy-to-use air compressors for small to medium jobs. They also have higher compression ratios. The compression ratio is the ratio of absolute discharge pressure to absolute inlet pressure. When calculating the ratio, it takes into account atmospheric pressure and gauge pressure. The compression ratio pushes the surface area of the rotor, which increases the thrust load.
Single-stage air compressors are smaller and easier to transport than two-stage units. Single-stage air compressors have one air intake, and two-stage air compressors have two air intakes. The difference between single-stage and two-stage air compressors largely depends on the number of times the air is compressed. A single-stage air compressor compresses the air once, while a dual-stage air compressor compresses the same amount of air twice.
low noise
Low noise air compressors are ideal for a variety of applications. While no air compressor is completely silent, some models are much quieter than others. For the Hitachi EC28M portable compressor, the noise level is 59 decibels. The compressor features steel rollers that protect the internal components and give it a sleek, modern look. It also has a one-gallon fuel tank and a half-horsepower drive.
Noise from air compressors can be distracting and reduce productivity. It is important to choose low-noise air compressors to keep employees healthy and happy at work. While noise is an unfortunate aspect of working on the shop floor, reducing it can improve productivity. By reducing distracting noise, employees can focus on their work and communicate more effectively. That means higher quality work and happier clients. If you’re looking for a low-noise air compressor, be sure to read the tips below.
Low noise air compressors are an excellent choice for businesses of all sizes. These powerful tools can run multiple tools simultaneously. The two water tanks are made of rust-resistant aluminum and are stackable. This air compressor is heavier and can handle large jobs with ease. It costs more than other air compressors, but it can handle a lot of work efficiently. CZPT Air Tools air compressors come with a one-year warranty and are highly recommended by contractors.
Noiseless air compressors are generally more expensive than comparable products, but they are worth the extra cost. Noiseless compressors are a good option for businesses that need to avoid disturbing nearby people. For example, you might want to consider a low-noise air compressor for a dental office, which cannot tolerate noise. Fortunately, this problem can be solved by relocating the compressor to a location that is more isolated from your workspace.
One brand of low-noise air compressors offers two models. The CZPT Air Tools 2010A features a large cast aluminum can, regulating pressure gauge, and two universal quick-connects. It produces 68 decibels of noise when it works. It has a large 8-gallon fuel tank capacity and has wheels and handles for easy transport. Its powerful engine produces a low noise level of 68 decibels.
Another popular low noise air compressor is the Makita MAC210Q Quiet Series. This model is capable of producing up to 71.5 decibels of sound, which is the amount of air it produces at 90PSI. The MAC210Q features a durable oil-free pump and weighs just 36 pounds with a handle and wheels. These compressors are easy to move and ideal for indoor work.

editor by CX 2023-05-25
China Oil Free Screw Air Compressor 15 Kw ~ 185 Kw Low Pressure AC Compresor with German Technology air compressor for car
Solution Description
AirHorse Guarantees Every Equipment Will Run Nicely Much more Than 15 Several years
Our goods are widely utilized in power technology, semiconductor, shipbuilding, oil field, rubber, meals, pharmacy, package, electronic, communication, cement, glasses, chemical, textile, papermaking, gasoline, and oil refining, and so on.
Functions Of Belt Pushed Screw Air Compressor
one . Air end with substantial-efficiency
2. Double Screw with minimal sound, Super Silenced Enclosure
3. Classy compact design and style. Entirely open up accessibility door to inner components for effortless support.
four. a hundred% Ongoing duty procedure. Load/No Load procedure
5. Large good quality CE Certification industrial electric motors. ISO,CE,UL Certification
six. Straightforward to use and study Lcd control panel
7. High temperature, higher stress and anti-rotation shutdown
8. Power effective operation
nine. 5 micron, drinking water-resistant air filtration material
ten. 1year entire machine guarantee,3years air finish warranty.
11. Offer the machine with various operating voltage in accordance to customer’s request,
such as: 380Volt,3phase,50hz
420Volt,3phase,50hz
380Volt,3phase,60hz
220Volt,3phase and 60hz, etc.
| Reduced strain screw air compressor (3-5bar) | ||||||
| Design | Electricity (KW/HP) |
Discharge force(Mpa) | Air stream(m³/min) | Measurement (LxWxH)mm |
Air outlet dimension | Bodyweight(kg) |
| AHL-20A | 15/twenty | .3 | three.eight | 1500*990*1420 | G 1 1/2″ | 1200 |
| .4 | three.6 | |||||
| .five | / | |||||
| AHL-30A | 22/30 | .three | five.eight | 1730*1070*1650 | DN50 | 1400 |
| .four | 5.five | |||||
| .five | / | |||||
| AHL-50A | 37/50 | .three | ten. | 2000*1200*1700 | DN65 | 1700 |
| .four | / | |||||
| .five | / | |||||
| AHL-60A | 45/60 | .three | 12.8 | 2000*1200*1700 | DN65 | 1800 |
| .4 | nine.8 | |||||
| .five | 9.6 | |||||
| AHL-75A | 55/seventy five | .3 | sixteen. | 2450*1550*1750 | DN80 | 2500 |
| .four | twelve.five | |||||
| .5 | 12.three | |||||
| AHL-100A | 75/100 | .3 | twenty. | 2450*1550*1750 | DN80 | 2700 |
| .4 | fifteen.7 | |||||
| .5 | fifteen.four | |||||
| AHL-120A | 90/one hundred twenty | .3 | 23. | 3100*1800*2000 | DN125 | 3800 |
| .4 | 22.5 | |||||
| .5 | 19.3 | |||||
| AHL-150A | 110/one hundred fifty | .three | 28.6 | 3100*1800*2000 | DN125 | 4000 |
| .four | 28.3 | |||||
| .5 | 22.two | |||||
| AHL-175A | 132/175 | .3 | 32.1 | 3500*2050*2250 | DN125 | 4700 |
| .4 | 31.1 | |||||
| .five | 27.nine | |||||
| AHL-220A | 160/220 | .three | forty three. | 3500*2150*2250 | DN150 | 4700 |
| .four | 38.9 | |||||
| .5 | 31.four | |||||
| AHL-250A | 185/250 | .3 | forty three. | 3700*2150*2250 | DN150 | 5200 |
| .4 | forty two.seven | |||||
| .5 | 38.nine | |||||
Product display
| Hello! My pal, I am a supplier of air compressors in China. We are at relaxation time now. Welcome to simply click “Comtact Provider” at the prime of the website page to send us an inquiry. We will offer you with the most favorable price and much more solution specifics as soon as achievable. |
HangZhou AirHorse Compressor Co., Ltd.
• Skilled manufacturer of air compressor program tools
• Primary products contain Screw Air Compressor & Piston Air Compressor
• Cutting-edge technology & leading techniques: first German air stop with CZPT bearing, Siemens/ABB electricity technique and spare parts of other world-renowned manufacturers. To make sure reliability, higher efficiency, low sound and long daily life span
Packaging and Delivery
| Hi! My good friend, I am a provider of air compressors in China. We are at rest time now. Welcome to click “Comtact Supplier” at the prime of the web page to send us an inquiry. We will supply you with the most favorable price tag and more merchandise details as shortly as feasible. |
Our Service
Soon after-sale Service
• Any concerns or requests just before, throughout or soon after revenue, we would like to assist you any time and will locate you the ideal answer in 24 several hours.
• Warranty: One year for the complete equipment Authentic spare parts will be presented with very best value.
• In excess of board engineer services is accessible.
Abroad Engineer Provider
• We are accessible to send out our engineer for aboard services. Only need to have you to prepare the lodging, transportation and translator. Additional value for each and every will be talked about based on local price tag degree.
Unique Customized Services
one) Full OEM
• Quantity: at least 5 pcs
• In this program, we will do all the changes (Color, name plate and logo) as your need, and will not cost additional charge.
two) 50 % OEM
• Amount: no limit
• Underneath this software, we can make the essential alteration (identify plate and symbol) but we will cost some further fee for the identify plate, as the name plate factory has the MOQ.
3) Brand OEM
• Quantity: no restrict
• Only the emblem will be changed to yours, and no extra charge will be billed.
FAQ
Q1: Are you manufacturing facility or trade firm?
A1: We are manufacturing facility.
Q2: What the precisely address of your manufacturing unit?
A2: Our company is situated in AirHorse Industrial Park, Xihu (West Lake) Dis. District, HangZhou, ZheJiang , China
Q3: Guarantee terms of your equipment?
A3: 1 yr warranty for the machine and technological help in accordance to your demands.
This fall: Will you offer some spare elements of the machines?
A4: Of course, of program.
Q5: What about item package?
A5: We pack our products strictly with normal seaworthy case.
Q6: What about the voltage of products?
Can they be custom-made? A6: Sure, of system. The voltage can be tailored in accordance to your equirement.
Q7: Which payment term can you acknowledge?
A7: 40% T/T in sophisticated, 60% T/T towards the B/L duplicate.
Q8: How long will you take to prepare manufacturing?
A8: 380V 50HZ we can supply the merchandise inside of 7-15 times. Other electrical power or other coloration we will shipping in twenty five-thirty times.
Q9: Can you acknowledge OEM orders?
A9: Indeed, with skilled style group, OEM orders are very welcome.
Q10: Which trade phrase can you acknowledge?
A10: Offered trade terms: FOB, CIF, CFR, EXW, CPT, and so forth.
| Hi! My good friend, I am a supplier of air compressors in China. We are at relaxation time now. Welcome to simply click “Comtact Provider” at the best of the web page to send us an inquiry. We will offer you with the most favorable value and a lot more item information as soon as feasible. |
|
US $2,500-4,100 / Piece | |
1 Piece (Min. Order) |
###
| Lubrication Style: | Lubricated |
|---|---|
| Cooling System: | Air Cooling |
| Power Source: | AC Power |
| Cylinder Position: | Vertical |
| Structure Type: | Closed Type |
| Installation Type: | Stationary Type |
###
| Samples: |
US$ 3000/Piece
1 Piece(Min.Order) |
|---|
###
| Customization: |
Available
|
|---|
###
| Low pressure screw air compressor (3-5bar) | ||||||
| Model | Power (KW/HP) |
Discharge pressure(Mpa) | Air flow(m³/min) | Size (LxWxH)mm |
Air outlet size | Weight(kg) |
| AHL-20A | 15/20 | 0.3 | 3.8 | 1500*990*1420 | G 1 1/2" | 1200 |
| 0.4 | 3.6 | |||||
| 0.5 | / | |||||
| AHL-30A | 22/30 | 0.3 | 5.8 | 1730*1070*1650 | DN50 | 1400 |
| 0.4 | 5.5 | |||||
| 0.5 | / | |||||
| AHL-50A | 37/50 | 0.3 | 10.0 | 2000*1200*1700 | DN65 | 1700 |
| 0.4 | / | |||||
| 0.5 | / | |||||
| AHL-60A | 45/60 | 0.3 | 12.8 | 2000*1200*1700 | DN65 | 1800 |
| 0.4 | 9.8 | |||||
| 0.5 | 9.6 | |||||
| AHL-75A | 55/75 | 0.3 | 16.0 | 2450*1550*1750 | DN80 | 2500 |
| 0.4 | 12.5 | |||||
| 0.5 | 12.3 | |||||
| AHL-100A | 75/100 | 0.3 | 20.0 | 2450*1550*1750 | DN80 | 2700 |
| 0.4 | 15.7 | |||||
| 0.5 | 15.4 | |||||
| AHL-120A | 90/120 | 0.3 | 23.0 | 3100*1800*2000 | DN125 | 3800 |
| 0.4 | 22.5 | |||||
| 0.5 | 19.3 | |||||
| AHL-150A | 110/150 | 0.3 | 28.6 | 3100*1800*2000 | DN125 | 4000 |
| 0.4 | 28.3 | |||||
| 0.5 | 22.2 | |||||
| AHL-175A | 132/175 | 0.3 | 32.1 | 3500*2050*2250 | DN125 | 4700 |
| 0.4 | 31.1 | |||||
| 0.5 | 27.9 | |||||
| AHL-220A | 160/220 | 0.3 | 43.0 | 3500*2150*2250 | DN150 | 4700 |
| 0.4 | 38.9 | |||||
| 0.5 | 31.4 | |||||
| AHL-250A | 185/250 | 0.3 | 43.0 | 3700*2150*2250 | DN150 | 5200 |
| 0.4 | 42.7 | |||||
| 0.5 | 38.9 | |||||
###
| Hi! My friend, I am a supplier of air compressors in China. We are at rest time now. Welcome to click "Comtact Supplier" at the top of the page to send us an inquiry. We will provide you with the most favorable price and more product details as soon as possible. |
###
| Hi! My friend, I am a supplier of air compressors in China. We are at rest time now. Welcome to click "Comtact Supplier" at the top of the page to send us an inquiry. We will provide you with the most favorable price and more product details as soon as possible. |
###
| Hi! My friend, I am a supplier of air compressors in China. We are at rest time now. Welcome to click "Comtact Supplier" at the top of the page to send us an inquiry. We will provide you with the most favorable price and more product details as soon as possible. |
|
US $2,500-4,100 / Piece | |
1 Piece (Min. Order) |
###
| Lubrication Style: | Lubricated |
|---|---|
| Cooling System: | Air Cooling |
| Power Source: | AC Power |
| Cylinder Position: | Vertical |
| Structure Type: | Closed Type |
| Installation Type: | Stationary Type |
###
| Samples: |
US$ 3000/Piece
1 Piece(Min.Order) |
|---|
###
| Customization: |
Available
|
|---|
###
| Low pressure screw air compressor (3-5bar) | ||||||
| Model | Power (KW/HP) |
Discharge pressure(Mpa) | Air flow(m³/min) | Size (LxWxH)mm |
Air outlet size | Weight(kg) |
| AHL-20A | 15/20 | 0.3 | 3.8 | 1500*990*1420 | G 1 1/2" | 1200 |
| 0.4 | 3.6 | |||||
| 0.5 | / | |||||
| AHL-30A | 22/30 | 0.3 | 5.8 | 1730*1070*1650 | DN50 | 1400 |
| 0.4 | 5.5 | |||||
| 0.5 | / | |||||
| AHL-50A | 37/50 | 0.3 | 10.0 | 2000*1200*1700 | DN65 | 1700 |
| 0.4 | / | |||||
| 0.5 | / | |||||
| AHL-60A | 45/60 | 0.3 | 12.8 | 2000*1200*1700 | DN65 | 1800 |
| 0.4 | 9.8 | |||||
| 0.5 | 9.6 | |||||
| AHL-75A | 55/75 | 0.3 | 16.0 | 2450*1550*1750 | DN80 | 2500 |
| 0.4 | 12.5 | |||||
| 0.5 | 12.3 | |||||
| AHL-100A | 75/100 | 0.3 | 20.0 | 2450*1550*1750 | DN80 | 2700 |
| 0.4 | 15.7 | |||||
| 0.5 | 15.4 | |||||
| AHL-120A | 90/120 | 0.3 | 23.0 | 3100*1800*2000 | DN125 | 3800 |
| 0.4 | 22.5 | |||||
| 0.5 | 19.3 | |||||
| AHL-150A | 110/150 | 0.3 | 28.6 | 3100*1800*2000 | DN125 | 4000 |
| 0.4 | 28.3 | |||||
| 0.5 | 22.2 | |||||
| AHL-175A | 132/175 | 0.3 | 32.1 | 3500*2050*2250 | DN125 | 4700 |
| 0.4 | 31.1 | |||||
| 0.5 | 27.9 | |||||
| AHL-220A | 160/220 | 0.3 | 43.0 | 3500*2150*2250 | DN150 | 4700 |
| 0.4 | 38.9 | |||||
| 0.5 | 31.4 | |||||
| AHL-250A | 185/250 | 0.3 | 43.0 | 3700*2150*2250 | DN150 | 5200 |
| 0.4 | 42.7 | |||||
| 0.5 | 38.9 | |||||
###
| Hi! My friend, I am a supplier of air compressors in China. We are at rest time now. Welcome to click "Comtact Supplier" at the top of the page to send us an inquiry. We will provide you with the most favorable price and more product details as soon as possible. |
###
| Hi! My friend, I am a supplier of air compressors in China. We are at rest time now. Welcome to click "Comtact Supplier" at the top of the page to send us an inquiry. We will provide you with the most favorable price and more product details as soon as possible. |
###
| Hi! My friend, I am a supplier of air compressors in China. We are at rest time now. Welcome to click "Comtact Supplier" at the top of the page to send us an inquiry. We will provide you with the most favorable price and more product details as soon as possible. |
Choosing an Air Compressor
Considering a new Air Compressor? Here are some tips to make the decision easier. Learn the pros and cons of each type, including the differences between oil-injected and oil-free models, single stage and positive displacement. In addition, learn more about the different technologies that are available for your air compressor. It is important to choose an appropriate unit for the type of work you do. Here are some of the best compressors available today.
Positive displacement
There are several different types of air compressors, but most are positive displacement air compressors. They use a rotary or reciprocating component to compress air. The reciprocating component compresses air by reducing the volume of the chamber. Positive displacement compressors are used in bicycle pumps, chemical plants, and refrigerators. Positive displacement air compressors use multiple inlet ports. Despite the various types, the principle of operation remains the same.
Another type of positive displacement air compressor is a reciprocating piston. The piston inside a cylinder moves up and down, causing the compressed air to fill the upper part of the cylinder. These air compressors are used in a variety of different applications, including blowing bottles and gas pipelines. These air compressors can be water-cooled, lubricated, or non-lubricated. Different types have different capacities and air pressures.
A positive displacement flowmeter uses a rotating chamber that divides continuous fluid into discrete portions. The number of times the chamber is filled and discharged can be used to estimate the flow rate. The rotation speed of the measuring chamber is directly proportional to the flow rate. The drawbacks of this type of positive displacement flowmeter are that it is prone to jamming. If the fluid contains particles, it may be too thick for the meter to determine flow rate.
A negative displacement air compressor was invented in 1860 and is the oldest type of compressor. It uses two lobes positioned in a circular cavity. One rotor is connected to an engine, while the other pushes the other one to spin in the opposite direction. Negative displacement compressors are low-maintenance, but they do require more precision. They are often used in nuclear power plants because they use the kinetic energy of the rotating elements to produce pressure.
Oil-injected
Oil-flooded or oil-injected air compressors use liquid to seal and lubricate moving parts and reduce noise. Oil-flooded air compressors are effective for a variety of pneumatic tools and accessories. Some models have a thermostat that controls the amount of oil used during operation. Other types of oil-flooded air compressors are piston-type models. Here is an overview of the basic differences between these two air compressors.
An oil-injected air compressor is more expensive than a comparable oil-free air compressor, but its advantages far outweigh its disadvantages. An oil-free compressor is quieter, requires less maintenance, and has a lower price tag. It also offers a greater degree of air purity. A number of other advantages may also make this type of air compressor the better choice for many industrial settings. If you need a high-pressure compressor in a tight space, consider the benefits of an oil-free system.
Oil-injected air compressors require more maintenance than oil-free models. Both types of air compressors offer similar capacity and ISO 8573-1 Class 0 and 1-2 purity, but the oil-injected systems require more air-treatment components. They require an activated carbon filter and coalescing filter. Oil-injected air compressors will likely remain the standard for industrial air compressors for many years. And since their performance and efficiency are comparable, it may be worthwhile to invest in some point-of-use air treatment.
Both types of air compressors have their benefits. However, choosing between oil-free and oil-injected air compressors is not as straightforward as you might think. Whichever type you choose, make sure it will meet your needs. The benefits of an oil-injected air compressor outweigh their disadvantages. In general, oil-injected air compressors are more durable and can last longer than oil-free models. The only downside is their higher price.
Oil-free
When choosing an air compressor for your company, you’ll need to determine what it is going to be used for. For example, if you’re planning on using it to power multiple workers, you should consider getting an oil-free compressor. An oil-free compressor, on the other hand, is quieter and can power several workers at a time. If you’re a contractor, the most important consideration will be the type of jobs you’ll be doing. Higher air pressure means greater demand for air flow, and more pressure can damage the equipment.
Oil-free compressed air is certified 100% free of contaminants. Technically, oil-free air is not completely free of foreign matter, but it is extremely low within the limits of practical air quality. A technically oil-free air compressor might have a total oil level of 0.003 mg/m3. If you’re in need of a technically oil-free air compressor, you must install an air treatment equipment after your current compressor.
If you’re in the manufacturing industry, a good oil-free air compressor will save you money and reduce your environmental impact. Many of these tools require air compressors to work, and this equipment will ensure that they don’t get contaminated. To buy the best oil-free compressor, you should learn a bit about the different terms used by compressor repair companies. ACFM, for example, is the amount of air that can be compressed in one minute at rated conditions.
When you’re using an oil-free air compressor, you should know that the overall life of the device will be much shorter. Compared to an oil-flooded rotary screw air compressor, an oil-free compressor typically has a lifespan of 50 thousand hours. But it’s important to understand that this type of compressor can still cause damage to piping and processes. Therefore, you should choose an oil-free compressor when you need to clean air for your business.
Single-stage
A single-stage air compressor, also known as a piston air compressor, compresses air only once before storing it in a cylinder. This stored air has enough energy to power a variety of pneumatic tools, such as screwdrivers, chisels, and wrenches. These units are also ideally suited for low-flow applications and are widely used in gas stations, auto shops, and various manufacturing plants.
A single-stage air compressor uses two valves – one for inlet and one for outlet – to transfer compressed air. Both valves are actuated by springs. The inlet valve has a slight curvature to provide protection from damage. The compressor’s outlet valve opens when the pressure in the cylinder is higher than the pressure in the storage tank. The piston moves very quickly inside the cylinder, exerting a high amount of force throughout the compression process. This high piston speed is a common cause of compressor wear and tear.
A single-stage air compressor is ideal for smaller tradesmen and small construction crews. Its lightweight and compact design make it easier to transport and store. While it may be tempting to buy the first cheap air compressor you see, it’s important to balance the price against performance to choose the right air compressor for your needs. The best single-stage air compressor is one that provides excellent performance and durability. Its two-stage counterpart is designed for larger construction teams and large applications.
The main difference between a single-stage and a two-stage air compressor lies in their capacity. A single-stage air compressor compresses air only once and delivers it into the storage tank, while a two-stage compressor compresses it twice, creating double the pressure. Because of this, single-stage air compressors are cheaper and versatile than their counterparts, which means that they can be used for multiple purposes.
Low-noise
A low-noise air compressor is a type of industrial compressor that is less noisy than regular air compressors. These are generally smaller machines designed for smaller factories and workshops with a few to several employees. They are designed to handle mid-weight volumes of compressed air per day. This type of compressor is especially useful for smaller manufacturing businesses that need to produce compressed air for medical applications. Small breweries can also benefit from the low-noise capabilities of these compressors.
Low-noise air compressors come in various sizes and features. For smaller jobs, you can purchase a one-gallon model that is lightweight and portable. For larger jobs, you can purchase one with a larger tank that can provide more pressure for longer jobs. However, a larger tank will make the compressor heavier and harder to transport. To avoid this, make sure to check the size of the tank and how much power it can handle.
Considering a low-noise air compressor for your business? If so, you’ve come to the right place. There are a variety of affordable and dependable low-noise options to choose from. A CAT 10020C, for example, is designed to provide high-volume air to many outlets at once. A CAT 10020C comes with a 10-gallon tank, wheels, and a carrying handle.
Noise levels can also affect the productivity of employees. When employees work with air compressors in close proximity to each other, they may develop tinnitus. If employees are free from tinnitus because of the loud noise, they are likely to work more efficiently. Moreover, it will be easier for them to focus and communicate efficiently. If you need a compressor, a low-noise one is an excellent choice.


editor by czh 2023-01-16
China Low Pressure Reciprocating Natural Gas Compressor Air Compressor air compressor oil
Merchandise Description
| Model | VW-6.3/(1-5)-17 Natural gasoline compressor |
| Flow rate | 6.3 m³/min |
| inlet strain | .1-.5 MPa.G |
| outlet strain | one.7 MPa.G |
Reference Technical parameters and technical specs
| NO. | Model | Compressed medium | Stream charge Nm³/h |
Inlet strain MPa |
Outlet force MPa |
Rotating pace r/min |
Motor electricity KW |
Cooling method | Overall dimension mm |
Fat Kg |
| 1 | DF-.4/(2-6)-250 | Natural gasoline | one hundred sixty | .2~.six | 25. | 740 | 30 | Air cooled | 2800x1800x1500 | ~3500 |
| two | DW-4.9/(1.5-2.5)-22 | Natural gas | seven hundred | .fifteen~.twenty five | 2.two | 740 | one hundred ten | H2o cooled | 3800x2700x1800 | ~6000 |
| 3 | MW-19.two/(1-17)-(seventeen-twenty five) | Natural fuel | 2000 | .1~1.seven | one.7~2.5 | 980 | 400 | H2o cooled | 7200x3600x2100 | ~21000 |
| 4 | VWF-1.sixty five/(25-35)-50 | Normal fuel | 2500 | 2.5~3.five | five. | 740 | ninety | Air cooled | 4500x2500x2100 | ~5500 |
| five | VWF-8/(.6-3)-twelve | All-natural gas | 1900 | .06~.3 | 1.2 | 980 | 132 | Air cooled | 5800x2300x2450 | ~7800 |
| 6 | VWF–9/.05-fourteen | Natural gas | five hundred | .005 | 1.4 | 740 | ninety | Air cooled | 3800*2000*1600 | ~3500 |
| 7 | VWF-13.6/(.05~.2)-six | Natural gas | 800 | .005~.02 | .6 | 740 | 90 | Air cooled | 5000*2200*2200 | ~6000 |
| eight | DW-2.8/(16-25)-fifty | Organic fuel | 2500 | one.6~two.5 | five. | 980 | a hundred and sixty | H2o cooled | 4300*3000*1600 | ~7000 |
| 9 | DW-3/15-52 | Natural gas | 2550 | 1.five | 5.2 | 740 | 185 | Water cooled | 3800*3400*2300 | ~9000 |
| 10 | DW-6.9/(7-fifteen)-twenty | All-natural gasoline | 4000 | .7~1.five | two. | 980 | 160 | Water cooled | 3600*2300*1600 | ~forty five00 |
| eleven | DFW-15.9/(.4-1)-16 | All-natural fuel | 1330 | .04~.1 | one.six | 740 | 250 | Mixed amazinged | 5000*3400*2000 | ~12000 |
| twelve | VW-3.5/1-eighteen | Normal fuel | 420 | .1 | one.8 | 980 | fifty five | Drinking water cooled | 4000*1800*2200 | ~5000 |
| 13 | VWF-eleven/(.5-2)-fourteen | Natural fuel | a thousand | .05~.2 | 1.4 | 980 | one hundred sixty | Air cooled | 5200*2000*2200 | ~6000 |
| fourteen | VF-1.4/(5-7)-250 | Organic gas | five hundred | .5~.seven | 25. | 980 | one hundred ten | Air cooled | 5000*2400*2100 | ~6800 |
| fifteen | VF-2.2/(.5-.7)-sixty | Normal fuel | a hundred and eighty | .05-.07 | six. | 980 | forty five | Air cooled | 6000*2500*2400 | ~8000 |
| one6 | DW-9/3-35 | Organic gasoline | 2000 | .3 | three.five | 740 | 250 | Air cooled | 4800*4000*2000 | ~one hundred thirty00 |
|
US $24,000-45,000 / Piece | |
1 Piece (Min. Order) |
###
| Warranty: | 18 Months |
|---|---|
| Lubrication Style: | Lubricated |
| Cooling System: | Air Cooling |
| Cylinder Arrangement: | Balanced Opposed Arrangement |
| Cylinder Position: | Angular |
| Structure Type: | Open Type |
###
| Customization: |
Available
|
|---|
###
| Model | VW-6.3/(1-5)-17 Natural gas compressor |
| Flow rate | 6.3 m³/min |
| inlet pressure | 0.1-0.5 MPa.G |
| outlet pressure | 1.7 MPa.G |
###
| NO. | MODEL | Compressed medium | Flow rate Nm³/h |
Inlet pressure MPa |
Outlet pressure MPa |
Rotating speed r/min |
Motor power KW |
Cooling mode | Overall dimension mm |
Weight Kg |
| 1 | DF-0.4/(2-6)-250 | Natural gas | 160 | 0.2~0.6 | 25.0 | 740 | 30 | Air cooled | 2800x1800x1500 | ~3500 |
| 2 | DW-4.9/(1.5-2.5)-22 | Natural gas | 700 | 0.15~0.25 | 2.2 | 740 | 110 | Water cooled | 3800x2700x1800 | ~6000 |
| 3 | MW-19.2/(1-17)-(17-25) | Natural gas | 2000 | 0.1~1.7 | 1.7~2.5 | 980 | 400 | Water cooled | 7200x3600x2100 | ~21000 |
| 4 | VWF-1.65/(25-35)-50 | Natural gas | 2500 | 2.5~3.5 | 5.0 | 740 | 90 | Air cooled | 4500x2500x2100 | ~5500 |
| 5 | VWF-8/(0.6-3)-12 | Natural gas | 1900 | 0.06~0.3 | 1.2 | 980 | 132 | Air cooled | 5800x2300x2450 | ~7800 |
| 6 | VWF–9/0.05-14 | Natural gas | 500 | 0.005 | 1.4 | 740 | 90 | Air cooled | 3800*2000*1600 | ~3500 |
| 7 | VWF-13.6/(0.05~0.2)-6 | Natural gas | 800 | 0.005~0.02 | 0.6 | 740 | 90 | Air cooled | 5000*2200*2200 | ~6000 |
| 8 | DW-2.8/(16-25)-50 | Natural gas | 2500 | 1.6~2.5 | 5.0 | 980 | 160 | Water cooled | 4300*3000*1600 | ~7000 |
| 9 | DW-3/15-52 | Natural gas | 2550 | 1.5 | 5.2 | 740 | 185 | Water cooled | 3800*3400*2300 | ~9000 |
| 10 | DW-6.9/(7-15)-20 | Natural gas | 4000 | 0.7~1.5 | 2.0 | 980 | 160 | Water cooled | 3600*2300*1600 | ~4500 |
| 11 | DFW-15.9/(0.4-1)-16 | Natural gas | 1330 | 0.04~0.1 | 1.6 | 740 | 250 | Mixed cooled | 5000*3400*2000 | ~12000 |
| 12 | VW-3.5/1-18 | Natural gas | 420 | 0.1 | 1.8 | 980 | 55 | Water cooled | 4000*1800*2200 | ~5000 |
| 13 | VWF-11/(0.5-2)-14 | Natural gas | 1000 | 0.05~0.2 | 1.4 | 980 | 160 | Air cooled | 5200*2000*2200 | ~6000 |
| 14 | VF-1.4/(5-7)-250 | Natural gas | 500 | 0.5~0.7 | 25.0 | 980 | 110 | Air cooled | 5000*2400*2100 | ~6800 |
| 15 | VF-2.2/(0.5-0.7)-60 | Natural gas | 180 | 0.05-0.07 | 6.0 | 980 | 45 | Air cooled | 6000*2500*2400 | ~8000 |
| 16 | DW-9/3-35 | Natural gas | 2000 | 0.3 | 3.5 | 740 | 250 | Air cooled | 4800*4000*2000 | ~13000 |
|
US $24,000-45,000 / Piece | |
1 Piece (Min. Order) |
###
| Warranty: | 18 Months |
|---|---|
| Lubrication Style: | Lubricated |
| Cooling System: | Air Cooling |
| Cylinder Arrangement: | Balanced Opposed Arrangement |
| Cylinder Position: | Angular |
| Structure Type: | Open Type |
###
| Customization: |
Available
|
|---|
###
| Model | VW-6.3/(1-5)-17 Natural gas compressor |
| Flow rate | 6.3 m³/min |
| inlet pressure | 0.1-0.5 MPa.G |
| outlet pressure | 1.7 MPa.G |
###
| NO. | MODEL | Compressed medium | Flow rate Nm³/h |
Inlet pressure MPa |
Outlet pressure MPa |
Rotating speed r/min |
Motor power KW |
Cooling mode | Overall dimension mm |
Weight Kg |
| 1 | DF-0.4/(2-6)-250 | Natural gas | 160 | 0.2~0.6 | 25.0 | 740 | 30 | Air cooled | 2800x1800x1500 | ~3500 |
| 2 | DW-4.9/(1.5-2.5)-22 | Natural gas | 700 | 0.15~0.25 | 2.2 | 740 | 110 | Water cooled | 3800x2700x1800 | ~6000 |
| 3 | MW-19.2/(1-17)-(17-25) | Natural gas | 2000 | 0.1~1.7 | 1.7~2.5 | 980 | 400 | Water cooled | 7200x3600x2100 | ~21000 |
| 4 | VWF-1.65/(25-35)-50 | Natural gas | 2500 | 2.5~3.5 | 5.0 | 740 | 90 | Air cooled | 4500x2500x2100 | ~5500 |
| 5 | VWF-8/(0.6-3)-12 | Natural gas | 1900 | 0.06~0.3 | 1.2 | 980 | 132 | Air cooled | 5800x2300x2450 | ~7800 |
| 6 | VWF–9/0.05-14 | Natural gas | 500 | 0.005 | 1.4 | 740 | 90 | Air cooled | 3800*2000*1600 | ~3500 |
| 7 | VWF-13.6/(0.05~0.2)-6 | Natural gas | 800 | 0.005~0.02 | 0.6 | 740 | 90 | Air cooled | 5000*2200*2200 | ~6000 |
| 8 | DW-2.8/(16-25)-50 | Natural gas | 2500 | 1.6~2.5 | 5.0 | 980 | 160 | Water cooled | 4300*3000*1600 | ~7000 |
| 9 | DW-3/15-52 | Natural gas | 2550 | 1.5 | 5.2 | 740 | 185 | Water cooled | 3800*3400*2300 | ~9000 |
| 10 | DW-6.9/(7-15)-20 | Natural gas | 4000 | 0.7~1.5 | 2.0 | 980 | 160 | Water cooled | 3600*2300*1600 | ~4500 |
| 11 | DFW-15.9/(0.4-1)-16 | Natural gas | 1330 | 0.04~0.1 | 1.6 | 740 | 250 | Mixed cooled | 5000*3400*2000 | ~12000 |
| 12 | VW-3.5/1-18 | Natural gas | 420 | 0.1 | 1.8 | 980 | 55 | Water cooled | 4000*1800*2200 | ~5000 |
| 13 | VWF-11/(0.5-2)-14 | Natural gas | 1000 | 0.05~0.2 | 1.4 | 980 | 160 | Air cooled | 5200*2000*2200 | ~6000 |
| 14 | VF-1.4/(5-7)-250 | Natural gas | 500 | 0.5~0.7 | 25.0 | 980 | 110 | Air cooled | 5000*2400*2100 | ~6800 |
| 15 | VF-2.2/(0.5-0.7)-60 | Natural gas | 180 | 0.05-0.07 | 6.0 | 980 | 45 | Air cooled | 6000*2500*2400 | ~8000 |
| 16 | DW-9/3-35 | Natural gas | 2000 | 0.3 | 3.5 | 740 | 250 | Air cooled | 4800*4000*2000 | ~13000 |
Types of Air Compressors
There are many types of Air Compressors available on the market. Learn which one is right for your needs and what makes one better than another. Find out more about Single-stage models, Oil-free models, and Low-noise models. This article will explain these types and help you decide which one you need. You can also learn about Air Compressors that have single-stage compressors. If you are looking for a high-quality compressor, this article will help you choose a unit.
Air Compressors
Air compressors work by forcing atmospheric air through an inlet valve. As the piston moves down, it pulls atmospheric air into the chamber. As the piston rises, it forces the compressed air out of the cylinder through an exhaust valve. One of the most common types of air compressor is the reciprocating type. Another type of compressor is a single-stage piston. These types of compressors compress air in one stroke – equivalent to the complete rotation of the piston’s crankshaft.
These devices change electrical or mechanical energy into pressurized air. When air is compressed, its volume decreases, increasing its pressure. Air compressors typically have a minimum pressure of 30 bars. The lower pressure band is the range of air pressure. Most compressors are controlled separately, but network controls can be used to interconnect multiple compressors. This type of controller will not work for all types of compressors. There are other types of air compressors that can communicate with each other.
Compressed air has multiple applications in all kinds of industries. In agriculture, it can power pneumatically powered material handling machines for irrigation and crop spraying. Dairy equipments also use compressed air. Compressors are also used in the pharmaceutical industry for mixing tanks, packaging, and conveyor systems. Portable air compressors, which can be powered by diesel fuel, are frequently used at remote drilling sites. Portable air compressors are also commonly used in oil and gas. They can be used to remotely control valves and install reactor rods.
Whether you use an air compressor for agricultural purposes or in a manufacturing setting, there are some features to consider when choosing an air compressor for your needs. A good compressor will have a safety device. It will automatically shut off the input air and output air once sufficient compressing has been achieved. These features will help your air compressor remain efficient and protect your equipment. The safety device is an important feature of any air compressor to increase its overall efficiency.
Vane air compressors are the most common type. They are generally smaller and less powerful than reciprocating piston compressors, so you can use one of these for applications that are under 100 horsepower. The vane air compressors have low compression ratios and high capacities, but they are generally limited to low-power applications. Vane compressors tend to run hot, and they typically have a low compression ratio. It is important to choose the correct oil viscosity for your compressor.
Single-stage models
When comparing single-stage air compressors, look for the term “stages.” Multi-stage compressors use two stages and can handle more capacity and pressure. One stage involves pressurizing air using a piston and a lower-pressure cylinder. This compressed air is then moved to a storage tank. Single-stage models tend to be more energy-efficient than their two-stage counterparts. But if you don’t need a high-pressure cylinder, a single-stage air compressor can be the best choice.
Although single-stage air compressors produce less power, they can produce enough air to power pneumatic tools and other pneumatic equipment. These single-stage units are most useful for smaller-scale home projects and DIY projects. For more industrial purposes, a dual-stage model is the best choice. But if you’re in a hurry, a single-stage unit may be sufficient. Ultimately, it depends on what you plan to do with the air compressor.
Single-stage air compressors feature a single cylinder, one piston stroke for each revolution of pressurized air. Single-stage compressors are typically smaller and more compact, making them a good choice for smaller work environments. Their cfm capacity (cubic feet per minute) is an important indicator of operating capacity. If you plan to use multiple pneumatic tools, you will probably need a higher cfm model. Similarly, the horsepower of single-stage compressors indicates its working capacity. One horsepower moves 550 pounds per foot per minute.
Multi-stage air compressors are generally more expensive and more energy-efficient than single-stage units, but they can offer higher air flow rates. While they may be more complex, they can lower general operating expenses. If you plan on using your air compressor for industrial or commercial use, a dual-stage model might be the best choice. However, if you’re planning to use the air compressor for mass production, a single-stage model may be the best choice.
Single-stage air compressors have the same piston size and number of inlets, while dual-stage models have a smaller first piston and a much longer second piston. Both have a cooling tube in between the two pistons to reduce the air temperature before the second round of compression. The single-stage model is typically small and portable, while the double-stage air compressor is stationary. These compressors can both be stationary and large.
Low-noise models
Despite its name, low-noise models of air compressors are not all the same. The noise level of a compressor can be affected by several factors, including the power source and proximity to the machine. Reciprocal compressors are generally louder than electric ones because of their many moving parts. By contrast, rotary-screw and scroll compressors have fewer moving parts and are quieter.
The noise level of a gas-powered air compressor can be extremely high, making it unsuitable for use indoors. To combat this problem, you can choose an electric model. The noise level of a compressor is primarily caused by motor friction. The cover of a piston is also a major factor in noise, as pistons with minimal covers will produce a lot of noise. Previously, oil was required for a quiet compressor. However, this has changed thanks to the medical industry’s demand for oil-free models.
The CZPT EC28M Quiet Air Compressor is another model that features quiet operation. This air compressor makes 59dB of noise. This level is low enough to allow you to carry on normal conversations while it cycles. In addition, this compressor has an industrial oil-free pump and a 2.8 Amp direct-drive induction motor. These two features make it a great choice for businesses.
Low-noise models of air compressors are available for the construction industry. However, these compressors are not necessarily low-quality, which is why you should consider the noise level of your air tool before purchasing one. The specialists at CZPT can recommend the low-noise models for your particular application and space. Noise can distract people who work near the air compressor. That is why many businesses now opt for these models.
Oil-free models
A number of oil-free models of air compressors are available, but what makes them special? Oil-free compressors don’t contain oil, so they’re lubricated by grease instead. They’re a good choice if you’re working with a small compressor and don’t want to risk damaging it. On the other hand, oil-free models do generate significant amounts of heat, which can damage the compressor. Higher pressure can grind the compressor against itself, or even warp it.
A few words of knowledge can help you choose the best oil-free air compressor for your needs. For example, a compressor’s horsepower is a measurement of how powerful the motor is. Higher horsepower means a higher PSI or ACFM. You can also use the ACFM to compare the two. Scroll technology is a modern air compression system that uses a stationary and mobile spiral. This reduces the volume of air in the compressor by directing it to the center.
Purchasing an oil-free air compressor doesn’t have to be a daunting task, though. A good distributor can advise you on what type of oil-free air compressor is right for you. This way, you can save money and enjoy peace of mind while using your air compressor. And, of course, the best way to get a great deal on an air compressor is to speak to a distributor who is knowledgeable about the products available.
An oil-free air compressor is a great option for businesses that are sensitive to the contamination of air. For example, in the pharmaceutical and food industry, a minuscule oil could spoil a product or even damage production equipment. Oil-free air compressors generally have lower maintenance costs than oil-flooded models because there are fewer moving parts. Because of this, oilless air compressors require fewer maintenance and may still need to be replaced occasionally.
A few advantages of an oil-free air compressor over an oil-lubricated one include lower noise levels. Oil-free air compressors tend to be less noisy and run more quietly than oil-injected ones, but you should still carefully weigh the pros and cons before making a decision. Also, consider how much you use your air compressor before choosing a model. The pros outweigh the cons. In the end, you’ll be glad you chose an oil-free air compressor.


editor by czh 2023-01-08
China Moair Stationary Type Closed Type Intelligent PLC Control Low Pressure Screw Air Compressor 12v air compressor
Product Description
Moair Stationary Kind Closed Type Intelligent PLC Manage Minimal Force Screw Air Compressor
Merchandise Description
L series long lasting magnet rotary screw air compressor 3-5 bar are specially produced for industries that require minimal air pressure procedure this kind of as textile, cement, glass and meals. With a lower force range from 3 bar to 5 bar, the electrical power variety of L series is from 37kw to 132kw and the air delivery of that is from 8.34mthree/min to 85.82mthree/min.
The primary motor is a minimal strain layout designed by CZPT instead of an regular one. When a reduced pressure compressor is outfitted with a typical major engine, the air will be mainly compressed first and then launched, which will lead to unneeded high vitality usage. However, a professional reduced force major engine will conserve ten%-twenty% power compared with typical compressors.
The industrial rotary screw air compressors are geared up with motors with a defense diploma of IP54 and inovance frequency inverter, which flip out to be powerful, strength-saving, composition-compact and lower sounds.
| Design | Electrical power | Air Flow /discharge strain | air outMLEet |
| (kW) | (mthree/min) / (Mpa) | ||
| MLE37A-3 | 37 | eleven.62/.three | DN80 |
| MLE55A-three | fifty five | seventeen.38/.three | DN80 |
| MLE75A-3 | seventy five | 24.09/.3 | DN100 |
| MLE110A-three | one hundred ten | 35.77/.three | DN125 |
| MLE132A-3 | 132 | 38.30/.35 | DN125 |
| MLE37A-three | 37 | nine.83/.4 | DN80 |
| MLE45A-3 | 45 | ten.eighty four/.4 | DN80 |
| MLE55A-three | fifty five | fifteen.27/.4 | DN80 |
| MLE75A-3 | seventy five | 19.74/.four | DN80 |
| MLE90A-3 | 90 | 23.08/.four | DN80 |
| MLE110A-3 | 110 | 29.69/.4 | DN125 |
| MLE132A-three | 132 | 35.62/.four | DN125 |
| MLE37A-three | 37 | 8.34/.5 | DN80 |
| MLE45A-three | 45 | ten.32/.5 | DN80 |
| MLE55A-3 | 55 | 13.92/.5 | DN80 |
| MLE75A-three | seventy five | 18.11/.5 | DN80 |
| MLE90A-3 | 90 | 21.25/.five | DN80 |
Illustrations of comparison of low pressure compressor’s and typical compressor’s operating problems in the lower stress condition:
When users’ actual need to have for stress is .4MPa, nonetheless, if a .8MPa 1 was employed in this scenario, the compressor will compress the air to .8MPa first and then lessen it to .4MPa by strain-minimizing valve or other approaches. That is to say, the .8MPa vitality intake is taken by consumers.
For case in point, the real air shipping and delivery of 45kw/.4MPa minimal strain compressor of CZPT is ten.eighty four mthreemin and the real work is forty four.8KW and the distinct electricity is 4.13kw/m3. Nevertheless, the particular electricity of typical 45kw/.8MPa compressor is 8.1kw/mthree, according to the 2 stage vitality performance calculation. In this scenario, professional .4MPa reduced pressure compressor can preserve virtually 49% strength compared with widespread kinds.
working spot
*Cement constructing components market (2-3bar)
*Chemical fiber textile market
Firm Profile
FAQ
Q1: What ‘s your factory handle
A2: Our business is found in NO.88 CZPT Road,HangZhou ,ZheJiang ,China
Q2: How extended is our shipping
A2: Our regular delivery time is 30-forty times following affirmation get & receiving recipets for common compressors, for the other non standard prerequisite will be discussed case by case.
Q3: Can you settle for OEM orders?
A3: Indeed, with expert style group, OEM orders are extremely welcome.
|
US $5,000-30,000 / Piece | |
1 Piece (Min. Order) |
###
| Lubrication Style: | Lubricated |
|---|---|
| Cooling System: | Air Cooling |
| Power Source: | AC Power |
| Cylinder Position: | Horizontal |
| Structure Type: | Closed Type |
| Installation Type: | Stationary Type |
###
| Samples: |
US$ 5000/Piece
1 Piece(Min.Order) |
|---|
###
| Customization: |
Available
|
|---|
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| Model | Power | Air Flow /discharge pressure | air outMLEet |
| (kW) | (m3/min) / (Mpa) | ||
| MLE37A-3 | 37 | 11.62/0.3 | DN80 |
| MLE55A-3 | 55 | 17.38/0.3 | DN80 |
| MLE75A-3 | 75 | 24.09/0.3 | DN100 |
| MLE110A-3 | 110 | 35.77/0.3 | DN125 |
| MLE132A-3 | 132 | 38.30/0.35 | DN125 |
| MLE37A-3 | 37 | 9.83/0.4 | DN80 |
| MLE45A-3 | 45 | 10.84/0.4 | DN80 |
| MLE55A-3 | 55 | 15.27/0.4 | DN80 |
| MLE75A-3 | 75 | 19.74/0.4 | DN80 |
| MLE90A-3 | 90 | 23.08/0.4 | DN80 |
| MLE110A-3 | 110 | 29.69/0.4 | DN125 |
| MLE132A-3 | 132 | 35.62/0.4 | DN125 |
| MLE37A-3 | 37 | 8.34/0.5 | DN80 |
| MLE45A-3 | 45 | 10.32/0.5 | DN80 |
| MLE55A-3 | 55 | 13.92/0.5 | DN80 |
| MLE75A-3 | 75 | 18.11/0.5 | DN80 |
| MLE90A-3 | 90 | 21.25/0.5 | DN80 |
|
US $5,000-30,000 / Piece | |
1 Piece (Min. Order) |
###
| Lubrication Style: | Lubricated |
|---|---|
| Cooling System: | Air Cooling |
| Power Source: | AC Power |
| Cylinder Position: | Horizontal |
| Structure Type: | Closed Type |
| Installation Type: | Stationary Type |
###
| Samples: |
US$ 5000/Piece
1 Piece(Min.Order) |
|---|
###
| Customization: |
Available
|
|---|
###
| Model | Power | Air Flow /discharge pressure | air outMLEet |
| (kW) | (m3/min) / (Mpa) | ||
| MLE37A-3 | 37 | 11.62/0.3 | DN80 |
| MLE55A-3 | 55 | 17.38/0.3 | DN80 |
| MLE75A-3 | 75 | 24.09/0.3 | DN100 |
| MLE110A-3 | 110 | 35.77/0.3 | DN125 |
| MLE132A-3 | 132 | 38.30/0.35 | DN125 |
| MLE37A-3 | 37 | 9.83/0.4 | DN80 |
| MLE45A-3 | 45 | 10.84/0.4 | DN80 |
| MLE55A-3 | 55 | 15.27/0.4 | DN80 |
| MLE75A-3 | 75 | 19.74/0.4 | DN80 |
| MLE90A-3 | 90 | 23.08/0.4 | DN80 |
| MLE110A-3 | 110 | 29.69/0.4 | DN125 |
| MLE132A-3 | 132 | 35.62/0.4 | DN125 |
| MLE37A-3 | 37 | 8.34/0.5 | DN80 |
| MLE45A-3 | 45 | 10.32/0.5 | DN80 |
| MLE55A-3 | 55 | 13.92/0.5 | DN80 |
| MLE75A-3 | 75 | 18.11/0.5 | DN80 |
| MLE90A-3 | 90 | 21.25/0.5 | DN80 |
Choose an Air Compressor for Your Business
There are several factors to consider when choosing an air compressor for your business. One factor to consider is the type of compressor you are looking for, which may include single-stage, low noise, and positive displacement. Hope this article helps you make the right decision. After all, your business success will depend on this device! Let’s take a closer look at these factors. Also, consider what compressor manufacturers say about their products.
Positive displacement
Positive displacement air compressors compress air by drawing in a volume from an inlet and extruding it out of a chamber. This increases the pressure at which the gas can be pumped at rates that cannot be pumped through the outlet at lower pressures at higher mass flow rates. These types of compressors are available in single-acting and double-acting configurations. They are classified by the number of cylinders.
There are two different types of air compressors: reciprocating air compressors and screw compressors. Both are roll machines. Positive displacement air compressors use pistons and cylinders to compress air. The resulting air pressure builds up within the compressor housing, increasing the potential energy of the compressed air. Screw air compressors are the most popular positive displacement air compressors, which can be either single-stage screw-blade air compressors or multi-stage screw-blade oil-immersed screw air compressors.
Positive displacement flowmeters use a rotating measuring chamber to divide the fluid into discrete quantities. The number of times the chamber was refilled and emptied was used to estimate the total flow. However, positive displacement flow meters are prone to leaks, reducing the accuracy of the estimates. If a leak occurs, it can cause false readings and damage the compressor. However, leaks in positive displacement air compressors can reduce pressure.
The most common types of positive displacement air compressors are screw, reciprocating, and vane. Rotary positive displacement air compressors are also available as well as many other air compressors. Positive displacement air compressors are most commonly used in large manufacturing facilities. If you are considering an air compressor for commercial or industrial applications, it is imperative to understand how the components of the unit work. Please read the information below to learn more before deciding which application is best for you.
Positive displacement air compressors use a piston to force air into a chamber, compressing the air in the process. The piston moves in the opposite direction, thereby reducing the volume of the chamber. When the amount of air in the chamber reaches its maximum value, the valve opens, allowing it to escape at higher pressure. Positive displacement air compressors are generally less efficient than centrifugal compressors. However, they are still an excellent choice for a variety of applications.
Single-stage
The discharge pressure of the single-stage air compressor is used to control the operation of the compressor. Properly designed load/unload controls allow the air compressor to operate at its most efficient point while minimizing stress on the main engine bearings. Single-stage air compressors can approach variable speed efficiency with appropriate storage capacity. However, improper storage can cause premature bearing wear on the main unit. If this is the case, a single-stage air compressor may not be ideal.
A single-stage air compressor has only one cylinder, which means one stroke is required to move air from one cylinder to another. Pressure is measured in cubic feet per minute or CFM. Tank size is also important as a large single-stage air compressor may be required to operate multiple air tools. Single-stage air compressors can be used in a variety of applications and can last for years.
For the most common uses, single-stage air compressors are the most practical option. These devices work with most hand tools, from hammers to grinders. Single-stage air compressors are lightweight and easy to move. However, two-stage air compressors provide more CFM, making them a better choice for industrial or commercial use. However, two-stage compressors are not suitable for private use. Therefore, if your main purpose is DIY and craft projects, it is better to choose a single-stage air compressor.
Compared with two-stage air compressors, single-stage screw air compressors are cheaper. They come from a variety of manufacturers and range in power from 3 to 600 horsepower. Single-stage air compressors are a cost-effective solution for a variety of air compressor needs. They offer flexibility and multiple control methods, making them an excellent choice for many different applications. Therefore, when choosing an air compressor for your business, choose the one with the most suitable functions.
Single-stage air compressors are the most affordable and easy-to-use air compressors for small to medium jobs. They also have higher compression ratios. The compression ratio is the ratio of absolute discharge pressure to absolute inlet pressure. When calculating the ratio, it takes into account atmospheric pressure and gauge pressure. The compression ratio pushes the surface area of the rotor, which increases the thrust load.
Single-stage air compressors are smaller and easier to transport than two-stage units. Single-stage air compressors have one air intake, and two-stage air compressors have two air intakes. The difference between single-stage and two-stage air compressors largely depends on the number of times the air is compressed. A single-stage air compressor compresses the air once, while a dual-stage air compressor compresses the same amount of air twice.
low noise
Low noise air compressors are ideal for a variety of applications. While no air compressor is completely silent, some models are much quieter than others. For the Hitachi EC28M portable compressor, the noise level is 59 decibels. The compressor features steel rollers that protect the internal components and give it a sleek, modern look. It also has a one-gallon fuel tank and a half-horsepower drive.
Noise from air compressors can be distracting and reduce productivity. It is important to choose low-noise air compressors to keep employees healthy and happy at work. While noise is an unfortunate aspect of working on the shop floor, reducing it can improve productivity. By reducing distracting noise, employees can focus on their work and communicate more effectively. That means higher quality work and happier clients. If you’re looking for a low-noise air compressor, be sure to read the tips below.
Low noise air compressors are an excellent choice for businesses of all sizes. These powerful tools can run multiple tools simultaneously. The two water tanks are made of rust-resistant aluminum and are stackable. This air compressor is heavier and can handle large jobs with ease. It costs more than other air compressors, but it can handle a lot of work efficiently. CZPT Air Tools air compressors come with a one-year warranty and are highly recommended by contractors.
Noiseless air compressors are generally more expensive than comparable products, but they are worth the extra cost. Noiseless compressors are a good option for businesses that need to avoid disturbing nearby people. For example, you might want to consider a low-noise air compressor for a dental office, which cannot tolerate noise. Fortunately, this problem can be solved by relocating the compressor to a location that is more isolated from your workspace.
One brand of low-noise air compressors offers two models. The CZPT Air Tools 2010A features a large cast aluminum can, regulating pressure gauge, and two universal quick-connects. It produces 68 decibels of noise when it works. It has a large 8-gallon fuel tank capacity and has wheels and handles for easy transport. Its powerful engine produces a low noise level of 68 decibels.
Another popular low noise air compressor is the Makita MAC210Q Quiet Series. This model is capable of producing up to 71.5 decibels of sound, which is the amount of air it produces at 90PSI. The MAC210Q features a durable oil-free pump and weighs just 36 pounds with a handle and wheels. These compressors are easy to move and ideal for indoor work.

editor by czh 2023-01-05
China Low Pressure Air Compressor (CW-3.0-10) best air compressor
Solution Description
Our manufacturing facility bottle blow molding device can produce PET containers like the bottles for types of wine, drink, soybean, vinegar, and pesticide form and diameter. It has automobile program with high efficiency. The distant infrared ray warmth pipes are utilised in the machine. It has large strain security with the characteristic of precisely taking away mould. It is simple to preserve. It is the products for creating PET bottles.
Machine Properties:
1. Features Contact Display Personal computer OF ZheJiang ‘S WEILUN, Work Persistently AND SIMPTY.
two. Functions PNEUMATIC Aspects OF GERMAN FESTO AND JAPAN SMC.
three. Specially Designed FOR Energy-Preserving Function, MECHANICAL Device IS COMPACT AND Sound.
four. FEATERES TROUBLW Alert AND DIAGNOSTIC UNITES TO Allow Effortless Upkeep.
five. ENVIRONMENTALLY Pleasant Layout, NONTOXIC CONVEYOR BELT TO Have PREFORMS.
| Design | CW-3./10 |
| Electrical power | 22kw |
| Exhaust potential: | 3. m3/Min |
| Functioning stress | 1.0Mpa |
| TANK | .45m3 |
| Equipment Dimension | 2.10*1.10*1.ninety |
| Device Bodyweight: | 850kg |
|
US $3,800 / Piece | |
1 Piece (Min. Order) |
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| Configuration: | Stationary |
|---|---|
| Power Source: | AC Power |
| Type: | Piston |
| Lubrication Style: | Lubricated |
| Application: | Low Back Pressure Type |
| Power: | 22kw |
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| Customization: |
Available
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| Model | CW-3.0/10 |
| Power | 22kw |
| Exhaust capacity: | 3.0 m3/Min |
| Working pressure | 1.0Mpa |
| TANK | 0.45m3 |
| Machine Size | 2.10*1.10*1.90 |
| Machine Weight: | 850kg |
|
US $3,800 / Piece | |
1 Piece (Min. Order) |
###
| Configuration: | Stationary |
|---|---|
| Power Source: | AC Power |
| Type: | Piston |
| Lubrication Style: | Lubricated |
| Application: | Low Back Pressure Type |
| Power: | 22kw |
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| Customization: |
Available
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|---|
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| Model | CW-3.0/10 |
| Power | 22kw |
| Exhaust capacity: | 3.0 m3/Min |
| Working pressure | 1.0Mpa |
| TANK | 0.45m3 |
| Machine Size | 2.10*1.10*1.90 |
| Machine Weight: | 850kg |
A Buyer’s Guide to Air Compressor Types
There are many types of Air Compressors, and it’s important to understand what each type has to offer. In this article, we’ll discuss single stage air compressors, low-noise compressors, and models with two pistons. But, before you buy an Air Compressor, be sure to read our buyer’s guide to the various types. This way, you’ll have all of the information you need to make the right decision for your business.
Single-stage air compressors
A single-stage air compressor is an excellent choice for most general-purpose purposes. They provide enough power to operate pneumatic tools, and they produce less heat. Single-stage air compressors, however, are not suitable for heavy-duty industrial uses. However, they can be used in various applications, including auto shops, gas stations, and various manufacturing facilities. They are also suitable for borewells and other high-pressure places.
These air compressors are a great choice for home use and are suitable for small-scale businesses, contractors, and small shops. These compressors have continuous duty cycles, cast iron compressor pumps, and a minimum 5,000-hour pump life. They also feature advanced features, including ODP motors, Auto Start & Controls, Receiver tanks, and power cords. They have low maintenance and can save you a great deal of money.
Single-stage air compressors are generally less expensive and lighter than their two-stage counterparts. Single-stage air compressors are also more portable, which is a plus for small projects. While two-stage compressors offer higher CFM, they are more powerful and bulky, making them unsuitable for small or home use. So it is essential to determine what you will use the air compressor for and decide on a model based on your needs.
A single-stage air compressor is made of a piston and a tank. The piston moves rapidly inside the cylinder and exerts pressure on the cylinder. This means that the piston can’t move any faster than the air pressure outside the cylinder. The piston is designed to operate in the same way for each stage. This is a great choice for home shops and one-man automotive shops, as it allows you to control the pressure without sacrificing the pump’s life.
Single-stage air compressors are often cheaper than two-stage versions, but they are not the best choice for every application. If you are only using your air compressor occasionally, you’ll find a one-stage model to be much more reliable than a two-stage model. The main difference between the two types of compressors is in the amount of air that each stage compresses. A two-stage air compressor will have more air storage capacity, but it will still produce more pressure.
Rotary vane compressors
Rotary vane compressors use a centrifugal pump to compress air. The rotor is set eccentrically in the housing, which almost touches the vane. As the rotor turns, the air that enters the pump is trapped between the vanes. This compressed air undergoes compression as the rotor rotates. Vanes are small pieces of carbon fiber or graphite composite. Vanes may be made of different materials depending on the application.
While rotary vane pumps are not commonly used to produce compressed air, they are widely used in automotive and hydraulic applications. Chances are, you have used a rotary vane pump at some point in your life. These pumps are also common in the vacuum and compressed air industries. As a result, many people don’t realize that they’re still around. They feature slots that allow the vanes to slide in and out of the rotor.
A rotary vane compressor has a drum and rotor inside. The rotor is eccentrically positioned and has slots and grooves on its surface. Its inlet and outlet ports are situated off-center, allowing the vanes to be pushed out by centrifugal force. Because the rotor rotates so quickly, air is trapped between the vanes. This air then becomes pressurized by the rotating rotor.
Rotating vane compressors can be easily serviced and repaired. A simple replacement of carbon vanes requires just 15 minutes and common tools. The carbon vanes typically last nine to eighteen months, depending on system operating pressure. Before purchasing a rotary vane compressor, make sure to check whether it has been properly performance-tested and has a warranty. Generally, warranties cover the rotor/stator chambers but do not cover the vanes or air filters. You should also check if the unit is covered by a lightning or water damage warranty.
Rotary vane compressors are an integral part of manufacturing industries. Many pharmaceutical manufacturing facilities depend on rotary vane compressors to control their equipment. Other industries that use rotary vane compressors include the plastics, woodworking, natural gas, and medical & dental fields. Their benefits are numerous and far outweigh any disadvantages of rotary screw compressors. For example, a rotary vane compressor can double the life of a conventional compressor.
Rotary vane compressors with low-noise models
If you are looking for a rotary vane air compressor, you have come to the right place. CZPT’s LV Series rotary vane compressors offer low-noise models, compact size, and robust integration. In addition to their low-noise features, they feature large filter systems to deliver high-quality compressed air. The LV Series models also feature CZPT’s reputation for reliability and quality.
This type of compressor uses centrifugal force to operate and is limited in its top and minimum operating speeds. They are only a third as powerful as screw compressors, and their top speed limits are much lower. Furthermore, the vanes wear out easily at high speeds because there is not enough centrifugal force to seal them against the cylinder’s edges. Even at half their full capacity, they consume as much as 80% of their total energy rating.
Because piston compressors produce a lot of noise, factory owners and shop owners have begun to install noise-dampening cabinets and other solutions. But, rotary vane compressors produce far less noise than a traditional vacuum, and the maintenance costs are also low. Rotary vane compressors are also extremely helpful in several industries. They are used in the automotive and auto finishing industries, as well as in dairy industries and milking machines.
If you have a deep pond, a rotary vane air compressor kit can pump up to 20 feet of water. This is more than enough airflow for two to five diffusers. A 1/4 HP rotary vane kit pumps around 4.2 CFM. It also helps to increase circulation and oxygen levels in the pond. Finally, a 1/4 HP kit offers the necessary power to clean up the bottom of a pond.
The rotary vane and rotary screw are the most popular air compressors today. While they are similar in many ways, they are more versatile and durable than their counterparts. They use fewer angular contact ball bearings and require less frequent maintenance than piston air compressors. Compared to piston air compressors, rotary vane and rotary screw compressors are quieter and are less expensive.
Rotary vane compressors with two pistons
The rotary vane and rotary screw compressors are similar in application, but both have different advantages and disadvantages. This article will compare the benefits of each and highlight the differences between them. While both are commonly used in industrial applications, rotary vane compressors are preferred by many industries. These compressors also have a wide range of uses, ranging from automotive air tool operation to milking machines. These compressors also have the advantage of being quieter than piston-powered ones.
The current common rail position may not be suitable for pressure swirl injectors, but new positions have been tested and show improvements in specific energy values. Moreover, the current position is not required for external oil pumps. However, mass induction and expulsion have to be performed with utmost care. This article focuses on the design and efficiency of rotary vane compressors. You can find more information about this new design in the references mentioned below.
The advantages of this type of compressor are its low cost, compact size, and easy maintenance. Hence, they are preferred in low capacity applications. Moreover, they feature integrated vanes. The rotating vanes close the air gap and compress air towards the outlet. Compared to piston-powered compressors, these units are cheaper and more reliable. Therefore, you should choose one with the lowest price tag. You can also opt for rotary vane compressors that are oil-free.
Sliding vane compressors are another popular variant. They have a single cylinder connected to the compressor and are capable of operating at low speeds. This design also reduces the amount of friction and maintains volumetric efficiency. However, the sliding vane compressors suffer from high frictional losses. If you are looking for a more efficient rotary compressor, this is the best option. While sliding vane compressors have been in the spotlight for over a century, they are still quite young.
These compressors are easy to install and maintain. They are also quieter than piston compressors. They are also cheaper than piston-driven compressors. The energy efficiency and low price make them the perfect choice for any commercial or industrial application. If you’re looking for a small, compact compressor, the rotary vane has been proven to be the best choice for your needs. You should know that it has a long service life.


editor by czh 2022-11-29