Product Description
Factory Wholesale High Quality 7.5kw/11kw/15kw/22kw 8/10/13/16bar Midium Pressure Pm VSD Screw Air Compressor for Industrial Laser Cutting with CE, OEM Provided
Technical Parameters:
| Model | Power (KW) |
V/Hz | pressure (Bar) |
Air flow (m3/min) |
Bsp(inch) | L×W×H(mm) | Kg |
| WZS-10GST | 7.5 | 380/50 | 8.5 | 1.1 | RC3/4 | 1850X800X1800 | 480 |
| 10.5 | 1.0 | ||||||
| 13.5 | 0.8 | ||||||
| 16.5 | 0.4 | ||||||
| WZS-11GS | 11 | 380/50 | 16.5 | 0.84 | RC1 | 1300X860X1030 | 380 |
| WZS-11GST | 11 | 380/50 | 8.5 | 0.7 | RC1 | 1850X800X1800 | 600 |
| 10.5 | 1.4 | ||||||
| 13.5 | 1.2 | ||||||
| 16.5 | 0.84 | ||||||
| WZS-15GS | 15 | 380/50 | 16.5 | 1.4 | RC1 | 1300X860X1030 | 480 |
| WZS-15GST | 15 | 380/50 | 8.5 | 2.4 | RC1 | 1850X800X1850 | 650 |
| 10.5 | 2.1 | ||||||
| 13.5 | 1.8 | ||||||
| 16.5 | 1.4 | ||||||
| WZS-22GS | 22 | 380/50 | 16.5 | 2.2 | RC1 1/4 | 1380X850X1150 | 620 |
| WZS-22GST | 22 | 380/50 | 8.5 | 3.6 | RC1 1/4 | 1850X800X1850 | 680 |
| 10.5 | 3.0 | ||||||
| 13.5 | 2.3 | ||||||
| 16.5 | 2.2 | ||||||
| WZS-30GS | 30 | 380/50 | 16.5 | 2.93 | RC1 1/4 | 1380X850X1150 | 680 |
| WZS-37GS | 37 | 380/50 | 16.5 | 3.63 | RC1 1/2 | 1600X1000X1420 | 850 |
| WZS-45GS | 45 | 380/50 | 16.5 | 4.63 | RC1 1/2 | 1600X1000X1420 | 880 |
| WZS-55GS | 55 | 380/50 | 16.5 | 5.70 | RC2 | 1800X1260X1550 | 1350 |
| WZS-75GS | 75 | 380/50 | 16.5 | 7.81 | RC2 | 2150X1300X1700 | 1650 |
| WZS-90GS | 90 | 380/50 | 16.5 | 9.64 | RC2 | 2150X1300X1700 | 1950 |
| WZS-110GS | 110 | 380/50 | 16.5 | 11.58 | DN65 | 2550X1650X1850 | 2600 |
| WZS-132GS | 132 | 380/50 | 16.5 | 14.62 | DN80 | 2550X1650X1850 | 2880 |
| WZS-160GS | 160 | 380/50 | 16.5 | 17.18 | DN80 | 2950X1800X1850 | 3200 |
COMPANY PROFILE
Wan CHINAMFG Compressor (ZheJiang ) Co.,Ltd located in ZheJiang Xihu (West Lake) Dis. industrial zone, which is a professional manufacturer Factory always
has been committed to the R&D of permanent magnet variable frequency screw air compressors, reached the national standard. Our products in-
clude integrated, split permanent magnet variable frequency screw air compressor series, non-inductive permanent magnet variable-frequency
screw air compressor series, integrated oil motor permanent magnet variable frequency screw air compressor series, low-pressure permanent
magnet variable frequency screw air compressor series, two-stage compression permanent magnet variable frequency screw air compressor
series, refrigerated dryer series, adsorption dryer series, high-efficiency precision filter series , air tank series , etc.
We have more than 1 hundred distributors in China. Products have been exported to Europe, North America, Southeast Asia and the Middle
East for many years, also occupy a large part of the domestic market, and the sales volumn is still growing year by year. For many years, Wan
Beardsley has become a trusted supplier of screw air compressors with rich experience and continuous innovative technology.
WORKSHOP
EXHIBITIONS
PROJECT CASES
100+ DISTRIBUTORS
PACKAGING STYLE
SHIPPING
CERTIFICATES
FAQ
1. OEM/ODM, or customer’ s logo printed is available?
Yes, OEM/ODM, customer’s logo is welcomed.
2. Delivery date?
Usually 5-25 working days after receiving deposit, specific delivery date based on order quantity.
3. What’s your payment terms?
Regularly doing 30% deposit and 70% balance by T/T, Western Union, Paypal, other payment terms also can be discussed based on our cooperation.
4. How to control your quality?
We have professional QC team, control the quality during the mass production and inspect the products before shipping.
5. If we don’ t have shipping forwarder in China , would you do this for us ?
We can offer you best shipping line to ensure you can get the goods timely at best price.
6. I never come to China before , can you be my guide in China ?
Sure , I’m glad to be your guide because our company directly located in ZheJiang , where is the most famous city in China, if you want to come China then we are happy to provide you one-stop service, such as booking ticket, picking up at the airport, booking hotel, accompany visiting factory. It gonna make you an unforgettable memory.
MARKETING NETWORK
/* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| After-sales Service: | Video Technical Support |
|---|---|
| Warranty: | Unit 1 Year, Air End 2 Years |
| Lubrication Style: | Oil-less |
| Cooling System: | Air Cooling |
| Power Source: | AC Power |
| Structure Type: | Closed Type |
| Customization: |
Available
|
|
|---|
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What are the advantages of using an air compressor in construction?
Using an air compressor in construction offers numerous advantages that contribute to increased efficiency, productivity, and versatility. Here are some key benefits of using air compressors in construction:
- Powering Pneumatic Tools: Air compressors are commonly used to power a wide range of pneumatic tools on construction sites. Tools such as jackhammers, nail guns, impact wrenches, drills, and sanders can be operated using compressed air. Pneumatic tools are often preferred due to their lightweight, compact design and ability to deliver high torque or impact force.
- Efficient Operation: Air compressors provide a continuous and reliable source of power for pneumatic tools, allowing for uninterrupted operation without the need for frequent battery changes or recharging. This helps to maintain a smooth workflow and reduces downtime.
- Portability: Many construction air compressors are designed to be portable, featuring wheels or handles for easy maneuverability on job sites. Portable air compressors can be transported to different areas of the construction site as needed, providing power wherever it is required.
- Versatility: Air compressors are versatile tools that can be used for various applications in construction. Apart from powering pneumatic tools, they can also be utilized for tasks such as inflating tires, cleaning debris, operating air-operated pumps, and powering air horns.
- Increased Productivity: The efficient operation and power output of air compressors enable construction workers to complete tasks more quickly and effectively. Pneumatic tools powered by air compressors often offer higher performance and faster operation compared to their electric or manual counterparts.
- Cost Savings: Air compressors can contribute to cost savings in construction projects. Pneumatic tools powered by air compressors are generally more durable and have longer lifespans compared to electric tools. Additionally, since air compressors use compressed air as their power source, they do not require the purchase or disposal of batteries or fuel, reducing ongoing operational expenses.
- Reduced Electrocution Risk: Construction sites can be hazardous environments, with the risk of electrocution from electrical tools or equipment. By utilizing air compressors and pneumatic tools, the reliance on electrical power is minimized, reducing the risk of electrocution accidents.
It is important to select the appropriate air compressor for construction applications based on factors such as required air pressure, volume, portability, and durability. Regular maintenance, including proper lubrication and cleaning, is crucial to ensure the optimal performance and longevity of air compressors in construction settings.
In summary, the advantages of using air compressors in construction include powering pneumatic tools, efficient operation, portability, versatility, increased productivity, cost savings, and reduced electrocution risk, making them valuable assets on construction sites.
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What are the environmental considerations when using air compressors?
When using air compressors, there are several environmental considerations to keep in mind. Here’s an in-depth look at some of the key factors:
Energy Efficiency:
Energy efficiency is a crucial environmental consideration when using air compressors. Compressing air requires a significant amount of energy, and inefficient compressors can consume excessive power, leading to higher energy consumption and increased greenhouse gas emissions. It is important to choose energy-efficient air compressors that incorporate features such as Variable Speed Drive (VSD) technology and efficient motor design, as they can help minimize energy waste and reduce the carbon footprint.
Air Leakage:
Air leakage is a common issue in compressed air systems and can contribute to energy waste and environmental impact. Leaks in the system result in the continuous release of compressed air, requiring the compressor to work harder and consume more energy to maintain the desired pressure. Regular inspection and maintenance of the compressed air system to detect and repair leaks can help reduce air loss and improve overall energy efficiency.
Noise Pollution:
Air compressors can generate significant noise levels during operation, which can contribute to noise pollution. Prolonged exposure to high noise levels can have detrimental effects on human health and well-being and can also impact the surrounding environment and wildlife. It is important to consider noise reduction measures such as sound insulation, proper equipment placement, and using quieter compressor models to mitigate the impact of noise pollution.
Emissions:
While air compressors do not directly emit pollutants, the electricity or fuel used to power them can have an environmental impact. If the electricity is generated from fossil fuels, the associated emissions from power plants contribute to air pollution and greenhouse gas emissions. Choosing energy sources with lower emissions, such as renewable energy, can help reduce the environmental impact of operating air compressors.
Proper Waste Management:
Proper waste management is essential when using air compressors. This includes the appropriate disposal of compressor lubricants, filters, and other maintenance-related materials. It is important to follow local regulations and guidelines for waste disposal to prevent contamination of soil, water, or air and minimize the environmental impact.
Sustainable Practices:
Adopting sustainable practices can further reduce the environmental impact of using air compressors. This can include implementing preventive maintenance programs to optimize performance, reducing idle time, and promoting responsible use of compressed air by avoiding overpressurization and optimizing system design.
By considering these environmental factors and taking appropriate measures, it is possible to minimize the environmental impact associated with the use of air compressors. Choosing energy-efficient models, addressing air leaks, managing waste properly, and adopting sustainable practices can contribute to a more environmentally friendly operation.
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Are there portable air compressors available for home use?
Yes, there are portable air compressors specifically designed for home use. These portable models offer convenience, versatility, and ease of use for various tasks around the house. Here are some key points about portable air compressors for home use:
1. Compact and Lightweight: Portable air compressors are typically compact and lightweight, making them easy to transport and store. They are designed with portability in mind, allowing homeowners to move them around the house or take them to different locations as needed.
2. Electric-Powered: Most portable air compressors for home use are electric-powered. They can be plugged into a standard household electrical outlet, eliminating the need for gasoline or other fuel sources. This makes them suitable for indoor use without concerns about emissions or ventilation.
3. Versatile Applications: Portable air compressors can be used for a wide range of home applications. They are commonly used for inflating tires, sports equipment, and inflatable toys. They are also handy for operating pneumatic tools such as nail guns, staplers, and paint sprayers. Additionally, portable air compressors can be used for cleaning tasks, powering airbrushes, and other light-duty tasks around the house.
4. Pressure and Capacity: Portable air compressors for home use typically have lower pressure and capacity ratings compared to larger industrial or commercial models. They are designed to meet the needs of common household tasks rather than heavy-duty applications. The pressure and capacity of these compressors are usually sufficient for most home users.
5. Oil-Free Operation: Many portable air compressors for home use feature oil-free operation. This means they do not require regular oil changes or maintenance, making them more user-friendly and hassle-free for homeowners.
6. Noise Level: Portable air compressors designed for home use often prioritize low noise levels. They are engineered to operate quietly, reducing noise disturbances in residential environments.
7. Cost: Portable air compressors for home use are generally more affordable compared to larger, industrial-grade compressors. They offer a cost-effective solution for homeowners who require occasional or light-duty compressed air applications.
When considering a portable air compressor for home use, it’s important to assess your specific needs and tasks. Determine the required pressure, capacity, and features that align with your intended applications. Additionally, consider factors such as portability, noise level, and budget to choose a suitable model that meets your requirements.
Overall, portable air compressors provide a practical and accessible compressed air solution for homeowners, allowing them to tackle a variety of tasks efficiently and conveniently within a home setting.


editor by CX 2024-01-31
China Good quality Made in China 2m3/Min 80cfm 15kw 20HP Screw Air Compressor with Air Tank portable air compressor
Product Description
11kw 15kw 10HP 15HP 20HP Energy Saving Silent Electric Rotary Type Screw Air Compressor
Made in China 2m3/Min 80cfm 15kw 20HP Screw Air Compressor with Air Tank
1. Pictures
2. Technical data
| Type | SSD-15A | SSD-20A | SSD-25A | SSD-30A | SSD-50A | SSD-75A | |
| Motor power | Kw/HP | 11/15 | 15/20 | 18.5/25 | 22/30 | 37/50 | 55/75 |
| Air Volume | (m3/m)/MPa | 1.65/0.7 | 2.25/0.7 | 3.22/0.7 | 3.6/0.7 | 6.58/0.7 | 10.8/0.7 |
| 1.53/0.8 | 2.03/0.8 | 3.01/0.8 | 3.56/0.8 | 6.26/0.8 | 10.1/0.8 | ||
| 1.32/1 | 1.82/1 | 2.52/1 | 3.07/1 | 5.8/1 | 8.5/1 | ||
| 1.1/1.2 | 1.55/1.2 | 2.3/1.2 | 2.84/1.2 | 5.06/1.2 | 7.69/1.2 | ||
| Cooling mode | Air cooled | Air cooled | Air cooled | Air cooled | Air cooled | Air cooled | |
| Drive mode | Directly connected | ||||||
| Starting mode | Y-△ | Y-△ | Y-△ | Y-△ | Y-△ | Y-△ | |
| L×W×H (mm) |
L | 950 | 950 | 1150 | 1250 | 1500 | 2045 |
| W | 800 | 800 | 900 | 750 | 970 | 1250 | |
| H | 1140 | 1140 | 1260 | 1110 | 1340 | 1705 | |
| Net weight | Kg | 400 | 440 | 510 | 550 | 770 | 1750 |
| Noise | dB(A) | 63±2 | 63±2 | 63±2 | 63±2 | 63±2 | 65±2 |
| Diameter of outlet pipe | G3/4″ | G3/4″ | G11/4″ | G11/4″ | G11/2″ | G2″ | |
| SSD-100A | SSD-120A | SSD-150A | SSD-175A | SSD-200A | SSD-250A | SSD-300A | SSD-350A |
| 75/100 | 90/120 | 110/150 | 132/175 | 160/200 | 185/250 | 220/300 | 250/350 |
| 13.5/0.7 | 16.2/0.7 | 21.6/0.7 | 25.2/0.7 | 28.7/0.7 | 32.5/0.7 | 36.8/0.7 | 42.7/0.7 |
| 12.7/0.8 | 15.2/0.8 | 20.1/0.8 | 24/0.8 | 27.6/0.8 | 30.8/0.8 | 34.7/0.8 | 40.8/0.8 |
| 11.3/1 | 14.3/1 | 17.5/1 | 21/1 | 25.3/1 | 28.2/1 | 30.8/1 | 38.1/1 |
| 10/1.2 | 12.9/1.2 | 16/1.2 | 18.3/1.2 | 22.4/1.2 | 25.1/1.2 | 28.9/1.2 | 34.9/1.2 |
| Air cooled | Air cooled | Air cooled | Air cooled | Air cooled | Air cooled | Air cooled | Air cooled |
| Directly connected | |||||||
| Y-△ | Y-△ | Y-△ | Y-△ | Y-△ | Y-△ | Y-△ | Y-△ |
| 2045 | 2329 | 2578 | 2578 | 2856 | 2856 | 3092 | 3092 |
| 1250 | 1516 | 1656 | 1656 | 1898 | 1898 | 1944 | 1944 |
| 1705 | 1745 | 1920 | 1920 | 1895 | 1895 | 2143 | 2143 |
| 1820 | 2200 | 2950 | 3550 | 3880 | 4050 | 4700 | 5100 |
| 68±2 | 68±2 | 68±2 | 72±2 | 72±2 | 72±2 | 76±2 | 76±2 |
| G2″ | DN65 | DN65 | DN65 | DN80 | DN80 | DN80 | DN80 |
3. Specifications
| No. | Part Name | Manufacturer or Brand |
| 1 | Air end | Baosi |
| 2 | Pressure sensor | Yishun, HangZhou |
| 3 | Temperature sensor | Yishun, HangZhou |
| 4 | Intake valve | Red star, HangZhou |
| 5 | Starting panel | Schneider |
| 6 | Frequency converter | Zhongchen |
| 7 | PLC Controller (English) | PLOT, HangZhou |
| 8 | Contactor | Schneider |
| 9 | Motor | Xihu (West Lake) Dis.n, Lihao |
| 10 | Air filter | HD |
| 11 | Oil filter | HD |
| 12 | Oil-air separator element | HD |
| 13 | Min. Pressure valve | Red star, HangZhou |
| 14 | Air Cooler | Yaqi |
| 15 | Oil tank | Xihu (West Lake) Dis. vessel |
| 16 | Safety valve | HangZhou |
| 17 | Fan motor | Shiyibai |
4. Features
Less parts, no consumables:
Reliable CHINAMFG running, which is applied to industries as metallurgy, mine, mechanical, construction, food etc
Low noise and low running cost:
Our screw compressors apply imported bearing, rotor is balance tested good by balance machine, there is little vibration and low noise
Low oil consumption:
The oil-moisture separator is key part for screw compressor, CHINAMFG CHINAMFG applies most advanced separator, technical data is controlled reliable, oil consumption is controlled under 3ppm
Intelligent micro computer control technology is realized for fully monitored and instructed by operators, and it can runs with no-man operation due to remote control. The instruction and data is displayed on the screen panel, and it can detects faults automatically and gives an alarm, and adjust air flow automatically
Block:
German style block, 0 vibration, low noise, big rotor, low RPM, direct driven. Rotor is 5: 6 unbalanced line high efficiency…
Cooler:
Cooler is assembled with filtration screen which keeps clean in the cooler
Motor:
High performance motor ensures the CHINAMFG operated in bad environments
Bearing:
Sweden CHINAMFG bearing, anti-friction anti-corrosion
Pipes:
European material high temperature 135celsius and high pressure resistance, no leakage
/* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| After-sales Service: | 24/7 |
|---|---|
| Warranty: | 3 Years |
| Lubrication Style: | Lubricated |
| Cooling System: | Air Cooling |
| Power Source: | AC Power |
| Cylinder Position: | Vertical |
| Customization: |
Available
|
|
|---|
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How does variable speed drive technology improve air compressor efficiency?
Variable Speed Drive (VSD) technology improves air compressor efficiency by allowing the compressor to adjust its motor speed to match the compressed air demand. This technology offers several benefits that contribute to energy savings and enhanced overall system efficiency. Here’s how VSD technology improves air compressor efficiency:
1. Matching Air Demand:
Air compressors equipped with VSD technology can vary the motor speed to precisely match the required compressed air output. Traditional fixed-speed compressors operate at a constant speed regardless of the actual demand, leading to energy wastage during periods of lower air demand. VSD compressors, on the other hand, ramp up or down the motor speed to deliver the necessary amount of compressed air, ensuring optimal energy utilization.
2. Reduced Unloaded Running Time:
Fixed-speed compressors often run unloaded during periods of low demand, where they continue to consume energy without producing compressed air. VSD technology eliminates or significantly reduces this unloaded running time by adjusting the motor speed to closely follow the air demand. As a result, VSD compressors minimize energy wastage during idle periods, leading to improved efficiency.
3. Soft Starting:
Traditional fixed-speed compressors experience high inrush currents during startup, which can strain the electrical system and cause voltage dips. VSD compressors utilize soft starting capabilities, gradually ramping up the motor speed instead of instantly reaching full speed. This soft starting feature reduces mechanical and electrical stress, ensuring a smooth and controlled startup, and minimizing energy spikes.
4. Energy Savings at Partial Load:
In many applications, compressed air demand varies throughout the day or during different production cycles. VSD compressors excel in such scenarios by operating at lower speeds during periods of lower demand. Since power consumption is proportional to motor speed, running the compressor at reduced speeds significantly reduces energy consumption compared to fixed-speed compressors that operate at a constant speed regardless of the demand.
5. Elimination of On/Off Cycling:
Fixed-speed compressors often use on/off cycling to adjust the compressed air output. This cycling can result in frequent starts and stops, which consume more energy and cause mechanical wear. VSD compressors eliminate the need for on/off cycling by continuously adjusting the motor speed to meet the demand. By operating at a consistent speed within the required range, VSD compressors minimize energy losses associated with frequent cycling.
6. Enhanced System Control:
VSD compressors offer advanced control capabilities, allowing for precise monitoring and adjustment of the compressed air system. These systems can integrate with sensors and control algorithms to maintain optimal system pressure, minimize pressure fluctuations, and prevent excessive energy consumption. The ability to fine-tune the compressor’s output based on real-time demand contributes to improved overall system efficiency.
By utilizing variable speed drive technology, air compressors can achieve significant energy savings, reduce operational costs, and enhance their environmental sustainability by minimizing energy wastage and optimizing efficiency.
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How do you troubleshoot common air compressor problems?
Troubleshooting common air compressor problems can help identify and resolve issues that may affect the performance and functionality of the compressor. Here are some steps to troubleshoot common air compressor problems:
1. No Power:
- Check the power source and ensure the compressor is properly plugged in.
- Inspect the circuit breaker or fuse box to ensure it hasn’t tripped or blown.
- Verify that the compressor’s power switch or control panel is turned on.
2. Low Air Pressure:
- Check the air pressure gauge on the compressor. If the pressure is below the desired level, the compressor might not be building up enough pressure.
- Inspect for air leaks in the system. Leaks can cause a drop in pressure. Listen for hissing sounds or use a soapy water solution to identify the location of leaks.
- Ensure the compressor’s intake filter is clean and not clogged, as this can restrict airflow and reduce pressure.
3. Excessive Noise or Vibration:
- Inspect the compressor’s mounting and foundation to ensure it is secure and stable. Loose mounts can cause excessive noise and vibration.
- Check for loose or damaged components, such as belts, pulleys, or motor mounts. Tighten or replace as necessary.
- Verify that the compressor’s cooling system, such as the fan or fins, is clean and free from obstructions. Overheating can lead to increased noise and vibration.
4. Air Leaks:
- Inspect all connections, valves, fittings, and hoses for leaks. Tighten or replace any loose or damaged components.
- Apply a soapy water solution to suspected areas and look for bubbles. Bubbles indicate air leaks.
- Consider using thread sealant or Teflon tape on threaded connections to ensure a proper seal.
5. Excessive Moisture in Compressed Air:
- Check the compressor’s drain valve and ensure it is functioning properly. Open the valve to release any accumulated moisture.
- Inspect and clean the compressor’s moisture separator or air dryer, if equipped.
- Consider installing additional filtration or drying equipment to remove moisture from the compressed air system.
6. Motor Overheating:
- Ensure the compressor’s cooling system is clean and unobstructed.
- Check the motor’s air intake vents and clean any dust or debris that may be blocking airflow.
- Verify that the compressor is not being operated in an excessively hot environment.
- Check the motor’s lubrication levels and ensure they are within the manufacturer’s recommended range.
- Consider using a thermal overload protector to prevent the motor from overheating.
If troubleshooting these common problems does not resolve the issue, it may be necessary to consult the manufacturer’s manual or seek assistance from a qualified technician. Regular maintenance, such as cleaning, lubrication, and inspection, can also help prevent common problems and ensure the optimal performance of the air compressor.
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Can you explain the basics of air compressor terminology?
Understanding the basic terminology related to air compressors can help in better comprehension of their operation and discussions related to them. Here are some essential terms related to air compressors:
1. CFM (Cubic Feet per Minute): CFM is a unit of measurement that denotes the volumetric flow rate of compressed air. It indicates the amount of air a compressor can deliver within a minute and is a crucial factor in determining the compressor’s capacity.
2. PSI (Pounds per Square Inch): PSI is a unit of measurement used to quantify pressure. It represents the force exerted by the compressed air on a specific area. PSI is a vital specification for understanding the pressure capabilities of an air compressor and determining its suitability for various applications.
3. Duty Cycle: Duty cycle refers to the percentage of time an air compressor can operate in a given time period. It indicates the compressor’s ability to handle continuous operation without overheating or experiencing performance issues. For instance, a compressor with a 50% duty cycle can run for half the time in a given hour or cycle.
4. Horsepower (HP): Horsepower is a unit used to measure the power output of a compressor motor. It indicates the motor’s capacity to drive the compressor pump and is often used as a reference for comparing different compressor models.
5. Receiver Tank: The receiver tank, also known as an air tank, is a storage vessel that holds the compressed air delivered by the compressor. It helps in stabilizing pressure fluctuations, allowing for a more consistent supply of compressed air during peak demand periods.
6. Single-Stage vs. Two-Stage: These terms refer to the number of compression stages in a reciprocating air compressor. In a single-stage compressor, air is compressed in a single stroke of the piston, while in a two-stage compressor, it undergoes initial compression in one stage and further compression in a second stage, resulting in higher pressures.
7. Oil-Free vs. Oil-Lubricated: These terms describe the lubrication method used in air compressors. Oil-free compressors have internal components that do not require oil lubrication, making them suitable for applications where oil contamination is a concern. Oil-lubricated compressors use oil for lubrication, enhancing durability and performance but requiring regular oil changes and maintenance.
8. Pressure Switch: A pressure switch is an electrical component that automatically starts and stops the compressor motor based on the pre-set pressure levels. It helps maintain the desired pressure range in the receiver tank and protects the compressor from over-pressurization.
9. Regulator: A regulator is a device used to control and adjust the output pressure of the compressed air. It allows users to set the desired pressure level for specific applications and ensures a consistent and safe supply of compressed air.
These are some of the fundamental terms associated with air compressors. Familiarizing yourself with these terms will aid in understanding and effectively communicating about air compressors and their functionality.


editor by CX 2024-01-22