Product Description
Product Description
M/HBP R134A (110V-120V~60HZ/220V-240V~50HZ) Refrigeration Compressors Special for Home Dehumidifiers
Adopting high-quality components, SIXIHU (WEST LAKE) DIS. refrigeration compressors are always environmental friendly, high efficient, and widely praised by customers in the refrigeration industry due to its low noise, high performance, and long service life.
Features:
1. Low Noise:
– There are 2 welding methods for the compressor casing: flange butt welding or insert welding. The thickness, shape, and internal cavity size of the shell have a significant impact on noise.
– There are 2 fixing methods for the movement: suspension spring type and seat spring type, with the seat spring compressor having less noise and vibration.
2. High Performance:
– Equipped with professional valve components. The valve group is the heart of the compressor and plays a significant role in the performance of the compressor.
3. Long Service Life:
– The crankshaft and connecting rod have good performance and are resistant to friction.
4. High Efficiency & Eco-friendly:
– As the power in a hermetic compressor, an electric motor converts electrical energy into mechanical energy, driving the piston to compress refrigerant vapor, enabling the refrigerant to circulate in the refrigeration system and achieve the purpose of refrigeration
Product Parameters
Compressor Technical Data: M/HBP R134A 110V-120V~60HZ/220V-240V~50HZ
Serial | Model | HP | V/Hz | Displacement (cm3) | Cooling Capacity ASHRAE | Motor type | Starting Device | Starting capacitor (uF) | Running capacitor (uF) | Cooling | Certificate | |||||||||||||||
-15ºC(5F) | -10ºC(10F) | -5ºC(23F) | 0ºC(32F) | Test Conditions: 7.2ºC(45F) | 10ºC(50F) | |||||||||||||||||||||
W | Btu/h | W | Btu/h | W | Btu/h | W | Btu/h | Capacity (W) | Capacity (Btu/h) | lnput Power(W) | Current (A) | COP (W/W) | EER (Btu/Wh) | W | Btu/h | |||||||||||
L | GQR30TC | 1/10 | 220-240V/50-60Hz | 3.0 | 97 | 331 | 125 | 427 | 145 | 495 | 185 | 631 | 245 | 836 | 129 | 0.9 | 1.9 | 6.48 | 275 | 938 | RSIR | PTC/Heavy Hammer PTC/Current Starting Relay | / | / | F | CCC |
GQR35TC | 1/9 | 3.5 | 135 | 461 | 175 | 597 | 195 | 665 | 265 | 904 | 385 | 1314 | 185 | 1.1 | 2.1 | 7.17 | 420 | 1433 | RSIR | / | / | F | CCC | |||
GQR45TC | 1/6 | 4.5 | 176 | 601 | 230 | 785 | 280 | 955 | 350 | 1194 | 450 | 1535 | 204 | 1.2 | 2.2 | 7.51 | 485 | 1655 | RSIR | / | / | F | CCC | |||
ML | GQR55TC | 1/6+ | 5.5 | 245 | 836 | 310 | 1058 | 390 | 1331 | 525 | 1791 | 575 | 1962 | 273 | 1.5 | 2.1 | 7.19 | 615 | 2098 | RSIR | / | / | F | CCC | ||
GQR60TC | 1/4 | 6.5 | 335 | 1143 | 435 | 1484 | 545 | 1860 | 665 | 2269 | 705 | 2405 | 306 | 1.9 | 2.3 | 7.86 | 745 | 2542 | RSIR | / | / | F | CCC | |||
GQR70TC | 1/4 | 7.0 | 370 | 1262 | 480 | 1638 | 595 | 2030 | 720 | 2457 | 765 | 2610 | 364 | 2.1 | 2.1 | 7.17 | 805 | 2747 | RSIR | / | / | F | CCC | |||
MQ | GQR80TC | 1/4+ | 8.0 | 420 | 1433 | 550 | 1877 | 680 | 2320 | 810 | 2764 | 855 | 2917 | 388 | 2.2 | 2.2 | 7.52 | 895 | 3054 | CSIR | Heavy Hammer Current Starting Relay | 80 | / | F | CCC | |
GQR90TC | 1/3- | 9.0 | 474 | 1617 | 621 | 2119 | 768 | 2620 | 910 | 3105 | 955 | 3258 | 434 | 2.3 | 2.2 | 7.51 | 995 | 3395 | CSIR | 80 | / | F | CCC | |||
GQR11TC | 3/8 | 11.0 | 536 | 1829 | 702 | 2395 | 868 | 2962 | 1034 | 3528 | 1079 | 3682 | 469 | 2.9 | 2.3 | 7.85 | 1119 | 3818 | CSIR | 80 | / | F | CCC | |||
MD | GQR12TC | 3/8+ | 12.0 | 606 | 2068 | 793 | 2706 | 981 | 3347 | 1168 | 3985 | 1208 | 4122 | 549 | 3.4 | 2.2 | 7.51 | 1248 | 4258 | CSIR | 80 | / | F | CCC | ||
GQR14TC | 1/2 | 14.0 | 685 | 2337 | 896 | 3057 | 1108 | 3780 | 1320 | 4504 | 1365 | 4657 | 593 | 3.6 | 2.3 | 7.85 | 1305 | 4453 | CSIR | 80 | / | F | CCC | |||
GQR16TC | 1/2+ | 16.0 | 754 | 2573 | 1012 | 3453 | 1252 | 4272 | 1492 | 5091 | 1535 | 5237 | 667 | 4.0 | 2.3 | 7.85 | 1575 | 5374 | CSIR | 80 | / | F | CCC |
Serial | Model | HP | V/Hz | Displacement (cm3) | Cooling Capacity ASHRAE | Motor type | Starting Device | Starting capacitor (uF) | Running capacitor (uF) | Cooling | Certificate | |||||||||||||||
-15ºC(5F) | -10ºC(10F) | -5ºC(23F) | 0ºC(32F) | Test Conditions: 7.2ºC(45F) | 10ºC(50F) | |||||||||||||||||||||
W | Btu/h | W | Btu/h | W | Btu/h | W | Btu/h | Capacity (W) | Capacity (Btu/h) | lnput Power(W) | Current (A) | COP (W/W) | EER (Btu/Wh) | W | Btu/h | |||||||||||
L | GQR30TCD | 1/10 | 110-120V/60Hz | 3.0 | 118 | 403 | 150 | 512 | 174 | 594 | 225 | 768 | 295 | 1007 | 134 | 1.8 | 2.2 | 7.51 | 340 | 1160 | RSIR | PTC/Heavy Hammer PTC/Current Starting Relay | / | / | F | CCC |
GQR35TCD | 1/9 | 3.5 | 162 | 553 | 210 | 717 | 234 | 798 | 320 | 1092 | 465 | 1587 | 211 | 2.0 | 2.2 | 7.52 | 504 | 1720 | RSIR | / | / | F | CCC | |||
ML | GQR45TCD | 1/6 | 4.5 | 210 | 717 | 275 | 938 | 340 | 1160 | 420 | 1433 | 540 | 1842 | 245 | 2.1 | 2.2 | 7.52 | 580 | 1979 | RSIR | / | / | F | CCC | ||
GQR55TCD | 1/6+ | 5.5 | 310 | 1058 | 390 | 1331 | 480 | 1638 | 610 | 2081 | 665 | 2269 | 316 | 2.9 | 2.1 | 7.18 | 720 | 2457 | RSIR | / | / | F | CCC | |||
GQR60TCD | 1/4 | 6.5 | 378 | 1290 | 510 | 1740 | 650 | 2218 | 731 | 2494 | 786 | 2682 | 341 | 3.5 | 2.3 | 7.86 | 841 | 2869 | RSIR | / | / | F | CCC | |||
GQR70TCD | 1/4 | 7.0 | 430 | 1467 | 545 | 1860 | 750 | 2559 | 806 | 2750 | 862 | 2941 | 410 | 3.8 | 2.1 | 7.17 | 917 | 3129 | RSIR | / | / | F | CCC | |||
MQ | GQR80TCD | 1/4+ | 8.0 | 470 | 1604 | 625 | 2133 | 820 | 2798 | 907 | 3095 | 964 | 3289 | 438 | 4.2 | 2.2 | 7.51 | 1019 | 3477 | CSIR | Heavy Hammer Current Starting Relay | 93-169 | / | F | CCC | |
GQR90TCD | 1/3- | 9.1 | 530 | 1808 | 695 | 2371 | 890 | 3037 | 1019 | 3477 | 1074 | 3664 | 488 | 3.8 | 2.2 | 7.51 | 1129 | 3852 | CSIR | 93-169 | / | F | CCC | |||
GQR11TCD | 3/8 | 11.0 | 600 | 2047 | 772 | 2634 | 954 | 3255 | 1100 | 3753 | 1155 | 3941 | 502 | 5.2 | 2.3 | 7.85 | 1210 | 4129 | CSIR | 93-169 | / | F | CCC | |||
MD | GQR12TCD | 3/8+ | 12.8 | 678 | 2313 | 872 | 2975 | 1034 | 3528 | 1270 | 4333 | 1325 | 4521 | 602 | 5.5 | 2.2 | 7.51 | 1380 | 4709 | CSIR | 93-169 | / | F | CCC | ||
GQR14TCD | 1/2 | 14.2 | 758 | 2586 | 985 | 3361 | 1218 | 4156 | 1402 | 4784 | 1457 | 4971 | 633 | 5.8 | 2.3 | 7.85 | 1512 | 5159 | CSIR | 93-169 | / | F | CCC | |||
GQR16TCD | 1/2+ | 15.3 | 829 | 2829 | 1113 | 3798 | 1375 | 4692 | 1641 | 5599 | 1696 | 5787 | 737 | 6.0 | 2.3 | 7.85 | 1751 | 5974 | CSIR | 93-169 | / | F | CCC |
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Company Profile
Certifications
With abundant technique force,we have our own researching, developing, manufacturing, inspecting and testingcenters, and imported the international advanced high-tech equipments. Our company has passed the ISO9001,ISO14001,OHS18001 international management system certificates. The products have got UL,ETL,CE,CB,and CCC certificates. Our products are not only selling strongly in more than 30 provincesand municipality,but also largely exporting to Europe,America,Australia,Middle East, Africa and South Asia. We have won an excellent reputation from the customers and friends by our product quality, price versus performance ratio and service.
FAQ
Q1: Are you a manufacturer or trader?
A1: ZHangZhoug Maidi Refrigeration Technology Co., Ltd. is a Hi-tech enterprise. We own the standard plant and office building which covering 21, 000 square meters. With abundant technique force, we have our own researching, developing, manufacturing, inspecting and testing centers, and imported the international advanced equipments.
Q2: How to match sikelan compressor to refrigeration?
A2: We have a professional team of engineers who provide technical support and online guidance on product installation and replacement.
Q3: How do you ensure quality?
A3: We have a dedicated product research and testing center with authoritative quality management system certification: ISO9001/ISO14001/OHS18001.
Q4:What’s CHINAMFG compressor usage scenario?
Q4:Our product could use in mobile applications e.g. cooling boxes,vans,boats, etc,water dispensers, minibar, refrigerators,freezer, ice maker, beers coolers, merchandisers, dehumidifier, refrigerated islands and kitchen freezers.
Q5: How much does a refrigeration part cost?
A5: Factory price for you, not cheapest but the competitive price with good quality.
Q6:What’s voltage CHINAMFG compressor available?
Q6:We have 220-240v and 110-120v for 50hz-60hz in AC compressor. And we have 12/24v/48v in DC Compressors. Depend on customer requirements.
Q7:What certifications do CHINAMFG have?
A7:We have UL, CCC, CE, CB, ETL, TUV, RoHS certifications in compressor.
Q8:What’s our CHINAMFG competitive advantages?
A8:a)More compressor model—–We have DC compressor, AC compressor and frequency conversion series compressor.
b)Lower noisy about compressor
c)Stable quality—–Coming from good material and technology.
d)Good service —–Satisfaction service before and after sale.
After-sales Service: | Technical Support |
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Warranty: | 1 Year |
Lubrication Style: | Lubricated |
Samples: |
US$ 34/Piece
1 Piece(Min.Order) | Order Sample |
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Customization: |
Available
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Shipping Cost:
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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What is the role of air compressors in power generation?
Air compressors play a significant role in power generation, supporting various operations and equipment within the industry. Here are some key roles of air compressors in power generation:
1. Combustion Air Supply:
Air compressors are used to supply compressed air for the combustion process in power generation. In fossil fuel power plants, such as coal-fired or natural gas power plants, compressed air is required to deliver a steady flow of air to the burners. The compressed air helps in the efficient combustion of fuel, enhancing the overall performance and energy output of the power plant.
2. Instrumentation and Control:
Air compressors are utilized for instrumentation and control systems in power generation facilities. Compressed air is used to operate pneumatic control valves, actuators, and other pneumatic devices that regulate the flow of steam, water, and gases within the power plant. The reliable and precise control provided by compressed air ensures efficient and safe operation of various processes and equipment.
3. Cooling and Ventilation:
In power generation, air compressors are involved in cooling and ventilation applications. Compressed air is used to drive air-operated cooling fans and blowers, providing adequate airflow for cooling critical components such as generators, transformers, and power electronics. The compressed air also assists in maintaining proper ventilation in control rooms, substations, and other enclosed spaces, helping to dissipate heat and ensure a comfortable working environment.
4. Cleaning and Maintenance:
Air compressors are employed for cleaning and maintenance tasks in power generation facilities. Compressed air is utilized to blow away dust, dirt, and debris from equipment, machinery, and electrical panels. It helps in maintaining the cleanliness and optimal performance of various components, reducing the risk of equipment failure and improving overall reliability.
5. Pneumatic Tools and Equipment:
In power generation plants, air compressors provide the necessary compressed air for operating pneumatic tools and equipment. These tools include impact wrenches, pneumatic drills, grinders, and sandblasting equipment, which are utilized for installation, maintenance, and repair tasks. The high-pressure air generated by compressors enables efficient and reliable operation of these tools, enhancing productivity and reducing manual effort.
6. Nitrogen Generation:
Sometimes, air compressors are used in power generation for nitrogen generation. Compressed air is passed through a nitrogen generator system, which separates nitrogen from other components of air, producing a high-purity nitrogen gas stream. Nitrogen is commonly used in power plant applications, such as purging systems, blanketing in transformers, and generator cooling, due to its inert properties and low moisture content.
7. Start-up and Emergency Systems:
Air compressors are an integral part of start-up and emergency systems in power generation. Compressed air is utilized to power pneumatic starters for gas turbines, providing the initial rotation needed to start the turbine. In emergency situations, compressed air is also used to actuate emergency shutdown valves, safety systems, and fire suppression equipment, ensuring the safe operation and protection of the power plant.
Overall, air compressors contribute to the efficient and reliable operation of power generation facilities, supporting combustion processes, control systems, cooling, cleaning, and various other applications critical to the power generation industry.
What is the energy efficiency of modern air compressors?
The energy efficiency of modern air compressors has significantly improved due to advancements in technology and design. Here’s an in-depth look at the energy efficiency features and factors that contribute to the efficiency of modern air compressors:
Variable Speed Drive (VSD) Technology:
Many modern air compressors utilize Variable Speed Drive (VSD) technology, also known as Variable Frequency Drive (VFD). This technology allows the compressor motor to adjust its speed according to the compressed air demand. By matching the motor speed to the required airflow, VSD compressors can avoid excessive energy consumption during periods of low demand, resulting in significant energy savings compared to fixed-speed compressors.
Air Leakage Reduction:
Air leakage is a common issue in compressed air systems and can lead to substantial energy waste. Modern air compressors often feature improved sealing and advanced control systems to minimize air leaks. By reducing air leakage, the compressor can maintain optimal pressure levels more efficiently, resulting in energy savings.
Efficient Motor Design:
The motor of an air compressor plays a crucial role in its energy efficiency. Modern compressors incorporate high-efficiency electric motors that meet or exceed established energy efficiency standards. These motors are designed to minimize energy losses and operate more efficiently, reducing overall power consumption.
Optimized Control Systems:
Advanced control systems are integrated into modern air compressors to optimize their performance and energy consumption. These control systems monitor various parameters, such as air pressure, temperature, and airflow, and adjust compressor operation accordingly. By precisely controlling the compressor’s output to match the demand, these systems ensure efficient and energy-saving operation.
Air Storage and Distribution:
Efficient air storage and distribution systems are essential for minimizing energy losses in compressed air systems. Modern air compressors often include properly sized and insulated air storage tanks and well-designed piping systems that reduce pressure drops and minimize heat transfer. These measures help to maintain a consistent and efficient supply of compressed air throughout the system, reducing energy waste.
Energy Management and Monitoring:
Some modern air compressors feature energy management and monitoring systems that provide real-time data on energy consumption and performance. These systems allow operators to identify energy inefficiencies, optimize compressor settings, and implement energy-saving practices.
It’s important to note that the energy efficiency of an air compressor also depends on factors such as the specific model, size, and application. Manufacturers often provide energy efficiency ratings or specifications for their compressors, which can help in comparing different models and selecting the most efficient option for a particular application.
Overall, modern air compressors incorporate various energy-saving technologies and design elements to enhance their efficiency. Investing in an energy-efficient air compressor not only reduces operational costs but also contributes to sustainability efforts by minimizing energy consumption and reducing carbon emissions.
How is air pressure measured in air compressors?
Air pressure in air compressors is typically measured using one of two common units: pounds per square inch (PSI) or bar. Here’s a brief explanation of how air pressure is measured in air compressors:
1. Pounds per Square Inch (PSI): PSI is the most widely used unit of pressure measurement in air compressors, especially in North America. It represents the force exerted by one pound of force over an area of one square inch. Air pressure gauges on air compressors often display pressure readings in PSI, allowing users to monitor and adjust the pressure accordingly.
2. Bar: Bar is another unit of pressure commonly used in air compressors, particularly in Europe and many other parts of the world. It is a metric unit of pressure equal to 100,000 pascals (Pa). Air compressors may have pressure gauges that display readings in bar, providing an alternative measurement option for users in those regions.
To measure air pressure in an air compressor, a pressure gauge is typically installed on the compressor’s outlet or receiver tank. The gauge is designed to measure the force exerted by the compressed air and display the reading in the specified unit, such as PSI or bar.
It’s important to note that the air pressure indicated on the gauge represents the pressure at a specific point in the air compressor system, typically at the outlet or tank. The actual pressure experienced at the point of use may vary due to factors such as pressure drop in the air lines or restrictions caused by fittings and tools.
When using an air compressor, it is essential to set the pressure to the appropriate level required for the specific application. Different tools and equipment have different pressure requirements, and exceeding the recommended pressure can lead to damage or unsafe operation. Most air compressors allow users to adjust the pressure output using a pressure regulator or similar control mechanism.
Regular monitoring of the air pressure in an air compressor is crucial to ensure optimal performance, efficiency, and safe operation. By understanding the units of measurement and using pressure gauges appropriately, users can maintain the desired air pressure levels in their air compressor systems.
editor by CX 2023-10-16
China supplier Economical Water Cooling High Pressure Air Compressor Manufacturer portable air compressor
Product Description
High Pressure Electric/Diesel Air Booster/Air Compressor
Introductions:
Our products have complete varieties and specifications. From the compressor type, it is divided into mobile type, fixed type, vehicle-mounted type, skid-mounted type and so on. Compressed media include air, natural gas, liquefied petroleum gas, hydrogen, recycled gas, nitrogen, ammonia, propylene, biogas, coalbed methane, carbon dioxide, etc. From the cylinder lubrication method, it is divided into oil lubrication and oil-free lubrication. From the compression type, it is divided into reciprocating piston type and screw type. Products are widely used in metallurgical machinery manufacturing, urban construction, steel, national defense, coal, mining, geology, natural gas, petroleum, petrochemical, chemical, electric power, textile, biology, medicine, glass and other industries.
Main features:
1. The compressor is manufactured by air-cooling and water-cooling technology, with high reliability and long service life.
2. The compressor unit has a high degree of automation. The unit operation is controlled by a programmable controller PLC and is equipped with multiple protections.
3. Automatic shutdown protection, unloading restart, automatic drainage, and alarm for insufficient oil.
Flow rate | ≤50 Nm³/min |
Pressure | ≤40 MPa |
Medium | air, nitrogen, carbon dioxide, natural gas |
Control | PLC automatic control |
Drive mode | electric motor, diesel engine |
Cooling method | air cooling, water cooling, mixed cooling |
Installation method | mobile type, fixed type, vehicle-mounted type, skid-mounted type |
Main Technical Parameters:
NO. | Model | Rotating Speed (r/min) |
Intake Pressure (Mpa) |
Exhaust Pressure (Mpa) |
Exhaust Volume (Nm³/min) |
Dimension (L*W*H)mm | Drive Power/Shaft Power(KW) | Weight (T) | Remark |
1 | SF-10/150 | 1330 | Atmospheric Pressure | 15 | 10 | 5500*2000*2300 | 227/139 | 6 | Stationary Diesel Engine |
2 | SF-10/150 | 1330 | 15 | 10 | 7500*2300*2300 | 227/139 | 8 | Container Skid Mounted Diesel Engine | |
3 | SF-10/250 | 1330 | 25 | 10 | 5500*2000*2300 | 227/173 | 6 | Stationary Diesel Engine | |
4 | SF-10/250 | 1330 | 25 | 10 | 7500*2300*2300 | 227/173 | 8 | Container Skid Mounted Diesel Engine | |
5 | SF-10/250 | 1330 | 25 | 10 | 15710*2496*3900 | 227/173 | 21.98 | Vehicular | |
6 | WF-10/60 | 1000 | 6 | 10 | 6000*2200*2200 | 135/110 | 6 | Container Skid Mounted Diesel Engine | |
7 | W-10/350 | 980 | 35 | 10 | 15710*2496*3900 | 303/187 | 21.98 | Vehicular | |
8 | WF-0.9/3-120 | 980 | 0.3 | 12 | 0.9 | 5100*2000*2350 | 75/50 | 5.4 | Container Skid Mounted Diesel Engine |
9 | SF-1.2/24-150 | 1200 | 2.4 | 15 | 1.2 | 7500*2300*2415 | 303/195 | 8.6 | Container Skid Mounted Diesel Engine |
10 | W-0.86/17-350 | 1000 | 1.7 | 35 | 0.86 | 8500*2500*2300 | 277/151 | 12 | Container Skid Mounted Diesel Engine |
11 | W-1.25/11-350 | 980 | 1.1 | 35 | 1.25 | 8000*2500*2500 | 185/145.35 | 15 | Container Skidding Motor |
12 | LG.V-25/150 | Screw 2279 Piston 800 | Atmospheric Pressure | 15 | 25 | 7000*2420*2300 | 355 | 16 | Container Skidding Motor |
Model | Flow | Pressure | Stages | Cooling Type | Rotating Speed | Power |
m³/min | Mpa | r/min | ||||
SVF-15/100 | 15 | 10 | 1+2 | Air Cooling | 1150 | Diesel series |
SVF-18/100 | 18 | 10 | 1+2 | 1150 | ||
SVF-20/120 | 20 | 12 | 1+2 | 1150 | ||
LGW-15/100 | 15 | 10 | 1+2 | 1150 | ||
LGW-15/150 | 15 | 15 | 1+3 | 1150 | ||
LGW-15/200 | 15 | 20 | 1+3 | 1150 | ||
LGW-20/100 | 20 | 10 | 1+2 | 1150 | ||
LGW-20/150 | 20 | 15 | 1+2 | 1150 | ||
LGS-24/150 | 24 | 15 | 1+2 | 1150 | ||
LGS-30/150 | 30 | 15 | 1+2 | 1150 | ||
LGW-25/150 | 25 | 15 | 1+2 | Water cooling | 980 | Electric tandem |
LGV-25/250 | 25 | 25 | 1+3 | 740 | Diesel series | |
LGW-12/275 | 12 | 27.5 | 1+3 | 980 | Electric tandem | |
LGV-15/85 | 15 | 8.5 | 1+2 | 980 | ||
LGV-15/250 | 15 | 25 | 1+3 | Air Cooling | 740 | |
LGV-15/350 | 15 | 35 | 1+4 | Water cooling | 740 | |
LGV-15/400 | 15 | 40 | 1+4 | 740 | ||
LGV-12.5/400 | 12.5 | 40 | 1+4 | 740 | ||
LGV-15/100 | 15 | 10 | 1+2 | 740 |
Application Industry:
1. Suitable for oilfield pressure test, line sweeping, gas lift, well drilling and other projects.
2. Used in air tightness testing, air tightness inspection, pressure test, strength inspection, air tightness verification and other fields of various high-pressure vessels or pressure vessels such as gas cylinders, steel cylinders, valves, pipelines, pressure meters, high-pressure boilers, etc. .
3. On-board pressure testing, pressurization, pipeline pressure testing, line sweeping, gas lift and other projects in oil exploration.
4. Sand blasting and rust removal, parts dust removal, high pressure phosphorus removal, anti-corrosion engineering, well drilling operations, mountain quarrying.
5. For hydropower station turbine control and high-voltage power grid air short-circuit device for arc extinguishing.
6. Provide air source for large and medium-sized bottle blowing machines.
Principle: | Reciprocating Compressor |
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Configuration: | Portable |
Control: | PLC Automatic Control |
Pressure: | 0.1MPa-40MPa |
Installation Method: | Trailer-Mounted Mobile, Container Skid-Mounted, Fi |
Cooling Method: | Air Cooling, Water Cooling, Mixed Cooling |
Are there special considerations for air compressor installations in remote areas?
Yes, there are several special considerations to take into account when installing air compressors in remote areas. These areas often lack access to infrastructure and services readily available in urban or well-developed regions. Here are some key considerations:
1. Power Source:
Remote areas may have limited or unreliable access to electricity. It is crucial to assess the availability and reliability of the power source for operating the air compressor. In some cases, alternative power sources such as diesel generators or solar panels may need to be considered to ensure a consistent and uninterrupted power supply.
2. Environmental Conditions:
Remote areas can present harsh environmental conditions that can impact the performance and durability of air compressors. Extreme temperatures, high humidity, dust, and corrosive environments may require the selection of air compressors specifically designed to withstand these conditions. Adequate protection, insulation, and ventilation must be considered to prevent damage and ensure optimal operation.
3. Accessibility and Transport:
Transporting air compressors to remote areas may pose logistical challenges. The size, weight, and portability of the equipment should be evaluated to ensure it can be transported efficiently to the installation site. Additionally, the availability of suitable transportation infrastructure, such as roads or air transportation, needs to be considered to facilitate the delivery and installation process.
4. Maintenance and Service:
In remote areas, access to maintenance and service providers may be limited. It is important to consider the availability of trained technicians and spare parts for the specific air compressor model. Adequate planning for routine maintenance, repairs, and troubleshooting should be in place to minimize downtime and ensure the longevity of the equipment.
5. Fuel and Lubricants:
For air compressors that require fuel or lubricants, ensuring a consistent and reliable supply can be challenging in remote areas. It is necessary to assess the availability and accessibility of fuel or lubricant sources and plan for their storage and replenishment. In some cases, alternative or renewable fuel options may need to be considered.
6. Noise and Environmental Impact:
Remote areas are often characterized by their natural beauty and tranquility. Minimizing noise levels and environmental impact should be a consideration when installing air compressors. Selecting models with low noise emissions and implementing appropriate noise reduction measures can help mitigate disturbances to the surrounding environment and wildlife.
7. Communication and Remote Monitoring:
Given the remote location, establishing reliable communication channels and remote monitoring capabilities can be essential for effective operation and maintenance. Remote monitoring systems can provide real-time data on the performance and status of the air compressor, enabling proactive maintenance and troubleshooting.
By addressing these special considerations, air compressor installations in remote areas can be optimized for reliable operation, efficiency, and longevity.
How do you maintain proper air quality in compressed air systems?
Maintaining proper air quality in compressed air systems is essential to ensure the reliability and performance of pneumatic equipment and the safety of downstream processes. Here are some key steps to maintain air quality:
1. Air Filtration:
Install appropriate air filters in the compressed air system to remove contaminants such as dust, dirt, oil, and water. Filters are typically placed at various points in the system, including the compressor intake, aftercoolers, and before point-of-use applications. Regularly inspect and replace filters to ensure their effectiveness.
2. Moisture Control:
Excessive moisture in compressed air can cause corrosion, equipment malfunction, and compromised product quality. Use moisture separators or dryers to remove moisture from the compressed air. Refrigerated dryers, desiccant dryers, or membrane dryers are commonly employed to achieve the desired level of dryness.
3. Oil Removal:
If the compressed air system utilizes oil-lubricated compressors, it is essential to incorporate proper oil removal mechanisms. This can include coalescing filters or adsorption filters to remove oil aerosols and vapors from the air. Oil-free compressors eliminate the need for oil removal.
4. Regular Maintenance:
Perform routine maintenance on the compressed air system, including inspections, cleaning, and servicing of equipment. This helps identify and address any potential issues that may affect air quality, such as leaks, clogged filters, or malfunctioning dryers.
5. Air Receiver Tank Maintenance:
Regularly drain and clean the air receiver tank to remove accumulated contaminants, including water and debris. Proper maintenance of the tank helps prevent contamination from being introduced into the compressed air system.
6. Air Quality Testing:
Periodically test the quality of the compressed air using appropriate instruments and methods. This can include measuring particle concentration, oil content, dew point, and microbial contamination. Air quality testing provides valuable information about the effectiveness of the filtration and drying processes and helps ensure compliance with industry standards.
7. Education and Training:
Educate personnel working with compressed air systems about the importance of air quality and the proper procedures for maintaining it. Provide training on the use and maintenance of filtration and drying equipment, as well as awareness of potential contaminants and their impact on downstream processes.
8. Documentation and Record-Keeping:
Maintain accurate records of maintenance activities, including filter replacements, drying system performance, and air quality test results. Documentation helps track the system’s performance over time and provides a reference for troubleshooting or compliance purposes.
By implementing these practices, compressed air systems can maintain proper air quality, minimize equipment damage, and ensure the integrity of processes that rely on compressed air.
What are the safety considerations when operating an air compressor?
Operating an air compressor requires careful attention to safety to prevent accidents, injuries, and equipment damage. Here are some important safety considerations to keep in mind:
1. Read the Manual: Before operating an air compressor, thoroughly read and understand the manufacturer’s instruction manual. Familiarize yourself with the specific safety guidelines, recommended operating procedures, and any specific precautions or warnings provided by the manufacturer.
2. Proper Ventilation: Ensure that the area where the air compressor is operated has adequate ventilation. Compressed air can produce high levels of heat and exhaust gases. Good ventilation helps dissipate heat, prevent the buildup of fumes, and maintain a safe working environment.
3. Personal Protective Equipment (PPE): Always wear appropriate personal protective equipment, including safety glasses or goggles, hearing protection, and non-slip footwear. Depending on the task, additional PPE such as gloves, a dust mask, or a face shield may be necessary to protect against specific hazards.
4. Pressure Relief: Air compressors should be equipped with pressure relief valves or devices to prevent overpressurization. Ensure that these safety features are in place and functioning correctly. Regularly inspect and test the pressure relief mechanism to ensure its effectiveness.
5. Secure Connections: Use proper fittings, hoses, and couplings to ensure secure connections between the air compressor, air tools, and accessories. Inspect all connections before operation to avoid leaks or sudden hose disconnections, which can cause injuries or damage.
6. Inspect and Maintain: Regularly inspect the air compressor for any signs of damage, wear, or leaks. Ensure that all components, including hoses, fittings, and safety devices, are in good working condition. Follow the manufacturer’s recommended maintenance schedule to keep the compressor in optimal shape.
7. Electrical Safety: If the air compressor is electric-powered, take appropriate electrical safety precautions. Use grounded outlets and avoid using extension cords unless approved for the compressor’s power requirements. Protect electrical connections from moisture and avoid operating the compressor in wet or damp environments.
8. Safe Start-Up and Shut-Down: Properly start and shut down the air compressor following the manufacturer’s instructions. Ensure that all air valves are closed before starting the compressor and release all pressure before performing maintenance or repairs.
9. Training and Competence: Ensure that operators are adequately trained and competent in using the air compressor and associated tools. Provide training on safe operating procedures, hazard identification, and emergency response protocols.
10. Emergency Preparedness: Have a clear understanding of emergency procedures and how to respond to potential accidents or malfunctions. Know the location of emergency shut-off valves, fire extinguishers, and first aid kits.
By adhering to these safety considerations and implementing proper safety practices, the risk of accidents and injuries associated with operating an air compressor can be significantly reduced. Prioritizing safety promotes a secure and productive working environment.
editor by CX 2023-10-16
China Hot selling New 191 Kw Oil Cooling Screw Air Compressors Diesel Industrial Portable Compressor wholesaler
Product Description
Product Description
Diesel mobile screw air compressor
This series of products pay more attention to the structural layout of products and the application of innovative technologies while improving the strength of the machine body. The self-developed cooler is equipped with fans with corresponding speed ratio, which can ignore all the high temperature weather. Diesel engines operating at economic speeds can improve fuel economy while operating at low noise. The double-door design greatly solves the trouble of inconvenient replacement of filter element during maintenance.
TECHNICAL SPECIFICATIONS | |
Type | Screw Air Compressor |
Item | 21/17 |
Rated FAD | 21 m³/min |
Rate Pressure | 17 bar |
Diesel Brand | Yuchai Diesel |
Engine Power | 191KW |
Compression stage | 2 Stage |
Whole Machine walking mode | 4wheels |
Dimensions (L*W*H) | 3200*2000*2600mm |
Weight | 3700KG |
Detailed Photos
Packaging & Shipping
Company Profile
FAQ
Q1: Are you factory or trade company?
A1: We are factory. And we have ourselves trading company.
Q2: What the exactly address of your factory?
A2: Our company is located in Kaixuan Road ,Economic Zone HangZhou, ZHangZhoug, China
Q3: Warranty terms of your machine?
A3: One year warranty for the machine and technical support according to your needs.
Q4: Will you provide some spare parts of the machines?
A4: Yes, of course.
Q5: What about the voltage of products? Can they be customized?
A5: Yes, of course. The voltage can be customized according to your equirement.
Q6: Which payment term can you accept?
A6: 30% T/T in advanced, 70% T/T against the B/L copy.
After-sales Service: | 1 Year |
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Lubrication Style: | Lubricated |
Cooling System: | Oil Cooling |
Power Source: | Diesel Engine |
Cylinder Position: | Angular |
Structure Type: | Closed Type |
Customization: |
Available
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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 2023-04-18
China Professional Low Noise Oilfree Water Cooling Air Purification System air compressor with Best Sales
Product Description
Screw type air compressor structure of a unique layout, a compact, fashionable visual appeal, higher performance, small vitality intake, minimal sounds attributes and extended life, is a smart setting-pleasant merchandise. Widely used in metallurgy, machinery, substances, and mining, and electric electrical power industries of the excellent gasoline resource gear.
Gain:
one.The third generation of superior rotor and concise consumption control program
two.Efficient centrifugal separator oil and gasoline, fuel oil material is modest,tube and core of extended existence .
3. Effective, reduced sound suction enthusiast of the entire use of export dynamic pressure increased impact of warmth transfer (air-cooled)
four. Computerized h2o-cooling system for huge air compressor to give more efficient
5.Fault diagnosis method, the management panel is simple to operate
six. Removable door, tools maintenance, services convenient
7.Micro-electronic processing so that temperature, strain and other parameters are carefully monitored .
Technical Parameters:
Product | Discharge Force | Discharge Air Volume | Motor Electricity | Sound | Dimension(mm) | Discharge Pipc.Dia | Unit Weight |
DEF330W | .75MPa | 9.15m³/min | 55KW | 80±3 | 2100x1500x1790 | G1-1/two | 2600KG |
.85MPa | 9.11m³/min | ||||||
1.05MPa | seven.98m³/min | ||||||
DEF450W | .75MPa | twelve.51m³/min | 75KW | 80±3 | 2300x1600x1790 | DN50 | 2800KG |
.85MPa | 11.60m³/min | ||||||
one.05MPa | ten.81m³/min | ||||||
DEF505W | .75MPa | 13.39m³/min | 90KW | 80±3 | 2300x1600x1790 | DN50 | 3400KG |
.85MPa | 13.37m³/min | ||||||
one.05MPa | twelve.41m³/min | ||||||
DEF710W | .75MPa | 19.96m³/min | 110KW | 82±3 | 2800x1800x1860 | DN65 | 3450KG |
.85MPa | 18.74m³/min | ||||||
one.05MPa | 16.40m³/min | ||||||
DEF780W | .75MPa | 23.58m³/min | 132KW | 82±3 | 2800x1800x1860 | DN65 | 3550KG |
.85MPa | 22.13m³/min | ||||||
1.05MPa | 19.89m³/min | ||||||
DEF950W | .75MPa | 26.85m³/min | 160KW | 82±3 | 2800x1800x1860 | DN65 | 3950KG |
.85MPa | twenty five.47m³/min | ||||||
one.05MPa | 23.51m³/min | ||||||
DEF1060W | .75MPa | 29.73m³/min | 185KW | 82±3 | 2800x1800x1860 | DN65 | 4500KG |
.85MPa | 29.65m³/min | ||||||
one.05MPa | 26.79m³/min | ||||||
DEF1180W | .75MPa | 33.49m³/min | 200KW | 85±3 | 3100x2150x2200 | DN100 | 5000KG |
.85MPa | 33.35m³/min | ||||||
one.05MPa | 29.89m³/min | ||||||
DEF1270W | .75MPa | 35.97m³/min | 220KW | 85±3 | 3100x2150x2200 | DN100 | 5200KG |
.85MPa | 35.92m³/min | ||||||
1.05MPa | 33.28m³/min | ||||||
DEF1510W | .75MPa | 42.85m³/min | 250KW | 85±3 | 3100x2150x2200 | DN100 | 6400KG |
.85MPa | 42.66m³/min | ||||||
1.05MPa | 38.3m³/min | ||||||
DEF1650W | .75MPa | forty six.73m³/min | 280KW | 85±3 | 3400x2400x2200 | DN100 | 6400KG |
.85MPa | 45.64m³/min | ||||||
1.05MPa | 42.61m³/min | ||||||
DEF1815W | .75MPa | fifty one.41m³/min | 315KW | 90±3 | 3400x2400x2200 | DN100 | 6400KG |
.85MPa | 51.25m³/min | ||||||
one.05MPa | forty six.47m³/min | ||||||
DEF2060W | .75MPa | 58.44m³/min | 355KW | 90±3 | 3400x2400x2200 | DN100 | 6400KG |
.85MPa | 57.89m³/min | ||||||
one.05MPa | fifty.99m³/min |
Solution HIGHLIGHTS
1.Clear air 100% oil-free of charge, course 0 oil free air according to ISO8537-1
two.Engineering patent used in oil free compressed air system
3.Significant energy conserving, environmental-friendly and pollution-free of charge
4.Minimal procedure and maintenance cost
five.Powerful MAM microcomputer controller and touch display
six.Made specifically for healthcare, pharmacy, instrument, coating, chemical industry and food processing, etc.
Product Applications:
Our Exhibition
Our support
one.Pre-sale services:
Act as a good adviser and assistant of consumers permit them to get abundant and generous returns on their investments .
one.Decide on products design.
two.Layout and manufacture items according to client’s special prerequisite
3.Practice complex personnel for clients .
2.Companies in the course of the sale:
1.Pre-check out and take products in advance of delivery .
two. Assist clients to draft resolving ideas .
three.Right after-sale solutions:
Provide considerate solutions to reduce clients’ worries.
one.Complete Right after-sales provider,professional engineers obtainable to support machinery at house or oversea.
two. 24 hrs technological help by e-mail.
3.Other vital technological provider.
Lubrication Style: | Oil-free |
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Cooling System: | Water Cooling |
Power Source: | DC Power |
Cylinder Position: | Vertical |
Structure Type: | Closed Type |
Installation Type: | Stationary Type |
Customization: |
Available
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Choosing the Right Air Compressor For Your Home
You will find that air compressors are indispensable tools for a variety of situations, including garages, home workshops, and basements. These tools can power a variety of tools, and each model is sized to suit the job at hand. Because air compressors have only one motor, they are lightweight, compact, and easy to handle. Using one air compressor to power several tools will also reduce the wear and tear on individual components. This article will introduce some important characteristics to look for when choosing the right air compressor for your home.
Positive displacement
A positive displacement compressor applies pressure to a fluid, whereas a centrifugal one does the opposite. A positive displacement compressor creates the desired pressure by trapping air and increasing its volume. Its discharge valve releases the high-pressure gas. These compressors are used in industrial applications and nuclear power plants. The difference between a positive and negative displacement compressor is that a positive displacement compressor can compress and release air at a consistent rate.
A positive displacement air compressor uses a reciprocating piston to compress air. This reduces the volume of the air in the compression chamber, and a discharge valve opens when the pressure reaches the desired level. These compressors are used in bicycle pumps and other pneumatic tools. Positive displacement air compressors have multiple inlet ports and have several configurations. Positive displacement air compressors have a single-acting and double-acting piston, and can be oil-lubricated or oil-free.
A positive displacement air compressor is different from a dynamic compressor. It draws air into the compression chambers and then releases the pressure when the valve is opened. Positive displacement compressors are common in industrial applications and are available in single-acting, double-acting, and oil-lubricated models. Large piston compressors have ventilated intermediate pieces and crossheads on gudgeon pins. Smaller models have permanently sealed crankcases with bearings.
Oil-free
Oil-free air compressors have some advantages over their oil-lubricated counterparts. They do not require lubrication oil because they are coated with Teflon. The material has one of the lowest coefficients of friction and is layered, so it slides past other layers with little effort. Because of this, oil-free compressors tend to be cheaper and still deliver comparable performance. Oil-free compressors are a good choice for industrial applications.
The life of an oil-free air compressor is significantly longer than an oil-lubricated counterpart. These models can operate up to 2,000 hours, four times longer than the average oil-lubed compressor. Oil-free compressors also have a significantly lower operating noise than their oil-lubricated counterparts. And because they don’t need oil changes, they are quieter. Some even last up to 2,000 hours.
An oil-free air compressor is a good choice if your application requires high levels of purity. Several applications require ultra-pure air, and even a drop of oil can cause product spoilage or damage to production equipment. In addition to the health risks, an oil-free air compressor reduces the costs associated with oil contamination and minimizes leaks. It also eliminates the need for oil collection, disposal, and treatment.
A typical oil-free air compressor is very efficient, requiring only about 18% of the full load horsepower. However, oil-free compressors have a higher risk of premature failure and are not recommended for large-scale industrial applications. They may also use up to 18% of the compressor’s full capacity. They may sound appealing, but you must make sure you understand the benefits of an oil-free air compressor before choosing one for your industrial applications.
Single-stage
A single-stage air compressor is designed to provide the power for a single pneumatic tool or device. These machines are generally smaller than two-stage compressors and produce less heat and energy. These machines aren’t designed for heavy-duty industries, but they are still highly effective for a variety of applications, including auto shops, gas stations, and various manufacturing plants. They can also be used in borewells, as they are suitable for small spaces with low air flow requirements.
A single-stage air compressor has one cylinder and two valves – the inlet and the delivery valves. Both of these valves function mechanically, with the inlet valve controlling torque and the delivery one controlling air pressure. Generally, single-stage compressors are powered by a gas engine, but there are also electric models available. The single-stage air compressor is the most common type of air compressor. It has a single cylinder, one piston, and one air cylinder.
The single-stage air compressors are used for small projects or personal use. A two-stage air compressor is more effective for industrial projects. Its longer air end life makes it more efficient. It is also more efficient for use in the automotive industry, where the engine has many cylinders. In general, single-stage compressors require a higher power level. The single-stage model is ideal for small projects, while a two-stage one is suitable for larger-scale arsenals.
CFM
The cubic foot-per-minute (CFM) of an air compressor is the output of the machine. In order to calculate the CFM level, start by looking at the compressor’s specifications. You should know how many cubic feet the unit can hold and how many pounds per square inch it can compress. Once you have these information, you can calculate the CFM. Now you can use these numbers to select an appropriate air compressor for your needs.
The most common way to increase the CFM of an air compressor is to turn the regulator down. By turning the dial down, the air compressor will produce more than 10 CFM. You can also try connecting two output valves. Make sure that the settings are adjusted properly before you begin. This will ensure that your air compressor is functioning at its maximum efficiency and lifespan. To increase the CFM of your air compressor, first check that your regulator is calibrated for the desired pressure level.
To calculate the CFM of an air compressor, first determine the tank volume of the machine. Then, multiply this volume by the time it takes to fill the tank. Then, divide the result by 60 seconds to calculate the CFM. Once you know how much air your machine can hold, you can choose a suitable air compressor. If you’re working in a confined area, you should buy a tool with a large tank.
PSI
The PSI of an air compressor is the pressure that it can output. A typical air compressor has a gauge connected to the airline at the bottom, next to it, or between the two. The gauge tells the actual pressure of the air compressor, while the cut-out pressure is determined by the manufacturer. The manufacturer recommends that you set the cut-out pressure twenty to forty PSI higher than the factory recommended pressure. If you want to set the pressure for your nail gun, you can use the cut-in and cut-out pressures on your compressor, and the tank won’t exceed this range.
The PSI of an air compressor measures the force that it can deliver, which is often in pounds per square inch. For most air tools, you need at least forty to 90 psi. In general, reciprocating air compressors work on an on/off basis. This relationship is known as the duty cycle. All air compressors are rated for a particular duty cycle, such as fifty percent on and twenty-five percent off.
The Psig of an air compressor is not free, as many people believe. The PSI of an air compressor is not free, but it is essential to maintain it for safe operations. If you’re having trouble maintaining a consistent pressure, consider turning down the PSI of your compressor by 2 psig. This will determine the critical pressure for the machine. You’ll also increase the amount of energy in the system by one percent.
Power source
The power source for an air compressor is crucial in its operation. Without the correct voltage and amperage, air compressors will not function properly. The power source must be close to the compressor so that it can plug into an electrical outlet. If it is too far from the outlet, the compressor may not be able to build enough pressure. When this happens, the fuse inside the air compressor will turn off to protect the user. The power source should be a safe distance from the compressor.
Most manufacturers do not specify the power source for an air compressor. Depending on the horsepower, the compressor will require approximately four amps of power. A one-horsepower compressor would draw about twelve amps. If it were powered by a typical 120-volt household supply, its motor would exceed the 15-amp breaker capacity. A larger air compressor, however, will require a separate 15-amp power source, making it impossible to use it with this type of power source.
The power source for an air compressor is typically electrical alternating current (AC) that is equivalent to the voltage on a standard wall outlet. A three-phase air compressor, on the other hand, requires a special AC supply with three electrical offset pulses. Regardless of the type of air compressor, the power source must be compatible with the incoming power service. One of the most common problems when attempting to connect an air compressor to an AC power source is undersized wire. This results in low voltage and high amperes, tripping of over-load relays and blown fuses.
editor by CX 2023-04-12
China Stationary Type Cooling Moair Export Standard Package Parts Screw Air Compressor 12v air compressor
Solution Description
Stationary Sort Cooling CZPT Export Standard Deal parts Screw Air Compressor
Solution Description
Geared up with an IE3 motor, the direct push rotary screw air compressor is made up of a high-precision screw and higher-good quality casting, with a broad variable selection of parameters.
Product Parameters
Design | Electrical power(kW) | Air shipping/Discharge pressure (m3/min) / (Mpa) |
MFG30A | 22 | 3.44/.8 |
MFG40A | thirty | 5.62/.8 |
MFG50A | 37 | six.35/.8 |
MFG60A | 45 | seven.35/.eight |
MFG75A | fifty five | 9.62/.8 |
MFG100A | 75 | twelve.8/.eight |
MFG120A | 90 | 15.3/.eight |
MFG150A | a hundred and ten | eighteen.6/.eight |
MFG150W | a hundred and ten | 18.6/.eight |
MFG175A | 132 | 21.5/.eight |
MFG175W | 132 | 21.5/.eight |
MFG200A | one hundred sixty | twenty five.8/.eight |
MFG200W | one hundred sixty | twenty five.8/.eight |
MFG250A | 185 | 28.5/.8 |
MFG250W | 185 | 28.5/.eight |
MFG300A | 220 | 35.3/.eight |
MFG300W | 220 | 35.3/.8 |
MFG350A | 250 | 43.2/.eight |
MFG350W | 250 | 43.2/.8 |
Firm Profile
FAQ
Q1: What ‘s your manufacturing facility tackle
A2: Our company is situated in NO.88 CZPT Highway,HangZhou ,ZheJiang ,China
Q2: How long is our delivery
A2: Our regular supply time is 30-forty times following confirmation purchase & acquiring recipets for common compressors, for the other non regular necessity will be talked about case by case.
Q3: Can you take OEM orders?
A3: Of course, with professional layout team, OEM orders are extremely welcome.
US $3,000-30,000 / Piece | |
1 Piece (Min. Order) |
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Lubrication Style: | Lubricated |
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Cooling System: | Air Cooling |
Power Source: | AC Power |
Cylinder Position: | Vertical |
Structure Type: | Closed Type |
Installation Type: | Stationary Type |
###
Samples: |
US$ 3000/Piece
1 Piece(Min.Order) |
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Customization: |
Available
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Model | Power(kW) | Air delivery/Discharge pressure (m3/min) / (Mpa) |
MFG30A | 22 | 3.44/0.8 |
MFG40A | 30 | 5.62/0.8 |
MFG50A | 37 | 6.35/0.8 |
MFG60A | 45 | 7.35/0.8 |
MFG75A | 55 | 9.62/0.8 |
MFG100A | 75 | 12.8/0.8 |
MFG120A | 90 | 15.3/0.8 |
MFG150A | 110 | 18.6/0.8 |
MFG150W | 110 | 18.6/0.8 |
MFG175A | 132 | 21.5/0.8 |
MFG175W | 132 | 21.5/0.8 |
MFG200A | 160 | 25.8/0.8 |
MFG200W | 160 | 25.8/0.8 |
MFG250A | 185 | 28.5/0.8 |
MFG250W | 185 | 28.5/0.8 |
MFG300A | 220 | 35.3/0.8 |
MFG300W | 220 | 35.3/0.8 |
MFG350A | 250 | 43.2/0.8 |
MFG350W | 250 | 43.2/0.8 |
US $3,000-30,000 / Piece | |
1 Piece (Min. Order) |
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Lubrication Style: | Lubricated |
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Cooling System: | Air Cooling |
Power Source: | AC Power |
Cylinder Position: | Vertical |
Structure Type: | Closed Type |
Installation Type: | Stationary Type |
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Samples: |
US$ 3000/Piece
1 Piece(Min.Order) |
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Customization: |
Available
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Model | Power(kW) | Air delivery/Discharge pressure (m3/min) / (Mpa) |
MFG30A | 22 | 3.44/0.8 |
MFG40A | 30 | 5.62/0.8 |
MFG50A | 37 | 6.35/0.8 |
MFG60A | 45 | 7.35/0.8 |
MFG75A | 55 | 9.62/0.8 |
MFG100A | 75 | 12.8/0.8 |
MFG120A | 90 | 15.3/0.8 |
MFG150A | 110 | 18.6/0.8 |
MFG150W | 110 | 18.6/0.8 |
MFG175A | 132 | 21.5/0.8 |
MFG175W | 132 | 21.5/0.8 |
MFG200A | 160 | 25.8/0.8 |
MFG200W | 160 | 25.8/0.8 |
MFG250A | 185 | 28.5/0.8 |
MFG250W | 185 | 28.5/0.8 |
MFG300A | 220 | 35.3/0.8 |
MFG300W | 220 | 35.3/0.8 |
MFG350A | 250 | 43.2/0.8 |
MFG350W | 250 | 43.2/0.8 |
How to Repair and Maintain an Air Compressor
A compressor is a device used to move air from one place to another. Air enters the air compressor through the intake valve. Inside the compressor, the vanes on the inner rotor rotate within an eccentric cavity. The self-adjusting length arm divides the space into multiple cavities of different sizes. As the rotor rotates, air fills the cavity. As air flows around the cavity, it builds pressure and is squeezed out of the compressor output.
Positive displacement
Positive displacement air compressors use reciprocating pistons to compress air. Gas is drawn in during the suction stroke and compressed by moving the piston in the opposite direction. It then discharges the compressed air by moving it in the opposite direction. This type of air compressor is most commonly found in automobiles, refrigerators, and other applications that require high pressure. However, it is not as efficient as a centrifugal compressor.
Most modern air compressors use positive displacement. Positive displacement models capture a volume of air in the compression chamber and distribute it when the pump is operating at maximum capacity. They are more economical than their negative displacement counterparts. Reciprocating screw air compressors are the most common positive displacement compressors. The reciprocating screw air compressor adopts a water jacket around the cylinder and is often used in processes such as oil drilling.
A bicycle pump is an example of positive displacement compression. Air is drawn into the cylinder and compressed by the moving piston. A piston compressor works on the same principle, but it uses a rotating crankshaft or connecting rod to complete the movement of the pistons. There are two types of positive displacement compressors: single-acting and double-acting. Both types work on the same principle, both are positive displacement compressors. The difference between the two types is the pressure ratio.
In air compression, positive displacement compression reduces the volume of the fluid and reduces its viscosity. This results in higher pressure ratios and is used in centrifugal, axial, and scroll compressors. Positive displacement is a common feature of most air compressors. Positive displacement compressors offer the same benefits and are more energy-efficient when applied to oil-free and gas applications. This type of compression is usually the best choice for low-pressure applications.
oil free
If you’re looking for an air compressor for your business, consider an oil-free air compressor. These models offer cleaner, quieter operation than traditional air compressors and require less maintenance. They also meet ISO Class 0 or Class 1 air purity requirements. Oil-free air compressors are also quieter, with fewer moving parts and less noise. These advantages make oil-free air compressors an ideal solution for many commercial applications.
Air purity is critical in many industries. Even the tiniest drop of oil can damage production equipment or damage products. The best way to find an oil-free air compressor for your business is to consider the process and end product. As air quality improves, more and more businesses are turning to oil-free compressors. Some of the advantages and disadvantages of these air compressors are:
When choosing an oil-free air compressor, it is important to understand the terminology used in the industry. Knowing these terms will make it easier for you to choose the right compressor for your needs. ACTFM, or actual cubic feet per minute, is an industry term for measuring the amount of air pumped in one minute under rated conditions. Although a simple number, it can be very useful in determining which type of air compressor is best for your application.
The ISO 8573-1 international standard defines air quality and provides air purity classifications. The strictest classification is air purity class 0. Many manufacturers claim that oil-free air compressors meet this standard. However, a class 0 oil-free air compressor does not necessarily mean that the air is free of contaminants. In fact, Class 0 is the benchmark for air purity. While zero air quality is the highest level, that doesn’t mean it’s completely oil-free.
double acting
A double-acting air compressor is a device that uses compressed air to generate electricity. Its working principle is based on piston and connecting rod. The connecting rod connects the crankshaft to the piston through pins and caps. The piston moves as the piston moves. Rods are usually made of forged carbon steel. In terms of service and maintenance, double-acting compressors require regular vise maintenance and proper cleaning.
The displacement of the compressor is a measure of the displacement that the piston can produce in a certain period of time. Displacement is usually expressed in actual cubic feet per minute. The exact calculation depends on the type of cylinder and the configuration of the compressor. Single-acting cylinders can have head-end or crank-end displacement, both of which can be measured using the displacement equation. A double-acting air compressor will use this equation. 4 and 6 calculate the displacement.
Double-acting air compressors have multiple cylinders and are made of cast iron. They are water-cooled and have a mechanical connection between the piston and connecting rod. A double-acting compressor compresses air twice per revolution of the motor. One cylinder moves up, while the other cylinder moves down. The piston moves down, allowing air to enter through valve #1. During the operation of the compressor, the temperature of the air and gas increases.
Double-acting air compressors typically have high pressure and are considered workhorses. Double-acting compressors also feature intercooling and double compression. As a result, these machines tend to last longer than single-acting compressors. Its low speed and dual compression make it a workhorse in the compressor industry. Double-acting air compressors are workhorses and versatile devices.
fuel tank pressure switch
You can adjust the pressure in the air compressor tank by adjusting the differential pressure. You can turn the mainspring clockwise or counterclockwise to increase or decrease the pressure. This valve will open when the pressure is low enough to start the compressor. If the pressure is too low, the valve should be closed. The cut-in and cut-out pressures should be set to appropriate values. After adjusting the tank pressure, check the hysteresis of the tank pressure switch and set the desired shutoff pressure.
If the pressure in the tank falls below the cut-in level, the tank pressure switch must be replaced. You can test the switch with a multimeter. Make sure the switch is not damaged. If you can’t find the switch, you can look at the other sections. If you find any damaged or missing parts, you should replace them. Otherwise, it may be time to check the tank pressure switch. You may need to disassemble the compressor and remove the switch.
The fuel tank pressure switch is an important part of the air compressor. It keeps you informed of the amount of air delivered by the compressor. If your tank or tank is damaged, your readings will be wrong. If the pressure switch is damaged, it will not function properly and result in incorrect readings. Fortunately, there are some easy ways to fix this. To prevent this from happening, keep the tank pressure switch in good condition.
When the air pressure in the tank drops to the cut-in pressure setting, the switch allows power to flow through it. This will start the motor and pump of the air compressor. Then, if the pressure in the tank rises above the cut-off level, the switch will trip and stop the compressor. This will prevent it from being over-pressurized. Power flow will continue to flow to the motor. Depending on your compressor model, you can change the cut-in and cut-out pressures as needed.
energy source
The power supply of the air compressor is very important. Most air compressors run on 12 VDC, which is ideal for automotive use. Alternatively, you can buy a switching power supply for around $20. No matter which power supply you choose, you must ensure that it can support the maximum current of the compressor. You can find power supplies in all sizes, from quarter-horsepower to five-horsepower.
The voltage required for a three-phase air compressor will vary. Three-phase air compressors require three separate power cords and a three-phase electrical service panel. This is because a standard 120/240-volt electrical service panel is not sufficient to power a three-phase compressor. Additionally, three-phase compressors require three separate isolated wires for the engine and motor circuits. Three-phase compressors do not require a neutral wire.
editor by czh 2023-01-06
China High Quality Best Sale 30kw Weg Variable Frequency Inverter Air Cooling Screw Air Compressor air compressor oil
Item Description
Higher Top quality Ideal Sale 30kw Weg Variable Frequency Inverter Air Cooling Screw Air Compressor
Complex Information
Mode |
|
GA-30A |
GA-37A |
GA-45A |
GA-55A |
GA-75A |
GA-90A |
|
Free air provide/Discharge Stress |
m³ / min/Mpa |
.57~5.7/.seven |
.sixty eight~6.8/.7 |
0.79~7.9/.seven |
1.09~10.9/.7 |
1.45~14.5/.seven |
one.70~17./.seven |
|
.fifty five~5.5/.8 |
.62~6.2/.8 |
0.seventy four~7.4/.eight |
one.04~10.4/.8 |
one.38~13.8/.8 |
one.65~sixteen.5/.8 |
|||
.50~5./1. |
.57~5.7/1. |
0.69~6.9/1. |
.94~9.4/1. |
one.26~12.6/1. |
1.52~15.2/1. |
|||
.45~4.5/1.three |
.fifty~5./1.three |
0.sixty one~6.1/1.3 |
.86~8.6/1.3 |
1.twelve~eleven.2/1.three |
1.40~fourteen./1.3 |
|||
No of compressor stage |
|
Single phase |
||||||
Ambient temperature |
|
-5+forty five |
||||||
Cooling Model |
|
Air-Cooling |
||||||
Displacement temperature |
|
Ambient temperature +15 |
||||||
Noise stage |
|
65±2 |
65±2 |
68±2 |
75±2 |
75±2 |
75±2 |
|
Drive method |
|
direct/belt driven |
||||||
Electric power |
V/ph/Hz |
380/four hundred/415/3/fifty 440/460/3h/60 |
||||||
Motor Electrical power |
Kw/hp |
thirty/forty five |
37/fifty |
45/60 |
55/75 |
75/a hundred |
ninety/one hundred twenty |
|
Starting approach |
|
Y -Δ start off |
||||||
Lubricant |
L |
sixteen |
seventeen |
18 |
forty five |
fifty |
fifty five |
|
Dimension |
L(mm) |
1500 |
1500 |
1500 |
1750 |
1750 |
2545 |
|
W(mm) |
970 |
970 |
970 |
1500 |
1500 |
1450 |
||
H(mm) |
1375 |
1375 |
1375 |
1700 |
1700 |
1900 |
||
Excess weight |
Kg |
860 |
880 |
900 |
1700 | 1800 |
2750 | |
Air Outlet Pipe Diameter |
Inch |
G1 1/4″ |
G1 1/2″ |
G1 1/2″ |
G2″ |
G2″ |
DN65 |
Depth Images
Our Solutions
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Company Info
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To Be Negotiated | 1 Piece (Min. Order) |
###
Lubrication Style: | Lubricated |
---|---|
Cooling System: | Air Cooling |
Power Source: | AC Power |
Cylinder Position: | Angular |
Structure Type: | Closed Type |
Installation Type: | Stationary Type |
###
Customization: |
Available
|
---|
###
Mode |
|
GA-30A |
GA-37A |
GA-45A |
GA-55A |
GA-75A |
GA-90A |
|
Free air deliver/Discharge Pressure |
m³ / min/Mpa |
0.57~5.7/0.7 |
0.68~6.8/0.7 |
0.79~7.9/0.7 |
1.09~10.9/0.7 |
1.45~14.5/0.7 |
1.70~17.0/0.7 |
|
0.55~5.5/0.8 |
0.62~6.2/0.8 |
0.74~7.4/0.8 |
1.04~10.4/0.8 |
1.38~13.8/0.8 |
1.65~16.5/0.8 |
|||
0.50~5.0/1.0 |
0.57~5.7/1.0 |
0.69~6.9/1.0 |
0.94~9.4/1.0 |
1.26~12.6/1.0 |
1.52~15.2/1.0 |
|||
0.45~4.5/1.3 |
0.50~5.0/1.3 |
0.61~6.1/1.3 |
0.86~8.6/1.3 |
1.12~11.2/1.3 |
1.40~14.0/1.3 |
|||
No of compressor stage |
|
Single stage |
||||||
Ambient temperature |
|
-5+45 |
||||||
Cooling Model |
|
Air-Cooling |
||||||
Displacement temperature |
|
Ambient temperature +15 |
||||||
Noise level |
|
65±2 |
65±2 |
68±2 |
75±2 |
75±2 |
75±2 |
|
Drive method |
|
direct/belt driven |
||||||
Electricity |
V/ph/Hz |
380/400/415/3/50 440/460/3h/60 |
||||||
Motor Power |
Kw/hp |
30/45 |
37/50 |
45/60 |
55/75 |
75/100 |
90/120 |
|
Starting method |
|
Y -Δ start |
||||||
Lubricant |
L |
16 |
17 |
18 |
45 |
50 |
55 |
|
Dimension |
L(mm) |
1500 |
1500 |
1500 |
1750 |
1750 |
2545 |
|
W(mm) |
970 |
970 |
970 |
1500 |
1500 |
1450 |
||
H(mm) |
1375 |
1375 |
1375 |
1700 |
1700 |
1900 |
||
Weight |
Kg |
860 |
880 |
900 |
1700 | 1800 |
2750 | |
Air Outlet Pipe Diameter |
Inch |
G1 1/4" |
G1 1/2" |
G1 1/2" |
G2" |
G2" |
DN65 |
To Be Negotiated | 1 Piece (Min. Order) |
###
Lubrication Style: | Lubricated |
---|---|
Cooling System: | Air Cooling |
Power Source: | AC Power |
Cylinder Position: | Angular |
Structure Type: | Closed Type |
Installation Type: | Stationary Type |
###
Customization: |
Available
|
---|
###
Mode |
|
GA-30A |
GA-37A |
GA-45A |
GA-55A |
GA-75A |
GA-90A |
|
Free air deliver/Discharge Pressure |
m³ / min/Mpa |
0.57~5.7/0.7 |
0.68~6.8/0.7 |
0.79~7.9/0.7 |
1.09~10.9/0.7 |
1.45~14.5/0.7 |
1.70~17.0/0.7 |
|
0.55~5.5/0.8 |
0.62~6.2/0.8 |
0.74~7.4/0.8 |
1.04~10.4/0.8 |
1.38~13.8/0.8 |
1.65~16.5/0.8 |
|||
0.50~5.0/1.0 |
0.57~5.7/1.0 |
0.69~6.9/1.0 |
0.94~9.4/1.0 |
1.26~12.6/1.0 |
1.52~15.2/1.0 |
|||
0.45~4.5/1.3 |
0.50~5.0/1.3 |
0.61~6.1/1.3 |
0.86~8.6/1.3 |
1.12~11.2/1.3 |
1.40~14.0/1.3 |
|||
No of compressor stage |
|
Single stage |
||||||
Ambient temperature |
|
-5+45 |
||||||
Cooling Model |
|
Air-Cooling |
||||||
Displacement temperature |
|
Ambient temperature +15 |
||||||
Noise level |
|
65±2 |
65±2 |
68±2 |
75±2 |
75±2 |
75±2 |
|
Drive method |
|
direct/belt driven |
||||||
Electricity |
V/ph/Hz |
380/400/415/3/50 440/460/3h/60 |
||||||
Motor Power |
Kw/hp |
30/45 |
37/50 |
45/60 |
55/75 |
75/100 |
90/120 |
|
Starting method |
|
Y -Δ start |
||||||
Lubricant |
L |
16 |
17 |
18 |
45 |
50 |
55 |
|
Dimension |
L(mm) |
1500 |
1500 |
1500 |
1750 |
1750 |
2545 |
|
W(mm) |
970 |
970 |
970 |
1500 |
1500 |
1450 |
||
H(mm) |
1375 |
1375 |
1375 |
1700 |
1700 |
1900 |
||
Weight |
Kg |
860 |
880 |
900 |
1700 | 1800 |
2750 | |
Air Outlet Pipe Diameter |
Inch |
G1 1/4" |
G1 1/2" |
G1 1/2" |
G2" |
G2" |
DN65 |
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 2022-12-18