Tag Archives: diesel screw air compressor

China OEM Hgt400-13 Industrial Manufacture Diesel Engine 88kw~410kw Rotary Screw Air Compressor with Hot selling

Product Description

Product Description

HGT400-13 Industrial manufacture Diesel Engine 88kw~410kw Rotary Screw Air Compressor

 

Product Parameters

Model HGT330-8Y HGT400-13Y HGT450-8Y HGT450-10Y HGT550-16C HGT15-15Y HGT15-17C HGT15-17Y HGT18-18C HGT18-18Y HGT800-20Y HGT800-20C HGT24-22Y HGT31-25C HGT36-30C HG400-13C HG450-8C HG450-10C HG800-20C
Diesel engine yu chai yu chai yu chai yu chai cummins yu chai cummins yu chai cummins yu chai yu chai cummins yu chai cummins cummins cummins cummins cummins cummins
Engine power (kw) 88KW 118KW 118KW 118KW 157KW 140KW 157KW 162KW 157KW 162KW 191KW 194KW 228KW 295KW 410KW 110KW 110KW 110KW 264KW
Air Delivery(m³/min) 10 10 12.5 12.5 15 17/15 17/15 17/15 18/16 18/16 20/18 21/19 24/22 35/31 36/40 10 12.5 12.5 22
Air Delivery(cfm) 350 350 450 450 550 600/550 600/550 600/550 650/600 650/600 700/650 750/700 850/800 1200/1100 1300/1350 350 450 450 800
Pressure(bar) 10 13 8 10 16 12/15 13/17 13/17 13/18 13/18 17/20 17/20 18/22 18/25 30/22 13 8 10 20
Air end Single stage Single stage Single stage Single stage Single stage Single stage Single stage Single stage Double stage Double stage Double stage Double stage Double stage Double stage Double stage Single stage Single stage Single stage Single stage
Gas tank volume(L) 100 120 120 120 127 127 127 127 127 127 160 160 160 195 195 100 100 100 210
Screw machine oil volume(L) 48 54 54 54 65 65 65 65 65 65 79 79 79 95 95 54 54 54 115
Engine model YC4DK120-H300 YC4A160-H300 YC4A160-H300 YC4A160-H300 QSB5.9-C220-30 YC6J190-H300 QSB5.9-C220-30 YC6J220-H300 QSB5.9-C220-30 YC6J220-H300 YC6A260-H300 QSB8.3-C260-30 YC6L260-H300 QSL8.9-C400 QSZ13-C550 6BT5.9-C150 6BT5.9-C150 6BT5.9-C150 6CTA8.9-C360
Rated speed(rpm) 2200 2200 2200 2200 2000 2000/1900 2000/1900 2000/1900 2000/1900 2000/1900 2000/1850 2000/1850 2000/1850 1900/1800 1900/1800 2200 2200 2200 2000
Idling speed(rpm) 1300 1300 1300 1300 1300 1300 1300 1300 1300 1300 1300 1300 1300 1300 1300 1300 1300 1300 1300
Diesel engine lubricants(L) 9 12 12 12 14 14 14 14 14 14 18 18 18 21 30 12 12 12 24
Coolant volume(L) 20 25 25 25 32 32 32 32 32 32 34 34 34 60 65 25 25 25 60
Fuel tank volume(L) 115 150 150 150 220 220 220 220 220 220 300 300 330 450 550 120 120 120 550
Average oil consumption(L) 15 20 20 20 25 25 25 25 30 30 35 35 40 50 65 18 18 18 45
Dimention(mm) 2880*1780*1760 3860*1900*1960 3860*1900*1960 3860*1900*1960 3000*2571*2300 3250*1670*2100 3250*1670*2100 3250*1670*2100 3250*1670*2100 3250*1670*2100 3460X1870X2300 3460X1870X2300 3460X1870X2300 3600X1960X2450 4100X2100X2570 3250*1850*1850 3250*1850*1850 3250*1850*1850 4080*2080*2320
Weight(kg) 1950 2100 2100 2100 3000 3200 3200 3200 3200 3200 3900 3900 4200 5500 6300 2100 2100 2100 5300
Machine travel mode Two rounds – movable Two rounds – movable Two rounds – movable Two rounds – movable Four rounds – movable Four rounds – movable Four rounds – movable Four rounds – movable Four rounds – movable Four rounds – movable Four rounds – movable Four rounds – movable Four rounds – movable Four rounds – movable Four rounds – movable Two rounds – movable Two rounds – movable Two rounds – movable Four rounds – movable

 

 

Detailed Photos

 

Visiting

 

Our Advantages

1. Our Shipyard: HangZhou Zhenhe shipyard, and now Taihang is the branch representative of our yard.
2. Our founding team has experience of more than 15 years in shipbuilding and ship repair with our own engineer and designer.
3. Equipment quality guarantee: Based on shipyard feedback, we built up a manufacturer file to ensure the good quality of the products. Also, we can send our engineers to help our clients install and test these exported equipment.
4. We are a second-hand ship broker to help you find the satisfied used different kinds of vessels.
5. We are able to provide the CKD kits and one-stop service based on our laser-cutting machine and purchase ability
6. We have a very professional design and technical team to work out perfect plans for our clients and help to solve any matters with pre-sale and after-sale.
7. Customer Distribution: Tanzania, Rwanda, India(Mumbai and Kolkata), Suva,  Portugal, Russia, Netherlands, Iceland, Denmark, Malaysia, Mexico…….

 

Company Profile

  /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

After-sales Service: Guarantee Repair
Warranty: Two Years
Name: Screw Air Compressor
Diesel Engine: Yu Chai, Cummins and So on
Air End: Single/Double Stage
Machine Travel Mode: Two/Four Rounds – Movable

air compressor

Can air compressors be used for gas compression and storage?

Yes, air compressors can be used for gas compression and storage. While air compressors are commonly used to compress and store air, they can also be utilized for compressing and storing other gases, depending on the specific application requirements. Here’s how air compressors can be used for gas compression and storage:

Gas Compression:

Air compressors can compress various gases by utilizing the same principles applied to compressing air. The compressor takes in the gas at a certain pressure, and through the compression process, it increases the pressure and reduces the volume of the gas. This compressed gas can then be used for different purposes, such as in industrial processes, gas pipelines, or storage systems.

Gas Storage:

Air compressors can also be used for gas storage by compressing the gas into storage vessels or tanks. The compressed gas is stored at high pressure within these vessels until it is needed for use. Gas storage is commonly employed in industries where a continuous and reliable supply of gas is required, such as in natural gas storage facilities or for storing compressed natural gas (CNG) used as a fuel for vehicles.

Gas Types:

While air compressors are primarily designed for compressing air, they can be adapted to handle various gases, including but not limited to:

  • Nitrogen
  • Oxygen
  • Hydrogen
  • Carbon dioxide
  • Natural gas
  • Refrigerant gases

It’s important to note that when using air compressors for gas compression and storage, certain considerations must be taken into account. These include compatibility of the compressor materials with the specific gas being compressed, ensuring proper sealing to prevent gas leaks, and adhering to safety regulations and guidelines for handling and storing compressed gases.

By leveraging the capabilities of air compressors, it is possible to compress and store gases efficiently, providing a reliable supply for various industrial, commercial, and residential applications.

air compressor

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.

air compressor

What is the role of air compressor tanks?

Air compressor tanks, also known as receiver tanks or air receivers, play a crucial role in the operation of air compressor systems. They serve several important functions:

1. Storage and Pressure Regulation: The primary role of an air compressor tank is to store compressed air. As the compressor pumps air into the tank, it accumulates and pressurizes the air. The tank acts as a reservoir, allowing the compressor to operate intermittently while providing a steady supply of compressed air during periods of high demand. It helps regulate and stabilize the pressure in the system, reducing pressure fluctuations and ensuring a consistent supply of air.

2. Condensation and Moisture Separation: Compressed air contains moisture, which can condense as the air cools down inside the tank. Air compressor tanks are equipped with moisture separators or drain valves to collect and remove this condensed moisture. The tank provides a space for the moisture to settle, allowing it to be drained out periodically. This helps prevent moisture-related issues such as corrosion, contamination, and damage to downstream equipment.

3. Heat Dissipation: During compression, air temperature increases. The air compressor tank provides a larger surface area for the compressed air to cool down and dissipate heat. This helps prevent overheating of the compressor and ensures efficient operation.

4. Pressure Surge Mitigation: Air compressor tanks act as buffers to absorb pressure surges or pulsations that may occur during compressor operation. These surges can be caused by variations in demand, sudden changes in airflow, or the cyclic nature of reciprocating compressors. The tank absorbs these pressure fluctuations, reducing stress on the compressor and other components, and providing a more stable and consistent supply of compressed air.

5. Energy Efficiency: Air compressor tanks contribute to energy efficiency by reducing the need for the compressor to run continuously. The compressor can fill the tank during periods of low demand and then shut off when the desired pressure is reached. This allows the compressor to operate in shorter cycles, reducing energy consumption and minimizing wear and tear on the compressor motor.

6. Emergency Air Supply: In the event of a power outage or compressor failure, the stored compressed air in the tank can serve as an emergency air supply. This can provide temporary air for critical operations, allowing time for maintenance or repairs to be carried out without disrupting the overall workflow.

Overall, air compressor tanks provide storage, pressure regulation, moisture separation, heat dissipation, pressure surge mitigation, energy efficiency, and emergency backup capabilities. They are vital components that enhance the performance, reliability, and longevity of air compressor systems in various industrial, commercial, and personal applications.

China OEM Hgt400-13 Industrial Manufacture Diesel Engine 88kw~410kw Rotary Screw Air Compressor   with Hot sellingChina OEM Hgt400-13 Industrial Manufacture Diesel Engine 88kw~410kw Rotary Screw Air Compressor   with Hot selling
editor by CX 2024-05-13

China supplier CHINAMFG Air Compressor Screw Air Compressor Diesel Engine 18 Bar Air Compressor Water Well Drilling Machine 12v air compressor

Product Description

 D CHINAMFG 18 bar diesel engine screw air compressor with wheels Customized HGS 14-18 diesel air compressor

Item

HGS 14-18

Rated FAD(m³/min) 15
Rated Pressure(bar) 18
Engine&Power parameters(kW) 132

Weight(kg)

2700

1.Automatic control and protection system.
2.Error free capacity control.
3.Deluxe micro-computer florescence control panel.
4.All weather models for high altitude operations (customization available for above 5500m high altitude applications only).
5.High quality filtration system with safety filters.
6.Low energy consumption with Large volume fuel tank to ensure 10 hours/day workload.
7.choose the best matching power Diesel Engine to reduce overall operating load and increase service life with cost-effective

price.

 

 

/* 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

Lubrication Style: Lubricated
Cooling System: Air Cooling
Power Source: Diesel Engine
Cylinder Position: /
Structure Type: Closed Type
Installation Type: Movable Type
Customization:
Available

|

air compressor

Are There Specific Water Treatment Requirements for Water-Lubricated Compressors?

Water-lubricated compressors often have specific water treatment requirements to ensure optimal performance, prevent equipment damage, and maintain the desired water quality. Here’s a detailed explanation of the water treatment considerations for water-lubricated compressors:

Water Quality:

  • Purity: The water used for lubrication should be clean and free from impurities, contaminants, or excessive minerals. Impurities in the water can lead to corrosion, blockages, and reduced lubrication effectiveness. Water sources should be evaluated to ensure they meet the required purity standards.
  • Chemical Composition: The chemical composition of the water should be within acceptable limits to avoid any adverse reactions with compressor components or lubricants. Certain water characteristics, such as pH, alkalinity, hardness, and conductivity, need to be monitored and controlled to prevent issues like scaling, fouling, or chemical reactions.

Water Treatment Methods:

  • Filtration: Filtration systems are commonly used to remove particulate matter, sediment, or debris from the water. Filters can range from simple strainers to more advanced filtration systems, depending on the specific water quality requirements and the level of filtration needed.
  • Water Softening: If the water has high levels of hardness minerals, such as calcium and magnesium, water softening methods may be necessary. Water softeners use ion exchange or other processes to remove the hardness minerals, which can help prevent scaling and reduce the risk of deposits in the compressor system.
  • Reverse Osmosis (RO): Reverse osmosis is a water treatment method that uses a semi-permeable membrane to remove dissolved solids, ions, and impurities from the water. RO systems can effectively reduce the total dissolved solids (TDS) and improve the overall water quality, making it suitable for water-lubricated compressors.
  • Chemical Treatment: In some cases, chemical treatments may be required to control water chemistry parameters, such as pH or alkalinity. Chemical additives can be used to adjust or stabilize water chemistry within the desired range, preventing corrosion, scaling, or other issues.

Water treatment requirements for water-lubricated compressors can vary depending on factors such as the compressor design, operating conditions, water source quality, and specific application requirements. It is essential to consult the compressor manufacturer’s recommendations and guidelines regarding water treatment. The manufacturer’s guidelines will provide specific information on water quality limits, treatment methods, and any required maintenance procedures related to water treatment.

Regular monitoring of water quality, including periodic testing and analysis, is recommended to ensure that the water treatment measures are effective and the desired water quality is maintained. Water treatment systems should be properly maintained and periodically serviced to ensure their optimal performance and prevent any potential issues that could affect the operation and longevity of water-lubricated compressors.

air compressor

How Does Water-Lubrication Affect the Lifespan of Air Compressor Components?

Water-lubrication can have both positive and negative effects on the lifespan of air compressor components. Here’s a detailed explanation of how water-lubrication can impact the lifespan of air compressor components:

Positive Effects:

  • Lubrication: Water-lubrication provides effective lubrication to the moving parts of the air compressor, reducing friction and wear. Proper lubrication helps minimize the stress on components such as pistons, cylinders, and bearings, which can contribute to extended component lifespan.
  • Cooling: Water-lubricated systems offer efficient cooling properties. The circulation of water through water jackets or cooling channels helps dissipate heat generated during compression. Effective cooling can prevent excessive temperature rise, reducing the risk of thermal damage and prolonging the lifespan of compressor components.
  • Contaminant Control: Water-lubrication can aid in controlling contaminants within the compressor system. Water acts as a medium to trap and remove particulate matter or debris generated during compressor operation. This helps protect components from potential damage and contributes to their longevity.

Negative Effects:

  • Corrosion: Water-lubrication introduces moisture into the compressor system, which can increase the risk of corrosion. Corrosion can degrade the integrity of components, leading to reduced lifespan and potential failures. Proper corrosion prevention measures, such as using corrosion-resistant materials or implementing water treatment processes, are essential to mitigate this negative effect.
  • Contamination: Although water-lubrication can help control contaminants, it can also introduce impurities and contaminants if the water supply or treatment is not adequately managed. Contaminants such as sediment, minerals, or microbial growth can negatively impact component lifespan by causing blockages, wear, or chemical degradation. Regular maintenance and proper filtration systems are crucial to minimize contamination-related issues.
  • System Complexity: Water-lubricated systems can be more complex than oil-lubricated systems, requiring additional components such as water pumps, filters, and separators. The complexity of the system can introduce more points of failure or maintenance requirements, which, if not addressed properly, can affect the overall lifespan of the compressor components.

Proper maintenance, monitoring, and adherence to manufacturer guidelines are essential to maximize the positive effects and mitigate the negative effects of water-lubrication on air compressor components. Regular inspection, cleaning, lubrication, and water treatment can help ensure optimal operation and prolong the lifespan of the compressor components.

air compressor

Advantages of Using Water as a Lubricant in Air Compressors

Water can be used as a lubricant in air compressors, offering several advantages over traditional lubricants such as oils or synthetic lubricants. Here are some of the advantages:

  1. Cost-effective: Water is a readily available and inexpensive resource, making it a cost-effective lubricant option for air compressors. Compared to oils or synthetic lubricants, water is significantly cheaper, which can result in cost savings for businesses and industries that heavily rely on air compressors.
  2. Environmentally friendly: Water is a non-toxic and environmentally friendly lubricant. It does not contain harmful chemicals or pollutants that can contribute to air or water pollution. Using water as a lubricant in air compressors reduces the risk of contamination and minimizes the environmental impact associated with traditional lubricants.
  3. Improved heat dissipation: Water has excellent heat transfer properties. It can absorb and dissipate heat more efficiently compared to oils or synthetic lubricants. Air compressors generate heat during operation, and using water as a lubricant helps to dissipate this heat effectively, preventing overheating and prolonging the lifespan of the compressor.
  4. Reduced fire hazard: Compared to oils or synthetic lubricants, water has a significantly higher flash point, which means it is less likely to ignite or contribute to fire hazards. This fire-resistant property of water makes it a safer lubricant choice, especially in environments where fire safety is a concern.
  5. Lower maintenance requirements: Water does not leave behind sticky residues or deposits, as some oils or synthetic lubricants might. This characteristic reduces the maintenance requirements of air compressors. It simplifies the cleaning process and reduces the frequency of lubricant changes, resulting in reduced downtime and maintenance costs.

Overall, using water as a lubricant in air compressors can offer significant advantages in terms of cost-effectiveness, environmental friendliness, heat dissipation, fire safety, and maintenance requirements.

China supplier CHINAMFG Air Compressor Screw Air Compressor Diesel Engine 18 Bar Air Compressor Water Well Drilling Machine   12v air compressorChina supplier CHINAMFG Air Compressor Screw Air Compressor Diesel Engine 18 Bar Air Compressor Water Well Drilling Machine   12v air compressor
editor by CX 2024-01-12

China supplier Oil Free Less Oilless Direct Driven Diesel High Pressure Reciprocating Portable Screw Air Compressor with Hot selling

Product Description

 

*Product Description

MODEL SUPC50-8 SUPC75-10 SUPC75-10 SUPC160-10 SUPC160-13-II SUPC190-13 SUPC190-15
Machine
Free air delivery m³/min 4.5 6 5 12 15 15 13
  cfm 160 215 178 428 535 535 465
Normal working pressure bar 8 8 10 10 13 13 15
  psi 118 118 147 147 191 191 220
Dimentions
(withou twobar)
(mm)
Length 2500 2500 2500 3200 3200 3500 3500
  Width 1750 1750 1750 1600 1600 1750 1750
  Height 2100 2100 2100 2000 2000 2200 2200
Weight Kg 1150 1150 1150 2200 2350 2500 2500
Wheel qty 2 2 2 4 4 4 4
Size and No. of outlet value G1″*2 G1″*2 G1″*2 G1″*1   
  G1 1/2″*1
G1″*1
   G1 1/2″*1
G1″*1     
G1 1/2″*1
G1″*1     
G1 1/2″*1
Diesel
Brand XICHAI XICHAI XICHAI YUCHAI YUCHAI YUCHAI YUCHAI
Model 4DW91-50GBG3U 4DW93-75GG3U 4DW93-75GG3U YC4A160-H300 YC4A160-H300 YC6J190-H300 YC6J190-H300
Rated power Kw 36.8 55 55 118 118 140 140
  hp 50 75 75 160 160 190 190
No. of cylinders 4 4 4 4 4 6 6
Engine speed rpm 2650 2400 2400 2200 2200 2200 2200
Oil capacity L 5 7 7 11 11 15 15
coolant capacity L 30 30 30 60 60 75 75
Battary V 12 24 24 24 24 24 24
Fuel tank capacity L 100 100 100 180 180 180 180

MODEL SUPC190-17 SUPC190-15-II SUPC220-15 SUPC220-13-II SUPC220-16-II SUPC220-17-II SUPC260-15-II
Machine
Free air delivery m³/min 10 15 15 17 15 13 22
  cfm 357 535 535 608 535 465 786
Normal working pressure bar 17 15 15 13 16 17 15
  psi 250 220 220 191 235 250 220
Dimentions
(withou twobar)
(mm)
Length 3500 3500 3500 3500 3500 3500 3700
  Width 1750 1750 1750 1750 1750 1750 1900
  Height 2200 2200 2200 2200 2200 2200 2350
Weight Kg 2500 2650 3100 3200 3200 3200 3500
Wheel qty 4 4 4 4 4 4 4
Size and No. of outlet value G1″*1     
G1 1/2″*1
G1″*1     
G1 1/2″*1
G1″*1     
G1 1/2″*1
G1″*1     
G1 1/2″*1
G1″*1     
G1 1/2″*1
G1″*1     
G1 1/2″*1
G1″*1     
G1 1/2″*1
Diesel
Brand YUCHAI YUCHAI YUCHAI YUCHAI YUCHAI YUCHAI YUCAI
Model YC6J190-H300 YC6J190-H300 YC6J220-T300 YC6J220-T300 YC6J220-T300 YC6J220-T300 YC6A260-H300
Rated power Kw 140 140 162 162 162 162 191
  hp 190 190 220 220 220 220 260
No. of cylinders 6 6 6 6 6 6 6
Engine speed rpm 2200 2200 2200 2200 2200 2200 2200
Oil capacity L 15 15 20 20 20 20 24
coolant capacity L 75 75 90 90 90 90 110
Battary V 24 24 24 24 24 24 24
Fuel tank capacity L 180 180 220 220 220 220 220

MODEL SUPC260-17-II SUPC260-22-II SUPC300-13-II SUPC300-17-II SUPC300-25-II SUPC420-25-II SUPC430-24-II SUPC500-25-II
Machine  
Free air delivery m³/min 17 14 28 22 17 25 29 33
  cfm 608 500 1000 786 608 893 1035 1180
Normal working pressure bar 17 22 13 17 25 25 24 25
  psi 250 324 191 250 368 368 353 396
Dimentions
(withou twobar)
(mm)
Length 3700 3700 3900 3900 3900 3600 3600 3600
  Width 1900 1900 2000 2000 2000 2000 2000 2000
  Height 2350 2350 2400 2400 2400 2500 2500 2500
Weight Kg 3500 3600 4000 4100 4200 4500 4600 4700
Wheel qty 4 4 4 4 4      
Size and No. of outlet value G1″*1     
G1 1/2″*1
G1″*1     
G1 1/2″*1
G1″*1     
G2″*1
G1″*1     
G2″*1
G1″*1     
G2″*1
G1″*1   G1 1/2″*1
  G2 1/2″*1
G1″*1   G1 1/2″*1
  G2 1/2″*1
G1″*1   G1 1/2″*1
  G2 1/2″*1
Diesel  
Brand YUCHAI YUCHAI YUCHAI YUCHAI YUCHAI YUCHAI YUCHAI YUCHAI
  YC6A260-H300 YC6A260-H300           YC6K560-KT31
Rated power Kw 191 191 221 221 221 309 320 375
  hp 260 260 300 300 300 420 430 500
No. of cylinders 6 6 6 6 6 6 6 6
Engine speed rpm 2200 2200 2000 2000 2000 1900 1900 1900
Oil capacity L 24 24 28 28 28 32 32 32
coolant capacity L 110 110 140 140 140 180 180 180
Battary V 24 24 24 24 24 24 24 24
Fuel tank capacity L 220 220 280 280 280 400 400 400

*Certifications

*Company Information

ZheJiang Compressor Import & Export Co.,Ltd is located in the logistics capital of China, 1 of the important birthplaces of Chinese civilization-HangZhou, ZheJiang Province. With professinal manufacturing experience and first -class comprehensive scientific and technological strength of the talent team, as the energy-saving compressor system leader and renowed in the industry.

We specializes in R & D and sales of power frequency ,permanent magnet frequency conversion ,two -stage compressor permanent magnet frequency conversion ,low -voltage and mobile screw air compressor . With a deep industry background , 1 step ahead ambition . With the professional enthusiasm for screw air compressor , team innovation , to meat the challenges of enterprise’s own determination and the rigorous attitude of excellence,products are strictly in accordance with IOS 9001 international quality procedures,to provide customers with energy -saving and reliable products .

We warmly welcomes people from all around the world to visit the company to guide the establishment of a wide range of business contacts and cooperation . Choosing HangZhou Atlas Air compressor Manufacturing Co.,Led.is to choose quality and service ,choose culture and taste ,choose a permanent and trustworthy partner !

*Packaging & Shipping

*Contact us

 

Lubrication Style: Lubricated
Cooling System: Air Cooling
Power Source: AC Power
Cylinder Position: Angular
Structure Type: Closed Type
Installation Type: Movable Type
Customization:
Available

|

air compressor

How Do Water-Lubricated Air Compressors Impact Compressed Air Quality?

Water-lubricated air compressors can have an impact on the quality of the compressed air they produce. Here’s a detailed explanation of how water-lubricated air compressors can affect compressed air quality:

Moisture Content:

  • Condensation: Water-lubricated compressors introduce moisture into the compressed air system. During the compression process, as the air cools downstream, moisture can condense and accumulate. This moisture can lead to issues such as corrosion, rust, and contamination of downstream equipment or processes.
  • Water Carryover: If the compressor’s water separation mechanisms are not efficient or if there are malfunctions in the water removal systems, water droplets or mist may carry over into the compressed air. This can negatively impact the quality of the compressed air and introduce moisture-related issues downstream.

Contamination:

  • Oil Contamination: In some water-lubricated compressors, there is a potential for oil to mix with the water used for lubrication. If oil and water emulsify or if there are leaks in the compressor system, oil contamination may occur. Oil-contaminated compressed air can have adverse effects on downstream processes, equipment, and products. It can lead to contamination, reduced performance of pneumatic components, and potential health and safety concerns.
  • Particulate Contamination: Water-lubricated compressors can introduce particulate matter, such as sediment, debris, or rust, into the compressed air system. This can occur if the water supply or water treatment systems are not adequately filtered or maintained. Particulate contamination can clog or damage pneumatic equipment, affect product quality, and cause operational issues in downstream applications.

Preventive Measures:

  • Water Separation: Water-lubricated compressors employ various water separation mechanisms to remove moisture from the compressed air. This includes moisture separators, water traps, or coalescing filters that are specifically designed to capture and remove water droplets or mist from the compressed air stream. Regular maintenance and inspection of these separation systems are necessary to ensure their proper functioning.
  • Air Treatment: Additional air treatment components, such as air dryers or desiccant systems, can be installed downstream of water-lubricated compressors to further reduce moisture content in the compressed air. These systems help to remove moisture that may have carried over from the compressor and ensure that the compressed air meets the required dryness standards for specific applications.
  • Proper Maintenance: Regular maintenance of water-lubricated compressors is essential to minimize the potential impact on compressed air quality. This includes routine inspection, cleaning, and replacement of filters, lubrication systems, and water separation components. Addressing any leaks, malfunctioning components, or system issues promptly can help maintain the integrity of the compressed air and prevent contamination or excessive moisture levels.

By implementing appropriate water separation mechanisms, air treatment systems, and maintenance practices, the impact of water-lubricated air compressors on compressed air quality can be minimized. It is important to consider the specific requirements of the application and follow industry standards and guidelines to ensure the desired compressed air quality is achieved.

air compressor

Are There Regulations Governing the Use of Water-Lubricated Air Compressors?

When it comes to the use of water-lubricated air compressors, there are several regulations and standards that govern their operation and ensure compliance with safety, environmental, and performance requirements. Here’s a detailed explanation of the regulations related to water-lubricated air compressors:

1. Occupational Safety and Health Administration (OSHA) Regulations:

OSHA is a regulatory agency in the United States that sets and enforces workplace safety and health standards. While OSHA does not have specific regulations solely dedicated to water-lubricated air compressors, they have general regulations that apply to all types of air compressors. These regulations include requirements for safe operation, maintenance, and guarding of equipment to protect workers from hazards such as electrical shocks, mechanical injuries, and exposure to hazardous substances.

2. Environmental Protection Agency (EPA) Regulations:

The EPA is responsible for implementing and enforcing environmental regulations in the United States. Although there are no specific regulations for water-lubricated air compressors, the EPA has regulations that govern the discharge of water and other substances into the environment. If the water-lubricated compressor system involves the use of cooling water or generates wastewater, it may be subject to regulations related to water pollution control, water treatment, and proper disposal of wastewater.

3. International Organization for Standardization (ISO) Standards:

The ISO develops international standards that provide guidelines and requirements for various industries and technologies. ISO 8573 is a standard that addresses the quality of compressed air used in different applications. This standard sets limits and specifications for various contaminants in compressed air, including water content. Water-lubricated air compressors need to comply with the requirements of ISO 8573 to ensure the produced compressed air meets the desired quality standards.

4. Manufacturer Guidelines and Recommendations:

In addition to regulatory requirements, it is essential to follow the guidelines and recommendations provided by the manufacturers of water-lubricated air compressors. Manufacturers typically provide instructions for installation, operation, maintenance, and safety precautions specific to their equipment. Adhering to these guidelines is crucial to ensure the safe and proper functioning of the equipment and to maintain warranty coverage.

It’s important to note that the specific regulations and standards governing water-lubricated air compressors may vary depending on the country or region. Therefore, it is advisable to consult the relevant regulatory agencies, industry organizations, and local authorities to ensure compliance with applicable regulations and standards in a particular jurisdiction.

By complying with the relevant regulations, standards, and manufacturer guidelines, users of water-lubricated air compressors can ensure the safe and efficient operation of their equipment while minimizing any potential environmental impacts.

air compressor

Advantages of Using Water as a Lubricant in Air Compressors

Water can be used as a lubricant in air compressors, offering several advantages over traditional lubricants such as oils or synthetic lubricants. Here are some of the advantages:

  1. Cost-effective: Water is a readily available and inexpensive resource, making it a cost-effective lubricant option for air compressors. Compared to oils or synthetic lubricants, water is significantly cheaper, which can result in cost savings for businesses and industries that heavily rely on air compressors.
  2. Environmentally friendly: Water is a non-toxic and environmentally friendly lubricant. It does not contain harmful chemicals or pollutants that can contribute to air or water pollution. Using water as a lubricant in air compressors reduces the risk of contamination and minimizes the environmental impact associated with traditional lubricants.
  3. Improved heat dissipation: Water has excellent heat transfer properties. It can absorb and dissipate heat more efficiently compared to oils or synthetic lubricants. Air compressors generate heat during operation, and using water as a lubricant helps to dissipate this heat effectively, preventing overheating and prolonging the lifespan of the compressor.
  4. Reduced fire hazard: Compared to oils or synthetic lubricants, water has a significantly higher flash point, which means it is less likely to ignite or contribute to fire hazards. This fire-resistant property of water makes it a safer lubricant choice, especially in environments where fire safety is a concern.
  5. Lower maintenance requirements: Water does not leave behind sticky residues or deposits, as some oils or synthetic lubricants might. This characteristic reduces the maintenance requirements of air compressors. It simplifies the cleaning process and reduces the frequency of lubricant changes, resulting in reduced downtime and maintenance costs.

Overall, using water as a lubricant in air compressors can offer significant advantages in terms of cost-effectiveness, environmental friendliness, heat dissipation, fire safety, and maintenance requirements.

China supplier Oil Free Less Oilless Direct Driven Diesel High Pressure Reciprocating Portable Screw Air Compressor   with Hot sellingChina supplier Oil Free Less Oilless Direct Driven Diesel High Pressure Reciprocating Portable Screw Air Compressor   with Hot selling
editor by CX 2023-12-13

China wholesaler Portable 400 CFM Diesel Driven Screw Air Compressor For Mining 12v air compressor

Product Description

Similar CHINAMFG Diesel Portable Screw Air Compressor  Advantages:


7 bar Similar CHINAMFG Diesel Portable Screw Air Compressor  Advantages:

Use Germany KAPP machine and German manufacturing technique to process the compression element, the components manufactured to the highest standards and precision aligned roller-bearings ensure long service life with maximum reliability.
 
Heavy-duty CHINAMFG diesel engine for extended operation.
 
Excellent components, for example, Germany MANN oil filter and CHINAMFG electronics for high performance.
 
Thick sound proofing for super low noise level.
 
Automatic operation system helps the operator to master the operating skills quickly, unattended operation and remote control are available.
 
Conform to CE, ISO9001 and energy saving certification, etc.
 
Applications: mining, hydropower, oil and gas exploitation, borehole, shipyard, construction, chemical industry, quarry, sandblasting, pipeline pressure test, public works, etc.

The Technical Parameter Of  Similar CHINAMFG Diesel Portable Screw Air Compressor 
 

Model Free Air Delivery Normal Working Pressure Weight        Dimensions         
(without towbar)
Diesel Engine Manu-facturer Diesel Engine Model
m3/min CFM bar(e) psig kg L(mm) W(mm) H(mm)
DACY-3.2 3.2 115 8 116 1000 2100 1500 1360 yangdong YSD490G
DACY-5.3/7 5.3 190 7 102 1600 2300 1790 1580 Cummins 4BT3.9-C80
DACY-5/10 5.0 177 10 145 1600 2300 1790 1580 4BT3.9-C80
DACY-6/7 6.0 212 7 102 1600 2300 1790 1580 4BT3.9-C80
DACY-7.5/7 7.5 265 7 102 1600 2300 1790 1580 4BT3.9-C80
DACY-8.5/10 8.5 300 10 145 1800 2600 1910 2015 4BTA3.9-C125
DACY-9/7 9.0 318 7 102 1800 2440 1910 1920 4BT3.9-C100
DACY-10/8 10.0 353 8 116 1800 2440 1910 1920 4BT3.9-C100
DACY-10/13 10.0 353 13 189 2050 3270 1910 2080 6BT5.9-C150
DACY-11/10 11 388 10 145 2050 3270 1910 2080 6BT5.9-C150
DACY-11/13 11 388 13 189 3600 3575 1700 2320 6BTA5.9-C180
DACY-12/7 12 424 7 102 2050 3270 1910 1950 6BT5.9-C150
DACY-12/10 12 424 10 145 2050 3270 1910 1950 6BT5.9-C150
DACY-12/13 12 424 13 189 2050 3400 1700 2320 6BTA5.9-C180
DACY-13/8 13 460 8 116 2050 3270 1910 2080 6BT5.9-C150
DACY-13/13 13 460 13 189 3600 3400 1700 2320 6BTA5.9-C180
DACY-15.5/10 15.5 547 10 145 3600 3400 1700 2320 6BTA5.9-C180
DACY-15/13 15 530 13 189 3600 3400 1700 2320 6BTA5.9-C180
DACY-15/16 15 530 16 232 4000 3390 1700 2640 6CTA8.3-C215
DACY-15/18 15 530 18 261 3500 3555 1750 2660 6CTA8.3-C260
DACY-17/7 17 600 7 102 3600 3400 1700 2320 6BTA5.9-C180
DACY-17/8 17 600 8 116 3600 3400 1700 2320 6BTA5.9-C180
DACY-17/13 17 600 13 189 4000 3390 1700 2640 6CTA8.3-C215
DACY-17/14.5 17 600 14.5 210 3500 3555 1750 2660 6CTA8.3-C260
DACY-17/16 17 600 16 232 3500 3555 1750 2660 6CTA8.3-C260
DACY-18/18 18 636 18 261 3300 4225 1980 2690 6LTAA8.9-C325
DACY-19/14.5 19 671 14.5 210 3300 4225 1980 2690 6LTAA8.9-C325
DACY-19/16 19 671 16 232 3300 4225 1980 2690 6LTAA8.9-C325
DACY-20/16 20 706 16 232 3300 4225 1980 2690 6CTA8.3-C215
DACY-21/8 21 742 8 116 4000 3390 1700 2640 6CTA8.3-C215
DACY-22/20 22 777 20 290 6500 4700 2300 2750 6LTAA9.5-C360-II
DACY-22.5/14 22.5 795 14 203 3300 4225 1980 2690 6LTAA8.9-C325
DACY-25.5/20 22.5 900 20 290 5500 4750 2100 2860 EQR400-K2
DACY-27/10 27 953 10 145 3300 4225 1980 2690 6LTAA8.9-C325
DACY-32/10 32 1130 10 145 6500 4700 2300 2750 6LTAA9.5-C360-II
DACY-33/35 33 1165 35 508 7200 5000 2200 3000 KTA19-P680
DACY-34/25 34 1200 25 363 6000 4510 2160 3150 KTA19-C600
DACY-39/25 39 1377 25 363 7200 5000 2200 2200 KTA19-P680
DACY-45/10 45 1590 10 145 6200 5000 2200 3150   QSZ13-C550

*) Specifications are subject to change without prior notice

DENAIR Factory

ZheJiang Denair(group)CO,.Ltd. is a Sino-German joint venture enterprise group integrating R&D,manufacturing and marketing.The company brought in advanced compressor R&D and manufacturing and marketing.The company brought in advanced compressor R&D and manufacturing technology of Germany CHINAMFG Group to make product development and large-scale production,including piston air compressors,double screw air compressors,Portable Air compressor,High and Medium Pressure Air Compressors, oil free air compressor and compressed air treatment equipment.

DENAIR Exhibitions:

We carefully selected for you the classic case

DENAIR Diesel Portable Air Compressor in Thailand

Project Name: Tunnel construction in Chiengmai, Thailand

Product Name: 10m3/min 13bar & 17m3/min 13bar diesel portable screw air compressor

Model No. & Qty: DACY-10/13 x 1, DACY-17/13 x 2

Working Time: From November, 2015 till now

Event: From November 18 to 24th, 2015, DENAIR service team Allen, Gao zhingmeng and CHINAMFG visited our VIP customer in Chiengmai, Thailand for Installation guide, commissioning & technical training for diesel portable air compressors. The 3 units of air compressor are used for supporting the drilling rigs. DENAIR professional service team and reliable products impressed on the customers at the working site. The main technical parameters of the mobile air compressors are as follows:

DACY-10/13 DENAIR Portable Air Compressor
Free air delivery: 10m3/min 353cfm
Working pressure: 13 bar 189psi
Wheel quantity: 2 wheels
Diesel engine brand: CHINAMFG (Global Warranty)
Diesel engine Model: 6BT5.9-C150
Rated power: 110KW 150HP

DACY-17/13 DENAIR Portable Air Compressor
Free air delivery: 17m3/min 600cfm
Working pressure: 13 bar 189psi
Wheel quantity: 4 wheels
Diesel engine brand: CHINAMFG (Global Warranty)
Diesel engine Model: 6CTA8.3-C215
Rated power: 160KW 215HP

FAQ:

Q1: Are you factory or trade company?  
A1: We are factory.

Q2: What the exactly address of your factory? 
A2: Our company is located in No. 6767, Tingfeng Rd. Xihu (West Lake) Dis.n District, ZheJiang  201502, China
And our factory is located in No. 386, YangzhuangBang Street, Pingxing Rd., Xindai Town,HangZhou,  ZHangZhoug Province, China  

Q3: Warranty terms of your machine? 
A3: Two years 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: How long will you take to arrange production? 
A5: 380V 50HZ we can delivery the goods within 10 days. Other electricity or other color we will delivery within 22 days

Q6: Can you accept OEM orders? 
A6: Yes, with professional design team, OEM orders are highly welcome.

Lubrication Style: Lubricated
Cooling System: Air Cooling
Power Source: Diesel
Customization:
Available

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air compressor

What is the impact of humidity on compressed air quality?

Humidity can have a significant impact on the quality of compressed air. Compressed air systems often draw in ambient air, which contains moisture in the form of water vapor. When this air is compressed, the moisture becomes concentrated, leading to potential issues in the compressed air. Here’s an overview of the impact of humidity on compressed air quality:

1. Corrosion:

High humidity in compressed air can contribute to corrosion within the compressed air system. The moisture in the air can react with metal surfaces, leading to rust and corrosion in pipes, tanks, valves, and other components. Corrosion not only weakens the structural integrity of the system but also introduces contaminants into the compressed air, compromising its quality and potentially damaging downstream equipment.

2. Contaminant Carryover:

Humidity in compressed air can cause carryover of contaminants. Water droplets formed due to condensation can carry particulates, oil, and other impurities present in the air. These contaminants can then be transported along with the compressed air, leading to fouling of filters, clogging of pipelines, and potential damage to pneumatic tools, machinery, and processes.

3. Decreased Efficiency of Pneumatic Systems:

Excessive moisture in compressed air can reduce the efficiency of pneumatic systems. Water droplets can obstruct or block the flow of air, leading to decreased performance of pneumatic tools and equipment. Moisture can also cause problems in control valves, actuators, and other pneumatic devices, affecting their responsiveness and accuracy.

4. Product Contamination:

In industries where compressed air comes into direct contact with products or processes, high humidity can result in product contamination. Moisture in compressed air can mix with sensitive products, leading to quality issues, spoilage, or even health hazards in industries such as food and beverage, pharmaceuticals, and electronics manufacturing.

5. Increased Maintenance Requirements:

Humidity in compressed air can increase the maintenance requirements of a compressed air system. Moisture can accumulate in filters, separators, and other air treatment components, necessitating frequent replacement or cleaning. Excessive moisture can also lead to the growth of bacteria, fungus, and mold within the system, requiring additional cleaning and maintenance efforts.

6. Adverse Effects on Instrumentation:

Humidity can adversely affect instrumentation and control systems that rely on compressed air. Moisture can disrupt the accuracy and reliability of pressure sensors, flow meters, and other pneumatic instruments, leading to incorrect measurements and control signals.

To mitigate the impact of humidity on compressed air quality, various air treatment equipment is employed, including air dryers, moisture separators, and filters. These devices help remove moisture from the compressed air, ensuring that the air supplied is dry and of high quality for the intended applications.

air compressor

What safety precautions should be taken when working with compressed air?

Working with compressed air requires adherence to certain safety precautions to prevent accidents and ensure the well-being of individuals involved. Here are some important safety measures to consider:

1. Personal Protective Equipment (PPE):

Wear appropriate PPE, including safety goggles or a face shield to protect eyes from flying debris or particles, hearing protection to reduce noise exposure, and gloves to safeguard hands from potential hazards.

2. Compressed Air Storage:

Avoid storing compressed air in containers that are not designed for this purpose, such as soda bottles or makeshift containers. Use approved and properly labeled air storage tanks or cylinders that can handle the pressure and are regularly inspected and maintained.

3. Pressure Regulation:

Ensure that the air pressure is regulated to a safe level suitable for the equipment and tools being used. High-pressure air streams can cause serious injuries, so it is important to follow the manufacturer’s recommendations and never exceed the maximum allowable pressure.

4. Air Hose Inspection:

Regularly inspect air hoses for signs of damage, such as cuts, abrasions, or leaks. Replace damaged hoses immediately to prevent potential accidents or loss of pressure.

5. Air Blowguns:

Exercise caution when using air blowguns. Never direct compressed air towards yourself or others, as it can cause eye injuries, hearing damage, or dislodge particles that may be harmful if inhaled. Always point blowguns away from people or any sensitive equipment or materials.

6. Air Tool Safety:

Follow proper operating procedures for pneumatic tools. Ensure that tools are in good working condition, and inspect them before each use. Use the appropriate accessories, such as safety guards or shields, to prevent accidental contact with moving parts.

7. Air Compressor Maintenance:

Maintain air compressors according to the manufacturer’s guidelines. Regularly check for leaks, clean or replace filters, and drain moisture from the system. Proper maintenance ensures the safe and efficient operation of the compressor.

8. Training and Education:

Provide adequate training and education to individuals working with compressed air. Ensure they understand the potential hazards, safe operating procedures, and emergency protocols. Encourage open communication regarding safety concerns and implement a culture of safety in the workplace.

9. Lockout/Tagout:

When performing maintenance or repairs on compressed air systems, follow lockout/tagout procedures to isolate the equipment from energy sources and prevent accidental startup. This ensures the safety of the individuals working on the system.

10. Proper Ventilation:

Ensure proper ventilation in enclosed areas where compressed air is used. Compressed air can displace oxygen, leading to a potential risk of asphyxiation. Adequate ventilation helps maintain a safe breathing environment.

By adhering to these safety precautions, individuals can minimize the risks associated with working with compressed air and create a safer work environment.

air compressor

Are there air compressors specifically designed for high-pressure applications?

Yes, there are air compressors specifically designed for high-pressure applications. These compressors are engineered to generate and deliver compressed air at significantly higher pressures than standard air compressors. Here are some key points about high-pressure air compressors:

1. Pressure Range: High-pressure air compressors are capable of producing compressed air at pressures typically ranging from 1000 to 5000 psi (pounds per square inch) or even higher. This is considerably higher than the typical range of 100 to 175 psi for standard air compressors.

2. Construction: High-pressure aircompressors feature robust construction and specialized components to withstand the higher pressures involved. They are designed with reinforced cylinders, pistons, valves, and seals that can handle the increased stress and prevent leaks or failures under high-pressure conditions.

3. Power: Generating high-pressure compressed air requires more power than standard compressors. High-pressure air compressors often have larger motors or engines to provide the necessary power to achieve the desired pressure levels.

4. Applications: High-pressure air compressors are utilized in various industries and applications where compressed air at elevated pressures is required. Some common applications include:

  • Industrial manufacturing processes that involve high-pressure air for operations such as air tools, pneumatic machinery, and equipment.
  • Gas and oil exploration and production, where high-pressure air is used for well drilling, well stimulation, and enhanced oil recovery techniques.
  • Scuba diving and underwater operations, where high-pressure air is used for breathing apparatus and underwater tools.
  • Aerospace and aviation industries, where high-pressure air is used for aircraft systems, testing, and pressurization.
  • Fire services and firefighting, where high-pressure air compressors are used to fill breathing air tanks for firefighters.

5. Safety Considerations: Working with high-pressure air requires adherence to strict safety protocols. Proper training, equipment, and maintenance are crucial to ensure the safe operation of high-pressure air compressors. It is important to follow manufacturer guidelines and industry standards for high-pressure applications.

When selecting a high-pressure air compressor, consider factors such as the desired pressure range, required flow rate, power source availability, and the specific application requirements. Consult with experts or manufacturers specializing in high-pressure compressed air systems to identify the most suitable compressor for your needs.

High-pressure air compressors offer the capability to meet the demands of specialized applications that require compressed air at elevated pressures. Their robust design and ability to deliver high-pressure air make them essential tools in various industries and sectors.

China wholesaler Portable 400 CFM Diesel Driven Screw Air Compressor For Mining   12v air compressorChina wholesaler Portable 400 CFM Diesel Driven Screw Air Compressor For Mining   12v air compressor
editor by CX 2023-11-06

China Custom Portable 8-35bar CHINAMFG Engine Diesel Roatry Screw Air Compressor For Construction portable air compressor

Product Description

DENAIR hot sale series diesel portable air compressors

DENAIR hot sale series diesel portable air compressors
Model Machine Diesel Engine
Free Air Delivery Normal Working Dimensions Weight  Manufacturer  Model Rated
 Pressure (without towbar)         power
  m3/min CFM bar(g) psig L*W*H(mm) kg KW
DACY-3.2/8 3.40  120 8 116 2263*1590*1543 9, China
Our factory is located in No. 366, YangzhuangBang Street, Pingxing Rd., Xindai Town, HangZhou, ZHangZhoug Province, China

Q3: Warranty terms of your machine? 
A3: Two years 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: How long will you take to arrange production? 
A5: 380V 50HZ we can delivery the goods within 10 days. Other electricity or other color we will delivery within 22 days

Q6: Can you accept OEM orders? 
A6: Yes, with professional design team, OEM orders are highly welcome.

 

Lubrication Style: Lubricated or Oil-Less
Cooling System: Air Cooling/Water Cooling
Power Source: Diesel Engine
Customization:
Available

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Currency: US$
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air compressor

How are air compressors utilized in the aerospace industry?

Air compressors play a crucial role in various applications within the aerospace industry. They are utilized for a wide range of tasks that require compressed air or gas. Here are some key uses of air compressors in the aerospace industry:

1. Aircraft Systems:

Air compressors are used in aircraft systems to provide compressed air for various functions. They supply compressed air for pneumatic systems, such as landing gear operation, braking systems, wing flap control, and flight control surfaces. Compressed air is also utilized for starting aircraft engines and for cabin pressurization and air conditioning systems.

2. Ground Support Equipment:

Air compressors are employed in ground support equipment used in the aerospace industry. They provide compressed air for tasks such as inflating aircraft tires, operating pneumatic tools for maintenance and repair, and powering air-driven systems for fueling, lubrication, and hydraulic operations.

3. Component Testing:

Air compressors are utilized in component testing within the aerospace industry. They supply compressed air for testing and calibrating various aircraft components, such as valves, actuators, pressure sensors, pneumatic switches, and control systems. Compressed air is used to simulate operating conditions and evaluate the performance and reliability of these components.

4. Airborne Systems:

In certain aircraft, air compressors are employed for specific airborne systems. For example, in military aircraft, air compressors are used for air-to-air refueling systems, where compressed air is utilized to transfer fuel between aircraft in mid-air. Compressed air is also employed in aircraft de-icing systems, where it is used to inflate inflatable de-icing boots on the wing surfaces to remove ice accumulation during flight.

5. Environmental Control Systems:

Air compressors play a critical role in the environmental control systems of aircraft. They supply compressed air for air conditioning, ventilation, and pressurization systems, ensuring a comfortable and controlled environment inside the aircraft cabin. Compressed air is used to cool and circulate air, maintain desired cabin pressure, and control humidity levels.

6. Engine Testing:

In the aerospace industry, air compressors are utilized for engine testing purposes. They provide compressed air for engine test cells, where aircraft engines are tested for performance, efficiency, and durability. Compressed air is used to simulate different operating conditions and loads on the engine, allowing engineers to assess its performance and make necessary adjustments or improvements.

7. Oxygen Systems:

In aircraft, air compressors are involved in the production of medical-grade oxygen for onboard oxygen systems. Compressed air is passed through molecular sieve beds or other oxygen concentrator systems to separate oxygen from other components of air. The generated oxygen is then supplied to the onboard oxygen systems, ensuring a sufficient and continuous supply of breathable oxygen for passengers and crew at high altitudes.

It is important to note that air compressors used in the aerospace industry must meet stringent quality and safety standards. They need to be reliable, efficient, and capable of operating under demanding conditions to ensure the safety and performance of aircraft systems.

air compressor

What is the impact of altitude on air compressor performance?

The altitude at which an air compressor operates can have a significant impact on its performance. Here are the key factors affected by altitude:

1. Decreased Air Density:

As altitude increases, the air density decreases. This means there is less oxygen available per unit volume of air. Since air compressors rely on the intake of atmospheric air for compression, the reduced air density at higher altitudes can lead to a decrease in compressor performance.

2. Reduced Airflow:

The decrease in air density at higher altitudes results in reduced airflow. This can affect the cooling capacity of the compressor, as lower airflow hampers the dissipation of heat generated during compression. Inadequate cooling can lead to increased operating temperatures and potential overheating of the compressor.

3. Decreased Power Output:

Lower air density at higher altitudes also affects the power output of the compressor. The reduced oxygen content in the air can result in incomplete combustion, leading to decreased power generation. As a result, the compressor may deliver lower airflow and pressure than its rated capacity.

4. Extended Compression Cycle:

At higher altitudes, the air compressor needs to work harder to compress the thinner air. This can lead to an extended compression cycle, as the compressor may require more time to reach the desired pressure levels. The longer compression cycle can affect the overall efficiency and productivity of the compressor.

5. Pressure Adjustments:

When operating an air compressor at higher altitudes, it may be necessary to adjust the pressure settings. As the ambient air pressure decreases with altitude, the compressor’s pressure gauge may need to be recalibrated to maintain the desired pressure output. Failing to make these adjustments can result in underinflated tires, improper tool performance, or other issues.

6. Compressor Design:

Some air compressors are specifically designed to handle higher altitudes. These models may incorporate features such as larger intake filters, more robust cooling systems, and adjusted compression ratios to compensate for the reduced air density and maintain optimal performance.

7. Maintenance Considerations:

Operating an air compressor at higher altitudes may require additional maintenance and monitoring. It is important to regularly check and clean the intake filters to ensure proper airflow. Monitoring the compressor’s operating temperature and making any necessary adjustments or repairs is also crucial to prevent overheating and maintain efficient performance.

When using an air compressor at higher altitudes, it is advisable to consult the manufacturer’s guidelines and recommendations specific to altitude operations. Following these guidelines and considering the impact of altitude on air compressor performance will help ensure safe and efficient operation.

air compressor

Are there air compressors specifically designed for high-pressure applications?

Yes, there are air compressors specifically designed for high-pressure applications. These compressors are engineered to generate and deliver compressed air at significantly higher pressures than standard air compressors. Here are some key points about high-pressure air compressors:

1. Pressure Range: High-pressure air compressors are capable of producing compressed air at pressures typically ranging from 1000 to 5000 psi (pounds per square inch) or even higher. This is considerably higher than the typical range of 100 to 175 psi for standard air compressors.

2. Construction: High-pressure aircompressors feature robust construction and specialized components to withstand the higher pressures involved. They are designed with reinforced cylinders, pistons, valves, and seals that can handle the increased stress and prevent leaks or failures under high-pressure conditions.

3. Power: Generating high-pressure compressed air requires more power than standard compressors. High-pressure air compressors often have larger motors or engines to provide the necessary power to achieve the desired pressure levels.

4. Applications: High-pressure air compressors are utilized in various industries and applications where compressed air at elevated pressures is required. Some common applications include:

  • Industrial manufacturing processes that involve high-pressure air for operations such as air tools, pneumatic machinery, and equipment.
  • Gas and oil exploration and production, where high-pressure air is used for well drilling, well stimulation, and enhanced oil recovery techniques.
  • Scuba diving and underwater operations, where high-pressure air is used for breathing apparatus and underwater tools.
  • Aerospace and aviation industries, where high-pressure air is used for aircraft systems, testing, and pressurization.
  • Fire services and firefighting, where high-pressure air compressors are used to fill breathing air tanks for firefighters.

5. Safety Considerations: Working with high-pressure air requires adherence to strict safety protocols. Proper training, equipment, and maintenance are crucial to ensure the safe operation of high-pressure air compressors. It is important to follow manufacturer guidelines and industry standards for high-pressure applications.

When selecting a high-pressure air compressor, consider factors such as the desired pressure range, required flow rate, power source availability, and the specific application requirements. Consult with experts or manufacturers specializing in high-pressure compressed air systems to identify the most suitable compressor for your needs.

High-pressure air compressors offer the capability to meet the demands of specialized applications that require compressed air at elevated pressures. Their robust design and ability to deliver high-pressure air make them essential tools in various industries and sectors.

China Custom Portable 8-35bar CHINAMFG Engine Diesel Roatry Screw Air Compressor For Construction   portable air compressorChina Custom Portable 8-35bar CHINAMFG Engine Diesel Roatry Screw Air Compressor For Construction   portable air compressor
editor by CX 2023-10-26