Product Description
Diesel Engine Drive Portable Air Compressor
Our Diesel engine type portable screw air compressor
Application:
Widely used in mining, water conservancy, transportation, shipbuilding, urban construction, energy, military and other industries, and well received by customers for high efficiency, energy saving, safe and stable, in line with the requirements of environmental protection equipment.
Products include diesel driven type CHINAMFG machine, motor driven type CHINAMFG machine, power range of 33-348KW, exhaust air capacity of 35m3/min, exhaust pressure up to 35Bar.
Advantages:
1. Diesel engine:High efficiency and energy saving, safety, durability, power reserve enough, adopt CHINAMFG brands of Cummings engine. Comply with Euro II emission requirements, and the EU E – mark standard emission certification.
2. Adopt twin rotor/screw air end for compression air.
Have Features of Strong power, Safety and stability, Economical and environmental friendly.
3. Cooling system
Adopt high performance plate fin structure, can use in high temperature environment, can run for a long time at -20-50 extremely cold or hot climates, and with safety protection cover.
4. Movable system
☆ Adopt adjustable height and rotatable supporting legs, very suitable for outdoor field operation under various working conditions.
☆ Heavy duty machine with 4 wheels, with heavy shock absorption, more flexible.
5. Information safety
Equipped with monitoring system, can monitor machine operation status in any time.
With number of data display, monitoring and alarm stop function.
6. Advanced waterproof and dust proof function
Machine control, each access door and the unit group of vertical plate, all adopt rainproof and dustproof design, prevent the entry of rain or dust, greatly improve the protection level.
7. Adopt scientific technology to achieve sound absorption and shock absorption, can operation under low noise.
8. Can meet the application of altitude above 4500m, temperature of as high as 55 degrees C, and extreme environment of 55% oxygen content.
9. Easy maintenance.
Technical parameter of Movable screw air compressor ( driven by diesel engine):
| Model | Air displacemen (m3/min) | Exhause pressure (Mpa) | Power (Kw) | Outlet pipe size | Dimensions (mm) | Weight (Kg) |
| LGCY-6/13F | 6 | 1.3 | 70 | 2-G1 1-G2 | 2640*1550*1960 | 1700 |
| LGCY-7/10F | 7 | 1 | 70 | 2-G1 1-G2 | 2640*1550*1960 | 1700 |
| LGCY-8/8F | 8 | 0.8 | 70 | 2-G1 1-G2 | 2640*1550*1960 | 1700 |
| LGCY-11/13F | 11 | 1.3 | 118 | 2-G1 1-G2 | 2640*1550*1960 | 2300 |
| LGCY-12.3/10F | 12.3 | 1 | 118 | 2-G1 1-G2 | 2640*1550*1960 | 2300 |
| LGCY-13/8F | 13 | 0.8 | 118 | 2-G1 1-G2 | 2640*1550*1960 | 2300 |
| LGCY-13/13F | 13 | 1.3 | 132 | 2-G1 1-G2 | 3500*2000*2040 | 2500 |
| LGCY-14/12F | 14 | 1.2 | 132 | 2-G1 1-G2 | 3500*2000*2040 | 2500 |
| LGCY-17/8F | 17 | 0.8 | 132 | 2-G1 1-G2 | 3500*2000*2040 | 2500 |
| LGCY-20/7F | 20 | 0.7 | 145 | 2-G1 1-G2 | 3500*2000*2040 | 4400 |
| LGCY-20/15F | 20 | 1.5 | 264 | 2-G1 1-G2 | 4300*2100*2700 | 4400 |
| LGCY-26/20F | 26 | 2 | 288 | 2-G1 1-G2 | 4300*2100*2700 | 4400 |
| LGCY-21/13F | 21 | 1.3 | 250 | 2-G1 1-G2 | 4300*2100*2700 | 4400 |
| LGCY-25/10F | 25 | 1 | 250 | 2-G1 1-G2 | 4300*2100*2700 | 4400 |
| LGCY-18/17F | 18 | 1.7 | 250 | 2-G1 1-G2 | 4300*2100*2700 | 4400 |
| LGCY-25/20F | 25 | 2 | 264 | 2-G1 1-G2 | 4300*2100*2700 | 5500 |
Technical parameter of Movable screw air compressor ( driven by electric motor):
| Model | Air displacemen (m3/min) | Exhause pressure (Mpa) | Power (Kw) | Outlet pipe size | Dimensions (mm) |
| LGDY 37 | 6.3/5.6/4.8 | 0.8/1.0/1.3 | 37 | 2-G1 1-G2 | 2210*1900*1420 |
| LGDY 45 | 7.5/6.8/5.8 | 0.8/1.0/1.3 | 45 | 2-G1 1-G2 | 2850*1520*1500 |
| LGDY 55 | 9.8/8.8/7.2 | 0.8/1.0/1.3 | 55 | 2-G1 1-G2 | 2500*1905*1840 |
| LGDY 75 | 12.3/11.0/9.0 | 0.8/1.0/1.3 | 75 | 2-G1 1-G2 | 2500*1905*1840 |
| LGDY 90 | 15.6/14.2/11.5 | 0.8/1.0/1.3 | 90 | 2-G1 1-G2 | 2640*1550*1860 |
| LGDY 110 | 20.0/17.5/14.5 | 0.8/1.0/1.3 | 110 | 2-G1 1-G2 | 3550*1740*2100 |
| LGDY 132 | 23/21/18.1 | 0.8/1.0/1.3 | 132 | 2-G1 1-G2 | 3550*1740*2100 |
| LGDY 160 | 27.1/25.2/21.2 | 0.8/1.0/1.3 | 160 | 2-G1 1-G2 | 3870*1820*2200 |
| LGDY 200 | 33.3/30.6/26.3 | 0.8/1.0/1.3 | 200 | 2-G1 1-G2 | 4100*2050*2300 |
Our factory and workshop:
After sales service:
1. Providing professional air compression program designing for free.
2. Providing our factory original machine parts at lowest price after machine sales.
3. Providing training and guidance for free, customers can send their staff to our factory to learn how to operate the machines.
4. Warranty period: the screw main machine is 1 year, the bearing is 1 year, the wear parts of air intake valve, electric components, electromagnetic valve, rate valve are 6 months
5. The air filter, oil filter, oil-water separator, lubricating oil, rubber parts and etc. are not included in warranty range.
Certification and patents of our air compressor
FAQ:
Q1: Are you factory or trade company?
A1: We are factory.
Q2: Warranty terms of your machine?
A2: One year warranty for the machine and technical support according to your needs.
Q3: Will you provide some spare parts of the machines?
A3: Yes, of course.
Q4: How long will you take to arrange production?
A4: 380V 50HZ we can delivery the goods within 20 days. Other electricity or other color we will delivery within 30 days.
Q5: Can you accept OEM orders?
A5: Yes, with professional design team, OEM orders are highly welcome!
| After-sales Service: | Online Techinal Support or Remote Debuging |
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| Warranty: | 12-24 Month |
| Lubrication Style: | Lubricated |
| 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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How are air compressors utilized in pharmaceutical manufacturing?
Air compressors play a crucial role in pharmaceutical manufacturing, where they are utilized for various critical applications. The pharmaceutical industry requires a reliable source of clean and compressed air to ensure the safety, efficiency, and quality of its processes. Here’s an overview of how air compressors are utilized in pharmaceutical manufacturing:
1. Manufacturing Processes:
Air compressors are used in numerous manufacturing processes within the pharmaceutical industry. Compressed air is employed for tasks such as mixing and blending of ingredients, granulation, tablet compression, coating, and encapsulation of pharmaceutical products. The controlled delivery of compressed air facilitates precise and consistent manufacturing processes, ensuring the production of high-quality pharmaceuticals.
2. Instrumentation and Control Systems:
Pharmaceutical manufacturing facilities rely on compressed air for powering instrumentation and control systems. Compressed air is used to operate pneumatic valves, actuators, and control devices that regulate the flow of fluids, control temperature and pressure, and automate various processes. The clean and dry nature of compressed air makes it ideal for maintaining the integrity and accuracy of these critical control mechanisms.
3. Packaging and Filling:
Air compressors are employed in pharmaceutical packaging and filling processes. Compressed air is used to power machinery and equipment for bottle cleaning, labeling, capping, and sealing of pharmaceutical products. Compressed air provides the necessary force and precision for efficient and reliable packaging, ensuring product safety and compliance.
4. Cleanroom Environments:
Pharmaceutical manufacturing often takes place in controlled cleanroom environments to prevent contamination and maintain product quality. Air compressors are used to supply clean and filtered compressed air to these cleanrooms, ensuring a controlled and sterile environment for the production of pharmaceuticals. Compressed air is also utilized in cleanroom air showers and air curtains for personnel and material decontamination.
5. Laboratory Applications:
In pharmaceutical laboratories, air compressors are utilized for various applications. Compressed air is used in laboratory instruments, such as gas chromatographs, mass spectrometers, and other analytical equipment. It is also employed in clean air cabinets, fume hoods, and laminar flow benches, providing a controlled and clean environment for testing, analysis, and research.
6. HVAC Systems:
Air compressors are involved in heating, ventilation, and air conditioning (HVAC) systems in pharmaceutical manufacturing facilities. Compressed air powers the operation of HVAC controls, dampers, actuators, and air handling units, ensuring proper air circulation, temperature control, and environmental conditions in various manufacturing areas.
By utilizing air compressors in pharmaceutical manufacturing, the industry can maintain strict quality standards, enhance operational efficiency, and ensure the safety and efficacy of pharmaceutical products.
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How does the horsepower of an air compressor affect its capabilities?
The horsepower of an air compressor is a crucial factor that directly impacts its capabilities and performance. Here’s a closer look at how the horsepower rating affects an air compressor:
Power Output:
The horsepower rating of an air compressor indicates its power output or the rate at which it can perform work. Generally, a higher horsepower rating translates to a greater power output, allowing the air compressor to deliver more compressed air per unit of time. This increased power output enables the compressor to operate pneumatic tools and equipment that require higher air pressure or greater airflow.
Air Pressure:
The horsepower of an air compressor is directly related to the air pressure it can generate. Air compressors with higher horsepower ratings have the capacity to produce higher air pressures. This is particularly important when operating tools or machinery that require specific air pressure levels to function optimally. For example, heavy-duty pneumatic tools like jackhammers or impact wrenches may require higher air pressure to deliver the necessary force.
Air Volume:
In addition to air pressure, the horsepower of an air compressor also affects the air volume or airflow it can provide. Higher horsepower compressors can deliver greater volumes of compressed air, measured in cubic feet per minute (CFM). This increased airflow is beneficial when using pneumatic tools that require a continuous supply of compressed air, such as paint sprayers or sandblasters.
Duty Cycle:
The horsepower rating of an air compressor can also influence its duty cycle. The duty cycle refers to the amount of time an air compressor can operate continuously before it needs to rest and cool down. Higher horsepower compressors often have larger and more robust components, allowing them to handle heavier workloads and operate for longer periods without overheating. This is particularly important in demanding applications where continuous and uninterrupted operation is required.
Size and Portability:
It’s worth noting that the horsepower rating can also affect the physical size and portability of an air compressor. Higher horsepower compressors tend to be larger and heavier due to the need for more substantial motors and components to generate the increased power output. This can impact the ease of transportation and maneuverability, especially in portable or mobile applications.
When selecting an air compressor, it is essential to consider the specific requirements of your intended applications. Factors such as desired air pressure, airflow, duty cycle, and portability should be taken into account. It’s important to choose an air compressor with a horsepower rating that aligns with the demands of the tools and equipment you plan to operate, ensuring optimal performance and efficiency.
Consulting the manufacturer’s specifications and guidelines can provide valuable information on how the horsepower rating of an air compressor corresponds to its capabilities and suitability for different tasks.
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What is the difference between a piston and rotary screw compressor?
Piston compressors and rotary screw compressors are two common types of air compressors with distinct differences in their design and operation. Here’s a detailed explanation of the differences between these two compressor types:
1. Operating Principle:
- Piston Compressors: Piston compressors, also known as reciprocating compressors, use one or more pistons driven by a crankshaft to compress air. The piston moves up and down within a cylinder, creating a vacuum during the intake stroke and compressing the air during the compression stroke.
- Rotary Screw Compressors: Rotary screw compressors utilize two intermeshing screws (rotors) to compress air. As the male and female screws rotate, the air is trapped between them and gradually compressed as it moves along the screw threads.
2. Compression Method:
- Piston Compressors: Piston compressors achieve compression through a positive displacement process. The air is drawn into the cylinder and compressed as the piston moves back and forth. The compression is intermittent, occurring in discrete cycles.
- Rotary Screw Compressors: Rotary screw compressors also employ a positive displacement method. The compression is continuous as the rotating screws create a continuous flow of air and compress it gradually as it moves along the screw threads.
3. Efficiency:
- Piston Compressors: Piston compressors are known for their high efficiency at lower flow rates and higher pressures. They are well-suited for applications that require intermittent or variable air demand.
- Rotary Screw Compressors: Rotary screw compressors are highly efficient for continuous operation and are designed to handle higher flow rates. They are often used in applications with a constant or steady air demand.
4. Noise Level:
- Piston Compressors: Piston compressors tend to generate more noise during operation due to the reciprocating motion of the pistons and valves.
- Rotary Screw Compressors: Rotary screw compressors are generally quieter in operation compared to piston compressors. The smooth rotation of the screws contributes to reduced noise levels.
5. Maintenance:
- Piston Compressors: Piston compressors typically require more frequent maintenance due to the higher number of moving parts, such as pistons, valves, and rings.
- Rotary Screw Compressors: Rotary screw compressors have fewer moving parts, resulting in lower maintenance requirements. They often have longer service intervals and can operate continuously for extended periods without significant maintenance.
6. Size and Portability:
- Piston Compressors: Piston compressors are available in both smaller portable models and larger stationary units. Portable piston compressors are commonly used in construction, automotive, and DIY applications.
- Rotary Screw Compressors: Rotary screw compressors are typically larger and more suitable for stationary installations in industrial and commercial settings. They are less commonly used in portable applications.
These are some of the key differences between piston compressors and rotary screw compressors. The choice between the two depends on factors such as required flow rate, pressure, duty cycle, efficiency, noise level, maintenance needs, and specific application requirements.


editor by CX 2023-10-26