China Professional 2023 Hot Sales 7.5kw Portable Oil-Free Vortex Air Compressor air compressor oil

Product Description

specifications HK-Q08/08-S1
Exhaust volume m ³/ min 0.8
Power(KW) 7.5
pressure
(Mpa)
0.8/1.0
External dimensions 1170*700*1080
host
(Pcs)
2*04
noise
dB
60±2
weight
(KG)
380
outlet size 1″
notes box-type

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HangZhou CHINAMFG Oil Free Compressor Co., Ltd. was established in 2016. The factory is located in the famous oil free compressor production base in China (HangZhou), providing safe and reliable medical grade 0 oil free vortex air compressors to meet various application industries, including medical gas, pharmaceuticals, food and beverage, cosmetics, electronic industry, chemical industry, laboratory, biological fermentation,  environmental protection, and other general industries. 

Why choose CHINAMFG air compressor
1. Products have past the German TUV classo, IP67, EMC and salt spray test certification.
2. Oil free, to avoid oil leakage problem completely and oil in the compressed ai.
3.Avoid regularly clean oil discharge and waste oil processing of environmental protection, to achieve zero emissions.
4.Continuous scroll, high efficiency , low energy consumption.
5.Easy maintenance, less time consuming, it only takes 2 hours each year for preventive maintenance.
6.Failure rate is low, without oil emulsification phenomenon, maintenance is convenient and simple.
7.Dynamic and static scroll does not contact during working, low vibration, low noise.
8.Scroll air end has simple structure, less parts, less wearing parts, greatly reduces the possibility replacing parts, with high durability.Robust structure design high quality air supply capa bitity can improve reliability
Machine Parts

Serial Number specifications Exhaust volume m ³/ min Power(KW) pressure
(Mpa)
External dimensions host
(Pcs)
noise
dB
weight
(KG)
outlet size
 
notes
 
1 HK-D04/08-S1 0.4 3.7 08./1.0 730*610*880 1*04 55±2 200 3/4ball valve box-type
 
2 HK-D04/08-J3 0.4 3.7 08./1.0 1300*840*1480 1*04 55±2 300 3/4ball valve External integrated

200L

3 HK-D04/08-S2 0.4 3.7 08./1.0 1000*700*1500 1*4 55±2 350 3/4ball valve Built in integrated

50L

4 HK-D06/08-S1 0.6 5.5 08./1.0 730*610*880 1*06 58±2 210 3/4ball valve box-type
5 HK-D06/08-J3 0.6 5.5 08./1.0 1300*840*1480 1*06 58±2 310 3/4ball valve External integrated

200L

6 HK-D06/08-S2 0.6 5.5 08./1.0 1000*700*1500 1*06 58±2 360 3/4ball valve Built in integrated

50L

7 HK-Q08/08-S1 0.8 7.5 08./1.0 1170*700*1080 2*04 60±2 380 1″ box-type
8 HK-Q08/08-J7 0.8 7.5 08./1.0 1755*840*1640 2*04 60±2 480 1″ External integrated

200L

9 HK-Q08/08-J8 0.8 7.5 08./1.0 1700*800*1700 2*04 60±2 500 1″ Built in integrated

200L

10 HK-Z12/08-S1 1.2 11 08./1.0 1170*700*1080 2*06 62±2 400 1″ box-type
11 HK-Z12/08-J7 1.2 11 08./1.0 1755*840*1640 2*06 62±2 500 1″ External integrated

200L

12 HK-Z12/08-J8 1.2 11 08./1.0 1700*800*1700 2*06 62±2 550 1″ Built in integrated

200L

13 HK-Q16/08-S1 1.6 15 08./1.0 1100x700x1750 4*04 65±2 500 1″ box-type
14 HK-Z18/08-S1 1.8 16.5 08./1.0 1170*700*1550 3*06 65±2 600 1″ box-type
15 HK-Z24/08-S1 2.4 22 08./1.0 1550*1140*1075 4*06 68±2 800 1.5″ box-type
16 HK-Z30/08-S1 3 27.5 08./1.0 1550*1140*1550 5*06 70±2 1080 1.5″ box-type
17 HK-Z36/08-S1 3.6 33 08./1.0 1550*1140*1550 6*06 70±2 1200 1.5″ box-type
18 HK-Z42/08-S1 4.2 38.5 08./1.0 2150*1450*15800 7*06 72±2 1400 2.0″ box-type
19 HK-Z48/08-S1 4.8 44 08./1.0 2150*1450*1580 8*06 72±2 1500 2.0″ box-type
20 HK-Z54/08-S1 5.4 49.5 08./1.0 2150*1450*1580 9*06 72±2 1650 2.0″ box-type

 
FAQ

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

Q2: What the exactly address of your factory?
A2: Our factory is located in Jiabao Industrial Park, HangZhou City, ZheJiang Province, 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:Are you support customization
A5:Yes, supported
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After-sales Service: 24/7 Service Support
Warranty: Unit 1 Year
Installation Type: Stationary Type
Lubrication Style: Oil-free
Cylinder Position: Horizontal
Cooling System: Air Cooling
Customization:
Available

|

air compressor

How does variable speed drive technology improve air compressor efficiency?

Variable Speed Drive (VSD) technology improves air compressor efficiency by allowing the compressor to adjust its motor speed to match the compressed air demand. This technology offers several benefits that contribute to energy savings and enhanced overall system efficiency. Here’s how VSD technology improves air compressor efficiency:

1. Matching Air Demand:

Air compressors equipped with VSD technology can vary the motor speed to precisely match the required compressed air output. Traditional fixed-speed compressors operate at a constant speed regardless of the actual demand, leading to energy wastage during periods of lower air demand. VSD compressors, on the other hand, ramp up or down the motor speed to deliver the necessary amount of compressed air, ensuring optimal energy utilization.

2. Reduced Unloaded Running Time:

Fixed-speed compressors often run unloaded during periods of low demand, where they continue to consume energy without producing compressed air. VSD technology eliminates or significantly reduces this unloaded running time by adjusting the motor speed to closely follow the air demand. As a result, VSD compressors minimize energy wastage during idle periods, leading to improved efficiency.

3. Soft Starting:

Traditional fixed-speed compressors experience high inrush currents during startup, which can strain the electrical system and cause voltage dips. VSD compressors utilize soft starting capabilities, gradually ramping up the motor speed instead of instantly reaching full speed. This soft starting feature reduces mechanical and electrical stress, ensuring a smooth and controlled startup, and minimizing energy spikes.

4. Energy Savings at Partial Load:

In many applications, compressed air demand varies throughout the day or during different production cycles. VSD compressors excel in such scenarios by operating at lower speeds during periods of lower demand. Since power consumption is proportional to motor speed, running the compressor at reduced speeds significantly reduces energy consumption compared to fixed-speed compressors that operate at a constant speed regardless of the demand.

5. Elimination of On/Off Cycling:

Fixed-speed compressors often use on/off cycling to adjust the compressed air output. This cycling can result in frequent starts and stops, which consume more energy and cause mechanical wear. VSD compressors eliminate the need for on/off cycling by continuously adjusting the motor speed to meet the demand. By operating at a consistent speed within the required range, VSD compressors minimize energy losses associated with frequent cycling.

6. Enhanced System Control:

VSD compressors offer advanced control capabilities, allowing for precise monitoring and adjustment of the compressed air system. These systems can integrate with sensors and control algorithms to maintain optimal system pressure, minimize pressure fluctuations, and prevent excessive energy consumption. The ability to fine-tune the compressor’s output based on real-time demand contributes to improved overall system efficiency.

By utilizing variable speed drive technology, air compressors can achieve significant energy savings, reduce operational costs, and enhance their environmental sustainability by minimizing energy wastage and optimizing efficiency.

air compressor

What are the environmental considerations when using air compressors?

When using air compressors, there are several environmental considerations to keep in mind. Here’s an in-depth look at some of the key factors:

Energy Efficiency:

Energy efficiency is a crucial environmental consideration when using air compressors. Compressing air requires a significant amount of energy, and inefficient compressors can consume excessive power, leading to higher energy consumption and increased greenhouse gas emissions. It is important to choose energy-efficient air compressors that incorporate features such as Variable Speed Drive (VSD) technology and efficient motor design, as they can help minimize energy waste and reduce the carbon footprint.

Air Leakage:

Air leakage is a common issue in compressed air systems and can contribute to energy waste and environmental impact. Leaks in the system result in the continuous release of compressed air, requiring the compressor to work harder and consume more energy to maintain the desired pressure. Regular inspection and maintenance of the compressed air system to detect and repair leaks can help reduce air loss and improve overall energy efficiency.

Noise Pollution:

Air compressors can generate significant noise levels during operation, which can contribute to noise pollution. Prolonged exposure to high noise levels can have detrimental effects on human health and well-being and can also impact the surrounding environment and wildlife. It is important to consider noise reduction measures such as sound insulation, proper equipment placement, and using quieter compressor models to mitigate the impact of noise pollution.

Emissions:

While air compressors do not directly emit pollutants, the electricity or fuel used to power them can have an environmental impact. If the electricity is generated from fossil fuels, the associated emissions from power plants contribute to air pollution and greenhouse gas emissions. Choosing energy sources with lower emissions, such as renewable energy, can help reduce the environmental impact of operating air compressors.

Proper Waste Management:

Proper waste management is essential when using air compressors. This includes the appropriate disposal of compressor lubricants, filters, and other maintenance-related materials. It is important to follow local regulations and guidelines for waste disposal to prevent contamination of soil, water, or air and minimize the environmental impact.

Sustainable Practices:

Adopting sustainable practices can further reduce the environmental impact of using air compressors. This can include implementing preventive maintenance programs to optimize performance, reducing idle time, and promoting responsible use of compressed air by avoiding overpressurization and optimizing system design.

By considering these environmental factors and taking appropriate measures, it is possible to minimize the environmental impact associated with the use of air compressors. Choosing energy-efficient models, addressing air leaks, managing waste properly, and adopting sustainable practices can contribute to a more environmentally friendly operation.

air compressor

How do you choose the right size of air compressor for your needs?

Choosing the right size of air compressor is essential to ensure optimal performance and efficiency for your specific needs. Here are some factors to consider when selecting the appropriate size:

1. Air Demand: Determine the air demand requirements of your applications. Calculate the total CFM (Cubic Feet per Minute) needed by considering the air consumption of all the pneumatic tools and equipment that will be operated simultaneously. Choose an air compressor with a CFM rating that meets or exceeds this total demand.

2. Pressure Requirements: Consider the required operating pressure for your applications. Check the PSI (Pounds per Square Inch) rating of the tools and equipment you will be using. Ensure that the air compressor you choose can deliver the necessary pressure consistently.

3. Duty Cycle: Evaluate the duty cycle of the air compressor. The duty cycle represents the percentage of time the compressor can operate within a given time period without overheating or experiencing performance issues. If you require continuous or heavy-duty operation, choose a compressor with a higher duty cycle.

4. Power Source: Determine the available power source at your location. Air compressors can be powered by electricity or gasoline engines. Ensure that the chosen compressor matches the available power supply and consider factors such as voltage, phase, and fuel requirements.

5. Portability: Assess the portability requirements of your applications. If you need to move the air compressor frequently or use it in different locations, consider a portable or wheeled compressor that is easy to transport.

6. Space and Noise Constraints: Consider the available space for installation and the noise restrictions in your working environment. Choose an air compressor that fits within the allocated space and meets any noise regulations or requirements.

7. Future Expansion: Anticipate any potential future expansions or increases in air demand. If you expect your air demand to grow over time, it may be wise to choose a slightly larger compressor to accommodate future needs and avoid the need for premature replacement.

8. Budget: Consider your budgetary constraints. Compare the prices of different air compressor models while ensuring that the chosen compressor meets your specific requirements. Keep in mind that investing in a higher-quality compressor may result in better performance, durability, and long-term cost savings.

By considering these factors and evaluating your specific needs, you can choose the right size of air compressor that will meet your air demand, pressure requirements, and operational preferences, ultimately ensuring efficient and reliable performance.

China Professional 2023 Hot Sales 7.5kw Portable Oil-Free Vortex Air Compressor   air compressor oilChina Professional 2023 Hot Sales 7.5kw Portable Oil-Free Vortex Air Compressor   air compressor oil
editor by CX 2024-01-02