Product Description
Reciprocating Completely Oil-Free Diaphragm Compressor
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Our company specialize in producingĀ various kinds of compressor products,Ā such as:Diaphragm compressor,Piston compressor,Ā Air compressors,Nitrogen generator,Oxygen generatorĀ ,Gas cylinder,etc. All products can be customized according to your parameters and other requirements.
Process Principle
Diaphragm compressorĀ according toĀ the needs of the user, choose the right type of compressor to meet the needs of the user. The diaphragm of the metal diaphragm compressorĀ completely separates the gasĀ from the hydraulic oil system toĀ ensure the purity of the gas andĀ no pollutionĀ to the gas. At the same time, advanced manufacturing technology and accurate membrane cavity design technology are adopted toĀ ensure the service lifeĀ of the diaphragm compressor diaphragm.Ā No pollution: the metal diaphragm group completely separates the process gas from the hydraulic oil and lubricating oil parts toĀ ensure the gas purity.
Main Structure
Diaphragm compressorĀ structure is mainly composed ofĀ motor, base, crankcase, crankshaft linkage mechanism, cylinder components, crankshaft connecting rod, piston, oilĀ and gas pipeline, electric control system and some accessories.
Gas MediaĀ
Our compressors can compress ammonia, propylene, nitrogen, oxygen, helium, hydrogen, hydrogen chloride, argon, hydrogen chloride, hydrogen sulfide, hydrogen bromide, ethylene, acetylene, etc.(Nitrogen diaphragm compressor,bottle filling compressor,oxygen diaphragm compressor)
GDĀ Model Simple Description
GD diaphragm compressorĀ is aĀ special structure of the volumetric compressor, is the highest level of compression in the field of gas compression, this compression method Without secondary pollution, it can ensure the purity of gas is more than 5, and it has very good protection against compressed gas. It has the characteristics of large compression ratio, good sealing performance, and the compressed gas is not polluted by lubricating oil and other CHINAMFG impurities. Therefore, it is suitable for compressing high-purity, rare and precious, flammable, explosive, toxic, harmful, corrosive and high-pressure gases. The compression method is generally specified in the world for compressing high-purity gas, flammable and explosive gas, toxic gas and oxygen. Etc. (such as nitrogen diaphragm compressor, oxygen diaphragm compressor, hydrogen sulfide diaphragm compressor, argon diaphragm compressor, etc.).
GD diaphragm compressorĀ for my company independent research and development of large diaphragm compressor, its advantages are:Ā high compression ratio, large displacement, large piston force, stable running, high exhaust pressure, etc, has been widely used and petroleum chemical industry and nuclear power plant, and so on,.Two GD type diaphragm compressor cylinder arrangement for symmetrically arranged in parallel, more suitable for the petrochemical and nuclear power plant such as uninterrupted operation for aĀ long time, because of the cylinder body symmetry, run up against other arrangement of diaphragm compressor isĀ the most stable operation, running, small vibrationĀ from the ground clearance isĀ more convenient in maintenance.
Advantages
No leakage:Ā the compressor membrane head is sealed by static “O” ring. The OĀ “ring is made of elastic material, with long service life and no dynamic seal to ensure no leakage during gas compression.
Corrosion resistance:Ā the compressor membrane head can be made of 316L stainless steel, the diaphragm is made of 301 stainless steel.
Small tightening torque:Ā “O” ring seal, can reduce flange bolt tightening torque, reduce shutdown maintenance time.
Reference Operating Parameter:
| Model | GD-120/4-80 | Remarks | |
| Volume Flow | Nm3/h | 120 | No-Standard |
| Working pressure | Suction pressure: | 0.4MPa | No-Standard |
| Ā | Exhaust pressure: | 8.0MPa | No-Standard |
| Cooling Method | Ā | Ā Water-CooledĀ | No-Standard |
| Intake temperature | °C | 0~30 |  |
| Inlet pressure | MPa | 0.3~0.4 | Ā |
| Discharge temperature | °C | ā¤45ĀŗC | Ā |
| Noise | dB(A) | ā¤80 | Ā |
| Power/Frequence | V/Hz | 380/50 | No-Standard |
| Motor Power | Kw | 22KW~200KW | No-Standard |
| Crankshaft speed | r/min | 420 | Ā |
| Overall dimension | L/mm | 3000 | Ā |
| Ā | W/mm | 1600 | Ā |
| Ā | H/mm | 1400 | Ā |
Reference Specification
| 1 | GD-120/4-80 | 3.0 | 120 | 0.4 | 8.0 | 3000x1600x1400 | Ā | 30 |
| 2 | GD-130/0.98-11 | 3.0 | 130 | 0.098 | 1.1 | 3000x1800x1600 | 4.0 | 30 |
| 3 | GD-150/2-20 | 3.0 | 150 | 0.2 | 2.0 | 3000x1800x1600 | 4.0 | 37 |
| 4 | GD-100/0.1-5 | 4.0 | 100 | 0.01 | 0.5 | 2800X1500X1500 | 3.0 | 18.5 |
| 5 | GD-100/5.5-200 | 5.0 | 100 | 0.55 | 20 | 3200X2000X1600 | 4.5 | 45 |
| 6 | GD-80/0.12-4 | 5.0 | 80 | 0.012 | 0.4 | 2800x1600x 1500 | 3.8 | 15 |
| 7 | GD-60/0.3-6 | 4.0 | 60 | 0.03 | 0.6 | 2800x1600x1500 | 4.0 | 15 |
| 8 | GD-70/0.1-8 | 3.8 | 70 | 0.01 | 0.8 | 3000 xĀ 1600×1250 | 5.0 | 18.5 |
| 9 | GD-40/0.02-160 | 5.0 | 40 | 0.02 | 16 | 2800x1460x1530 | 3.0 | 22 |
| 10 | GD-100/0.5-6 | 2.0 | 100 | 0.05 | 0.6 | 3000x2000x1560 | 6.0 | 18.5 |
| 11 | GD-36/1-150 | 4.0 | 36 | 0.1 | 15 | 3000x1500x1500 | 4.0 | 45 |
| 12 | GD-35/0.7-300 | 4.0 | 35 | 0.07 | 30 | 3000x1600x1500 | 4.0 | 22 |
| 13 | GD-500/15-35 | 4.5 | 500 | 1.5 | 3.5 | 3000x2000x1700 | 4.0 | 45 |
| 14 | GD-150/15-210 | 4.5 | 150 | 1.5 | 21 | 3200x1700x1600 | 4.0 | 45 |
| 15 | GD-120/8-220 | 4.5 | 120 | 0.8 | 22 | 3200x1700x1600 | 3.8 | 45 |
| 16 | GD-100/9 | 4.5 | 100 | 0.0 | 0.9 | 3200x1700x1800 | 4.5 | 22 |
| 17 | GD-100/1.5-150 | 4.5 | 100 | 0.15 | 15 | 3200x1700x1800 | 4.5 | 45 |
| 18 | GD-40/30 | 4.5 | 40 | 0.0 | 3.0 | 3200x1700x1800 | 4.0 | 18.5 |
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| Principle: | Displacement Compressor |
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| Application: | High Back Pressure Type |
| Performance: | Low Noise, Variable Frequency, Explosion-Proof |
| Mute: | Low Noise |
| Lubrication Style: | Oil-free |
| Drive Mode: | Electric |
| Customization: |
Available
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What Is the Role of Air Dryers in Oil-Free Air Compressor Systems?
Air dryers play a crucial role in oil-free air compressor systems by removing moisture from the compressed air, ensuring dry and moisture-free output. Here’s a detailed explanation of the role of air dryers in oil-free air compressor systems:
1. Moisture Removal:
One of the primary functions of air dryers in oil-free air compressor systems is to remove moisture from the compressed air. During the compression process, atmospheric air is compressed, leading to an increase in temperature. As the compressed air cools down, the water vapor present in the air can condense, resulting in the formation of liquid water. Moisture in the compressed air can cause a range of issues, including corrosion, damage to pneumatic equipment, reduced efficiency in downstream processes, and contamination of products or processes. Air dryers effectively remove this moisture, ensuring that the compressed air remains dry and free from water vapor.
2. Condensation Prevention:
Air dryers also help prevent condensation from occurring within the compressed air system. By removing moisture from the compressed air, air dryers minimize the chances of condensation forming in the compressed air lines, storage tanks, and downstream equipment. Condensation can lead to the accumulation of water, which can cause blockages, corrosion, and other operational issues. Air dryers help maintain the integrity and reliability of the compressed air system by preventing condensation-related problems.
3. Protection of Equipment:
Moisture in the compressed air can be detrimental to pneumatic equipment and tools. Air dryers help protect this equipment by ensuring that the air supplied is dry and free from moisture. Dry air prevents corrosion of internal components, extends the lifespan of pneumatic tools, and helps maintain their optimal performance. By removing moisture, air dryers contribute to the overall reliability and efficiency of the oil-free air compressor system.
4. Purification of Compressed Air:
Air dryers also aid in the purification of compressed air by removing impurities and contaminants, including water vapor, oil droplets, and solid particles. While the primary purpose of air dryers is to remove moisture, they often incorporate additional filtration stages, such as coalescing filters or desiccant beds, to capture and remove other impurities. These filtration stages work in conjunction with the drying process to deliver clean, dry, and purified compressed air that meets the required air quality standards.
5. Optimal Performance:
Properly dried and moisture-free compressed air ensures optimal performance in various applications. In industries such as food and beverage, pharmaceuticals, electronics manufacturing, and painting, where air quality is critical, the use of air dryers is essential to meet specific air purity requirements. Dry compressed air enhances the efficiency and reliability of pneumatic systems, reducing the risk of malfunctions, downtime, and product contamination.
It’s important to note that different types of air dryers are available for oil-free air compressor systems, including refrigerated dryers, desiccant dryers, and membrane dryers. Each type has its own operating principles and suitability for different applications. The selection of the appropriate air dryer depends on factors such as the required level of dryness, the volume of compressed air, operating conditions, and specific industry requirements.
By incorporating air dryers into oil-free air compressor systems, operators can achieve and maintain dry, moisture-free compressed air, ensuring the reliability, efficiency, and integrity of downstream processes and equipment.
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What Is the Role of Filtration in Maintaining Air Quality in Oil-Free Compressors?
Filtration plays a crucial role in maintaining air quality in oil-free compressors. Here’s a detailed explanation of the role of filtration and its importance in ensuring clean and contaminant-free compressed air:
1. Removing Solid Particles:
One of the primary functions of filtration in oil-free compressors is to remove solid particles from the compressed air. Ambient air contains various contaminants such as dust, dirt, pollen, and other particulates. These particles can potentially damage downstream equipment, clog pneumatic components, and compromise the quality of the compressed air. Filtration systems, typically consisting of pre-filters and main filters, are used to capture and remove these solid particles, preventing them from entering the compressed air system.
2. Protecting Equipment:
Filtration helps protect the equipment and components of the compressed air system, including valves, cylinders, pneumatic tools, and instruments. Solid particles present in the compressed air can cause abrasion, wear, and damage to these components, leading to decreased performance, increased maintenance, and potential system failures. By effectively removing solid particles, filtration ensures the longevity and reliability of the equipment, reducing the need for frequent repairs and replacements.
3. Preventing Contamination:
Oil-free compressors are designed to produce clean, oil-free compressed air. However, certain contaminants can still find their way into the compressed air system. Filtration plays a vital role in preventing contamination by removing substances such as oil aerosols, water vapor, and microorganisms. These contaminants can be introduced through ambient air or can result from the compression process itself. Proper filtration ensures that the compressed air remains free from these contaminants, meeting the required air quality standards for specific applications.
4. Achieving Air Purity:
Many applications require compressed air with specific purity levels. For instance, in industries like pharmaceuticals, food and beverage, electronics, and healthcare, high-quality compressed air is essential to prevent product contamination or ensure the safety of sensitive processes. Filtration, along with other air treatment components such as dryers and separators, helps achieve the desired air purity levels by removing particulates, moisture, oil, and other impurities. This ensures that the compressed air meets the required standards and complies with industry regulations.
5. Extending Maintenance Intervals:
Efficient filtration in oil-free compressors can contribute to extended maintenance intervals. By effectively capturing and removing contaminants, filtration reduces the accumulation of debris and deposits within the compressed air system. This, in turn, reduces the frequency of maintenance tasks such as cleaning, purging, and component replacements. Extended maintenance intervals not only save time and labor but also minimize system downtime and associated costs.
6. Preserving Product Quality:
In applications where compressed air comes into direct contact with products or processes, maintaining air quality is crucial to preserve product integrity and quality. Contaminated compressed air can introduce impurities, odors, or foreign substances that may adversely affect the final product. Filtration ensures that the compressed air remains clean and free from contaminants, safeguarding the quality, purity, and consistency of the end products.
Overall, filtration plays a vital role in maintaining air quality in oil-free compressors. By removing solid particles, preventing contamination, achieving air purity, protecting equipment, extending maintenance intervals, and preserving product quality, filtration systems contribute to the reliable and efficient operation of compressed air systems in various industries and applications.
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Can Oil-Free Compressors Be Used in Medical Applications?
Yes, oil-free compressors can be used in medical applications and are widely utilized in various healthcare settings. These compressors provide clean, oil-free compressed air, making them suitable for critical medical processes and equipment. Here’s a detailed explanation of the use of oil-free compressors in medical applications:
1. Surgical Tools and Instrumentation:
Oil-free air compressors are commonly used in surgical suites and operating rooms to power pneumatic surgical tools and instrumentation. Surgical tools, such as pneumatic drills, saws, and shavers, rely on compressed air for their operation. Using oil-free compressors ensures that the compressed air delivered to these tools is free from oil contamination, reducing the risk of oil particles entering the surgical site or interfering with the sterile environment.
2. Respiratory Devices:
In respiratory care, oil-free compressors play a vital role in powering various medical devices, such as ventilators, nebulizers, and continuous positive airway pressure (CPAP) machines. These devices require a clean and reliable source of compressed air to deliver oxygen or medication to patients. Oil-free compressors ensure that the compressed air produced is free from oil, providing safe and effective respiratory support.
3. Dental Equipment:
Oil-free compressors are extensively used in dental offices and clinics to power dental tools and equipment, including dental drills, air syringes, and suction devices. Dental procedures require a high level of precision, and any contamination in the compressed air can compromise patient safety and treatment outcomes. By using oil-free compressors, dental professionals can ensure the delivery of clean, oil-free compressed air for optimal dental care.
4. Laboratory Applications:
Oil-free compressors are employed in various laboratory applications within the medical field. These applications include air supply for analytical instruments, sample preparation, cell culture, and other research processes. Oil-free compressed air is essential in maintaining the integrity of samples, preventing contamination, and ensuring accurate and reliable test results.
5. Pharmaceutical Manufacturing:
In pharmaceutical manufacturing, oil-free compressors are utilized to provide clean compressed air for critical processes. This includes applications such as product drying, powder handling, and packaging. Oil-free compressed air ensures the purity and quality of pharmaceutical products, meeting stringent regulatory requirements and minimizing the risk of contamination.
6. Medical Gas Systems:
Oil-free compressors are an integral part of medical gas systems, which provide essential gases like oxygen, nitrogen, and compressed air throughout healthcare facilities. These gases are used for various medical purposes, such as patient breathing, anesthesia, laboratory testing, and respiratory therapy. Oil-free compressors ensure the delivery of clean and uncontaminated medical gases, maintaining patient safety and the reliability of medical gas systems.
Oil-free compressors offer the necessary features and performance required for critical medical applications. They provide clean, oil-free compressed air, ensuring patient safety, maintaining sterility, and meeting regulatory standards. However, it’s important to select oil-free compressors specifically designed and certified for medical applications and adhere to manufacturer guidelines and maintenance protocols to ensure optimal performance and patient care.


editor by CX 2023-12-12