产品描述
公司简介
ZheZheJiang nshine Industrial Technology Co., Ltd., as a professional overseas sales team and sales service team, is committed to providing customers with piston compressor and diaphragm compressor solutions. The company adheres to the concept of one-stop service and provides customers with a complete set of compressor equipment solutions.
产品描述
Our products mainly include 2 series: piston compressors and diaphragm compressors, covering more than 30 types of products. These products are widely used in fields such as hydrogen energy, semiconductors, chemicals, petrochemicals, and natural gas transportation. We have over 3000 industrial enterprise users, covering all aspects of the hydrogen energy industry chain, including hydrogen production, filling, and hydrogen refueling station compressors, and providing a complete set of gas compression equipment solutions. As an efficient, energy-saving, environmentally friendly, and reliable compressor type, diaphragm compressors have also achieved great success and have been widely used in various fields.
活塞式压缩机 是一种利用活塞往复运动进行气体增压和输送的压缩机,主要由工作腔、传动部件、本体和辅助部件组成。工作腔直接用于压缩气体,活塞在气缸内由活塞杆驱动往复运动,活塞两侧的工作腔容积依次变化:一侧由于压力升高,气体通过阀门排出,容积减小;另一侧由于气压降低,气体通过阀门吸收,容积增大。
隔膜压缩机 根据用户需求,选择合适的压缩机类型以满足用户需求。金属隔膜压缩机的隔膜将气体与液压油系统完全隔离,确保气体纯净,避免气体污染。同时,采用先进的制造工艺和精确的膜腔设计技术,保证隔膜压缩机隔膜的使用寿命。无污染:金属隔膜组将工艺气体与液压油和润滑油部分完全隔离,确保气体纯净。
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)
The compressor outlet pressure produced by the company can reach up to 50MPa.Our products cover the fields of food and medicine, metallurgy, electronics, textiles, clean energy, aerospace, nuclear power, petrochemicals, and other fields.
Reciprocating Gas Compressor are widely used in many industries related to the compression and supply of gas to consumers. Like oil and chemical industry, oil refineries and more. Various technological processes can include corrosive, inert, poisonous and explosive gases, which must be treated to a clean gas without impurities of oil.
Depending on the type of equipment, work with different gases, such as:
Compressor units can be made on single frame design. With interstage devices and all necessary piping, placed on a single platform with a compressor.
Compressor units can be manufactured in the version “without lubrication of cylinders and oil seals”;
The modern automation system of the compressor units guarantees the safety and easy use of the equipment.
Reducing the time of commissioning.
The machine is customized according to customer need, the specific price depends on the configuration requirements (gas composition, exhaust volume and pressure).quotation will be given according the specific parameters.
产品参数
| Piston compressor model parameters | |||||||||
| Piston force | 800 | 500 | 320 | 250 | 160 | 100 | 65 | 45 | 30 |
| Types of compressed gas | Hydrogen, nitrogen, natural gas, ethylene, propylene, coal gas, hydrogen chloride, hydrogen fluoride, carbon dioxide, methyl chloride, carbon monoxide, acetylene ammonia, hydrogen monochloride, difluoromethane, tetrafluoroethylene, pentafluoroethylene, hexafluoroethylene, etc. | ||||||||
| discharge pressureMPa(G) | <=25 | <=30 | |||||||
| Compression levels | 1-4levels | 2-6levels | 1-3levels | ||||||
| Number of columns | 2–4 | 2–6 | 1–4 | ||||||
| Layout form | M/D | M/D | M/D | M/D | M/D | M/D/P | M/D/P | M/D/P | L/P |
| route(mm) | 280-360 | 240-320 | 180-240 | 200 | |||||
| Rotating speed(rpm) | 300-375 | 333-450 | 375-585 | 420-485 | |||||
| Maximum motor power(KW) | 5600 | 3600 | 3300 | 2700 | 1250 | 800 | 560 | 250 | 75 |
| skid mounted | non-skid mounted | skid mounted/non -skid mounted | |||||||
| Digital Analog Computing | yes | ||||||||
| systolic algorithm | yes | ||||||||
| test | According to the quality standard, chemical analysis, mechanical performance, flaw detection, hydrostatic test, airtight test and other inspections are carried out for each component | ||||||||
| Factory inspection | According to the quality standard, carry out no-load mechanical operation test | ||||||||
| Customer acceptance | Actual working conditions, 72-hour assessment and acceptance | ||||||||
| 应用 | Hydrogen energy, silicon, fluorine chemical industry, petrochemical industry, metallurgy, medicine, aerospace, nuclear power | ||||||||
详细照片
售后服务
In addition to the high-quality performance of our products, we also attach great importance to providing customers with comprehensive services. We have an independent service operation and maintenance team, providing customers with various support and services, including technical support, debugging services, spare parts supply, renovation and upgrading, and major maintenance. We always adhere to the principle of customer-centrism, ensuring the safe and stable operation of customer equipment. Our service team is committed to providing reliable support for customers’ operations 24/7.
Training plan
Technical training is divided into 2 parts: company training and on-site training.
1)Company training
Before the unit is delivered, that is during the unit assembly period, users will be provided with a one-week on-site training by the company. Provide local accommodation and transportation facilities, and provide free venues, teaching materials, equipment, tools, etc. required for training. The company training content is as follows:
The working principle, structure and technical performance of the unit.
Unit assembly and adjustment, unit testing.
Operation of the unit, remote/local operation, manual/automatic operation, daily operation and management, familiar with the structure of each system of the unit.
Routine maintenance and upkeep of the unit, and precautions for operation and maintenance.
Analysis and troubleshooting of common faults, and emergency handling methods.
2) On-site training
During the installation and trial operation of the unit, on-site training will be conducted to teach the principles, structure, operation, maintenance, troubleshooting of common faults and other knowledge of the unit, so as to further become familiar with the various systems of the unit, so that the purchaser can independently and correctly operate the unit. Operation, maintenance and management.
包装和运输
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| 售后服务: | 12 个月 |
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| 保修单: | 12 个月 |
| 润滑方式: | 润滑 |
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运费:
每件商品预计运费。 |
关于运费和预计送达时间。 |
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| 付款方式: |
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首付款 全额付款 |
| 货币: | US$ |
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| 退货和退款: | 您可以在收到产品后 30 天内申请退款。 |
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燃气空气压缩机与柴油空气压缩机相比有何区别?
在比较燃气空气压缩机和柴油空气压缩机时,需要考虑多个因素,包括燃油效率、功率输出、成本、维护要求和环境影响。以下是对这两种空气压缩机的详细比较:
1. 燃油效率:
与汽油空气压缩机相比,柴油空气压缩机通常更节能。柴油发动机的能量密度更高,整体效率也优于汽油发动机。这意味着柴油压缩机单位燃料消耗量可以产生更大的输出功率,从而降低燃料成本,延长两次加油之间的运行时间。
2. 功率输出:
与燃气空气压缩机相比,柴油空气压缩机通常提供更高的功率输出。柴油发动机以其坚固耐用和高扭矩输出能力而闻名,因此适用于需要更大压缩空气量或更高工作压力的重型应用。
3. 成本:
就前期成本而言,汽油空气压缩机通常比柴油空气压缩机更经济实惠。汽油发动机及其零部件的价格通常也低于柴油发动机。然而,必须考虑长期成本,包括燃料费用和维护成本,这些成本会因燃料价格和使用模式等因素而有所不同。
4. 维护要求:
与燃气空气压缩机相比,柴油空气压缩机通常需要更频繁的维护。这是因为柴油发动机拥有额外的部件,例如燃油滤清器、油水分离器和喷油器系统,这些部件都需要定期维护。而燃气空气压缩机的维护要求可能更简单,从而降低维护成本和时间。
5. 环境影响:
就环境影响而言,柴油空气压缩机的排放量高于燃气空气压缩机。柴油发动机排放的颗粒物、氮氧化物 (NOx) 和二氧化碳 (CO2) 比汽油发动机更多。燃气空气压缩机,尤其是丙烷驱动的燃气空气压缩机,排放量往往较低,因此被认为更环保。
6. 便携性和移动性:
与柴油空气压缩机相比,汽油空气压缩机通常更便携、更易于移动。汽油发动机通常更轻巧、更紧凑,因此汽油空气压缩机适用于对移动性要求较高的应用场景,例如建筑工地或偏远地区。
值得注意的是,应用的具体需求和燃料来源的可用性在选择燃气空气压缩机还是柴油空气压缩机时也起着至关重要的作用。每种类型都有其自身的优势和注意事项,选择应基于预期用途、运行条件、预算和环境因素等。
总之,燃气空气压缩机通常价格更实惠、便于携带,更适合轻型应用;而柴油空气压缩机则功率输出更高、燃油效率更高、更耐用,更适合重型作业。请考虑上述具体需求和因素,以确定最适合您特定应用的空气压缩机。
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海拔高度对气体空气压缩机性能有何影响?
海拔高度会对气体空气压缩机的性能产生显著影响。以下是详细解释:
1.空气密度降低:
随着海拔升高,空气密度降低。空气密度的降低会影响气体空气压缩机的性能,这主要是因为压缩机依靠吸入环境空气来产生压缩空气。在高海拔地区,空气密度较低,压缩机吸入足够空气量的能力也会降低。
2. 压缩机输出降低:
空气密度的降低会直接影响压缩机的输出功率。在高海拔地区,气体空气压缩机的最大气流和压力能力可能会下降。这种输出功率的降低会影响压缩机的效率及其为各种应用提供所需压缩空气的能力。
3. 压缩机工作负荷增加:
在高海拔地区,气体空气压缩机需要更努力地工作才能维持所需的压缩空气输出量。空气密度降低意味着压缩机必须压缩更大的空气体积才能达到与低海拔地区相同的压力。这种增加的工作负荷会导致更高的能耗、压缩机部件磨损加剧,并可能降低整体性能和使用寿命。
4. 发动机功率损失:
如果燃气空气压缩机由内燃机(例如汽油或柴油发动机)驱动,海拔高度也会影响发动机的性能。随着空气密度降低,由于燃烧所需的氧气减少,发动机可能会出现功率损失。这会导致发动机的马力和扭矩下降,从而影响压缩机产生压缩空气的能力。
5. 选择合适尺寸的注意事项:
在选择用于高海拔地区的气体空气压缩机时,务必考虑具体的海拔条件,并据此调整压缩机的尺寸和容量。选择比海平面所需更高的空气流量和压力等级的压缩机,有助于弥补在高海拔地区性能下降的问题。
6. 维护和调整:
为了优化在高海拔地区运行的燃气空气压缩机的性能,必须定期进行维护和调整。这包括监测和调整压缩机的进气系统、燃油空气比和点火正时,以适应空气密度降低的情况并保持适当的燃烧效率。
总之,海拔高度对气体空气压缩机的性能有显著影响。高海拔地区空气密度降低会导致压缩机输出功率下降、压缩机负荷增加、潜在的发动机功率损失,并需要考虑压缩机的合理选型和维护。了解这些影响对于在各种海拔条件下有效选择和运行气体空气压缩机至关重要。
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How Do You Choose the Right Size Gas Air Compressor for Your Needs?
Choosing the right size gas air compressor is crucial to ensure optimal performance and efficiency for your specific needs. Selecting a compressor that is too small may result in insufficient airflow or pressure, while choosing one that is too large can lead to unnecessary energy consumption and higher costs. Here’s a detailed explanation of the factors to consider when choosing the right size gas air compressor:
1. Required Airflow:
Determine the airflow requirements of your applications. Consider the tools, equipment, or processes that will be powered by the compressor and their respective airflow demands. The required airflow is typically measured in cubic feet per minute (CFM). Determine the total CFM required, taking into account any simultaneous or intermittent tool usage.
2. Operating Pressure:
Identify the operating pressure required for your applications. Different tools and systems have specific pressure requirements, measured in pounds per square inch (PSI). Ensure that the compressor you choose can deliver the required pressure consistently.
3. Duty Cycle:
Consider the duty cycle, which refers to the amount of time the compressor will be in operation within a given period. Some applications may require continuous operation, while others involve intermittent or occasional use. Take into account the duty cycle to ensure that the compressor can handle the expected workload without overheating or experiencing excessive wear.
4. Tank Size:
The tank size of a gas air compressor determines its ability to store compressed air and provide a steady supply. A larger tank can help accommodate fluctuations in demand and reduce the frequency of the compressor cycling on and off. Consider the required storage capacity based on the specific applications and the desired balance between continuous operation and storage capacity.
5. Power Source:
Gas air compressors can be powered by different fuels, such as gasoline, diesel, natural gas, or propane. Consider the availability and cost of the fuel options in your location, as well as the specific requirements of your applications. Choose a compressor that is compatible with a power source that suits your needs.
6. Portability:
Determine if portability is a requirement for your applications. If you need to move the compressor to different job sites or locations, consider a portable model with features like wheels, handles, or a compact design that facilitates easy transportation.
7. Noise Level:
If noise is a concern in your working environment, consider the noise level of the compressor. Gas air compressors can vary in their noise output, and certain models may have noise-reducing features or insulation to minimize sound emissions.
8. Manufacturer Recommendations:
Consult the manufacturer’s recommendations and guidelines for selecting the appropriate compressor size for your specific needs. Manufacturers often provide guidelines based on the anticipated applications, airflow requirements, and other factors to help you make an informed decision.
By considering these factors and carefully assessing your specific requirements, you can choose the right size gas air compressor that meets your airflow, pressure, duty cycle, and other operational needs. It’s advisable to consult with industry professionals or compressor experts for guidance, especially for complex or specialized applications.


editor by CX 2024-02-27
