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当前位置:开云app下载 - 新闻中心 - 常见问题气体增压泵的增压效果怎么

气体增压泵的增压效果怎么样?

发布时间:2023-10-05 19:43:10   发布人:http://www.booklovinmamas.com
ODMT气体增压泵适用于对空气和工业气体,如氩气、氦气、氢气和氮气进行无油压缩。工作压力可达160MPa,对氧气的增压可达32MPa。空气驱动的增压泵是替代电动产品的产品,并且可以用于需防爆的工作场所。 功能描述:ODMT增压泵的工作原理类似于压力增压泵。当低的压力作用在大面积活塞上时,小面积活塞就会产生高的压力。通过一个二位四通气控阀能够实现连续运行。
The ODMT gas booster pump is suitable for oil-free compression of air and industrial gases, such as argon, helium, hydrogen, and nitrogen. The working pressure can reach 160MPa, and the pressurization of oxygen can reach 32MPa. The air driven booster pump is an efficient alternative to electric products and can be used in workplaces that require explosion protection. Function description: The working principle of ODMT booster pump is similar to that of a pressure booster pump. When low pressure acts on a large area piston, a small area piston will generate high pressure. Continuous operation can be achieved through a two position four vent control valve.
气控阀使驱动空气交替作用于气体活塞的两个端部表面,形成往复运动。被增压气体由高压活塞端的进口单向阀进入,在高压活塞的带动下,从出口单向阀排出,进而形成气体的输送。设定的驱动空气压力的大小直接决定压力的大小,可根据各种增压器的输出压力计算公式计算出终输出压力。
The pneumatic valve causes the driving air to alternately act on the two end surfaces of the gas piston, forming reciprocating motion. The pressurized gas enters through the inlet check valve at the high-pressure piston end, and is driven by the high-pressure piston to exhaust through the outlet check valve, thereby forming gas transportation. The set driving air pressure directly determines the pressure, and the final output pressure can be calculated based on the output pressure calculation formulas of various turbochargers.
气体增压泵
当驱动压力和高压部分达到压力平衡时,也就是达到了终压力,增压泵会停止运行,同时不再消耗驱动空气。当高压部分压力下降或驱动压力增加时,增压器自动运行,直到再次达到压力平衡。也可通过电磁阀、压力变送器、比例阀、PLC实现增压器的自动开关控制。 应用范围:ODMT气体增压泵型号齐全,能够满足各种应用领域的需要。主要有单级单作用增压泵、单级双作用增压泵、双级增压泵,可以达到不同
When the driving pressure and high-pressure part reach a pressure balance, that is, when the final pressure is reached, the booster pump will stop running and no longer consume driving air. When the pressure of the high-pressure section decreases or the driving pressure increases, the turbocharger automatically runs until the pressure balance is reached again. Automatic on-off control of the booster can also be achieved through solenoid valves, pressure transmitters, proportional valves, and PLCs. Application scope: The ODMT gas booster pump has a complete range of models, which can meet the needs of various application fields. There are mainly single stage single acting booster pumps, single stage double acting booster pumps, and double stage booster pumps, which can achieve different
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