Performance characteristics and application scope of pneumatic gas booster pump

    Pneumatic gas booster pump


    1. Performance and features:


    The ZTA series gas boosting unit is an advanced boosting equipment independently researched and developed by our company. This device uses compressed air as power to pressurize gases such as air, oxygen, nitrogen, carbon dioxide, etc. This device is an independent boosting unit, connected in series in the boosted pipeline. It has the characteristics of fast boosting speed, long service life, stable pressure, large flow rate, simple operation, convenient maintenance, and use.


    2. Application scope: Air conditioning coil detection, valve airtightness detection, pressure vessel detection, constant replenishment of gas in gas storage tanks, ordinary compressors to increase air pressure, pneumatic valve actuators, coordinate measuring instruments, pneumatic marking machines, CNC machine tool clamping devices, pneumatic bundling machines, inkjet printers, cylinder clamping force insufficient places, etc


    Individual or partial devices in the gas path require high pressure.


    When the pressure in the main air circuit of the factory drops and the low operating pressure of the pneumatic device cannot be guaranteed, a booster pump is used to provide high-pressure gas to maintain the normal operation of the pneumatic device.


    3. Large caliber cylinders cannot be configured, but the output force must be ensured.


    4. Pneumatic remote operation requires pressurization to compensate for pressure loss.


    5. It is necessary to increase the hydraulic pressure of the linkage cylinder.


    6. I hope to shorten the time it takes to inflate the gas cylinder to a certain pressure.


    7. Used for airtightness testing.    


    8. Used for filling various gases.                       


    3. Automatic pressure maintenance: Regardless of the reason for the pressure drop in the pressure maintenance circuit, the booster pump will automatically start to supplement the leakage pressure and maintain a constant circuit pressure.


    4. Operation: Gas driven, no arc or spark, fully used in places with flammable and explosive liquids or gases.


    5. Easy maintenance: Compared with other gas driven pumps, the booster pump can complete the same work, but it has fewer parts and seals, making maintenance simple


    6. High cost-effectiveness: The booster pump is a plunger pump that rapidly reciprocates during operation. As the output pressure increases, the pump's reciprocating motion slows down until it stops. At this point, the pump's pressure remains constant, energy consumption is low, and all components stop moving.


    7. Advantages of Feentor air boost unit:


    1) Compared with traditional gas superchargers, this supercharger produces smaller pulses and has stable pressure output. The output pressure value can be adjusted to the allowable pressure range in the working environment through an additional pressure reducing valve.


    2) Compared with high-pressure air compressor systems and high-pressure compressors, this unit has low noise and low input costs. When the set pressure is reached, there is no additional energy consumption, so its energy consumption is small and energy-saving.


    3) Easy to use. The turbocharger is fully pneumatic controlled, connected to the driving gas inlet, the pressurized gas inlet, and the pressurized gas outlet to operate; By adjusting the pressure of the driving gas source, the pressure of the pressurized gas can be infinitely adjusted.                                                                   


    Composition and principle

    Pneumatic gas booster pump

    1. Gas section


    This part consists of a lightweight reducing piston with an O-ring seal and a sleeve with an outer layer of glass fiber winding or hard aluminum coating, filled with epoxy resin in the middle. The piston is placed inside the sleeve. The diameter of this air piston is constant for any series of pneumatic pumps. When compressed air enters the pneumatic device, it forces the piston into the compression stroke, and then the air drives the piston back to perform the suction stroke (except for M-series pumps with spring automatic return function). Unlike many other pumps, pneumatic device pipelines do not require the use of lubricants due to their inherent low friction characteristics and lubrication during assembly.


    Air circulation valve


    This part consists of a controller and a plunger, which allows compressed air to flow to any end of the air piston based on its position. The piston pushes the control valve at the upper and lower ends of its stroke, alternately boosting and ventilating the large area of the slide valve to control the reciprocating motion of the airflow towards the air piston and maintain a circulating state. When air is discharged from the pump, it needs to pass through an exhaust muffler. Unlike many other pumps, the pump does not use a metal to metal tight fit in its design, which can prevent the consequences of air leakage causing the plunger to terminate operation.

    ZTA pneumatic gas booster pump

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