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ASCO Type Aluminum Alloy Air Control Right Angle Pneumatic Power Pulse Valve G353A042

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ASCO Type Aluminum Alloy Air Control Right Angle Pneumatic Power Pulse Valve G353A042

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Brand Name :OEM
Model Number :G353A042
Certification :ISO、CE
Place of Origin :China
MOQ :1Pcs,Sample Available
Price :Negotiation
Payment Terms :L/C, T/T, Western Union
Supply Ability :100000pcs per month
Delivery Time :Negotiation
Packaging Details :PVC bag, inner box, carton, than packed by pallet; also can be packed by color card and can be customized
Port size :1"
Power :Pneumatic
Media :air
Product name :Pulse Valve
Body material :Aluminum Alloy
Type :220V Solenoid Valve
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ASCO Type Aluminum Alloy Air Control Right Angle Pneumatic Power Pulse Valve G353A042

There are three types of electronic pulse valves: right-angle electromagnetic pulse valves, submerged electromagnetic pulse valves, and pneumatically controlled electromagnetic pulse valves. The compressed air switch used for the dust collector cleaning system removes dust.
It is the "switch" of the blowing air path of the pulse bag type dust collector cleaning system, and the diaphragm in the valve body is one of its normal running accessories. It is controlled by the output signal of the pulse control instrument, and the dust removal bag is sprayed off row by row. The ash keeps the resistance of the precipitator within the set range to ensure the treatment capacity and dust collection efficiency of the precipitator.

Type ASCO Type 1 Inch Air Control Valve
Applicable Dust Collector Equipment
Model No. G353A042
Material Aluminum Alloy
Specifications Various
Power Pneumatic
Packaging According Your Request
Production 100000 Pcs/Month
Usage Life 1000000 Million Cycles

Various Fittings of pulse valve are still in stock

ASCO Type Aluminum Alloy Air Control Right Angle Pneumatic Power Pulse Valve G353A042 ASCO Type Aluminum Alloy Air Control Right Angle Pneumatic Power Pulse Valve G353A042

About the detailed description of Bag Dust Collector Filter for reference

ASCO Type Aluminum Alloy Air Control Right Angle Pneumatic Power Pulse Valve G353A042

Introduction to the dust collector:
The dust collector is a device that separates the dust from the flue gas and is called a dust collector or a dust removal device. The performance of the precipitator is expressed by the amount of gas that can be treated, the resistance loss when the gas passes through the precipitator, and the efficiency of dust removal. At the same time, the price, operating and maintenance costs of the precipitator, the length of service life and the difficulty of operation management are also important factors in considering its performance. Dust collectors are commonly used in boilers and industrial production.
Use editing: Set the dust hood in each place where the ash is placed, and transport the dusty gas to the dust removal device through the pipeline gas path. After the gas-solid separation is carried out, the dust is collected in the dust removal device, and the clean gas is The complete set of equipment that is introduced into the main pipe or directly discharged into the atmosphere is the dust removal system, and the dust collector is an important part of the system.

The Working Principle of Pulse Valve

1. When the pulse valve is not energized, the gas enters the decompression chamber through the constant pressure pipe of the upper and lower casings and the throttle hole therein. Since the valve core blocks the pressure relief hole under the action of the spring, the gas is not discharged. The pressure between the decompression chamber and the lower chamber is made uniform, and under the action of the spring, the diaphragm blocks the nozzle and the gas does not rush out.
2. When the pulse valve is energized, the valve core is lifted up by the electromagnetic force, the pressure relief hole is opened, and the gas is ejected. Due to the action of the constant pressure pipe orifice, the outflow speed of the pressure relief hole is greater than that of the decompression chamber. The inflow velocity of the pressure tube gas is such that the pressure in the decompression chamber is lower than the pressure in the lower chamber, and the gas in the lower chamber rises up the diaphragm, and the nozzle is opened to perform gas injection
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