Media: | Gas |
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Temperature: | Ordinary Temperature |
Actuator: | Electric |
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Usage:
The pulse valve acts as the vital 'switch' that controls compressed air within the dust spraying system of a pulse bag dust collector. As governed by the pulse injection controller's output signals, it facilitates sequential cleaning of filter bags. This essential process ensures that the resistance within the dust collector remains within the optimal set range, thereby safeguarding both the processing capacity and the dust collection efficiency for superior performance.
The Z type electromagnetic pulse valve is designed as a right angle valve, featuring a precise 90-degree angle between its inlet and outlet. This configuration makes it ideally suited for installation between the gas dome and the baghouse blow tube, delivering an exceptional air flow and dust cleaning pulses that fully meet the system's stringent requirements.
The Y type electromagnetic pulse valve shines in embedded applications, where it is directly mounted within the gas bag. It boasts outstanding flow characteristics and, as pressure losses diminish, it becomes an ideal choice for scenarios involving lower pressure gas sources, optimizing performance even in challenging conditions.
The T type electromagnetic pulse valve is engineered as a straight-flow valve, with a distinctive 180-degree angle between the inlet and outlet. This design is perfect for installation between the inlet and the gas dome, as well as the outlet and the blow tube, ensuring a seamless flow of air and efficient dust cleaning pulses that satisfy rigorous operational demands.
Structure:
The pulse valve's structure is a sophisticated ensemble comprising a robust valve body, coil, diaphragm, pilot, and spring components. Crafted from durable alloy aluminum, the valve body ensures longevity and reliable performance.
Working Pressure: | 0.3Mpa~0.8Mpa |
Working Medium: | Clean Air |
Voltage: | DC24V AC110V AC220V |
Current: | 0.8A 0.46A 0.23A |
Used temperature: | -25ºC~+80ºC The relative humidity of the air does not exceed 85% |
Membrane life: | 1 million times or 3 years |