14 stainless steel flexible pneumatic pneumatic valve seat breaker advantage

by:AIRWOLF     2021-01-15



new stainless steel Lined pneumatic valves, pneumatic valve pneumatic breaker and elastic pneumatic valve seat, valve cover, used in concentration to a small % and solids content of pulp, paper and pulp, waste water and cooling water, electricity, food and beverage, chemical products and fertilizers.
stainless steel flexible pneumatic pneumatic valve seat breaker big advantage:
and full size design, medium circulation is smooth, does not produce clogging.
, nitrile rubber pneumatic seat is easy to replace, in psi - psi pressure range to provide two-way tight seal.
, compact structure of the wafer with TAPPI and MSS standards stipulated by the structure of face to face.
, enclosed copper pneumatic valve stem bushing reduce operating torque, and protect the pneumatic valve stem bushing in the harsh environment.
and pneumatic valve cover, with external thread of pneumatic valve stem and pneumatic valve yoke, without lifting the handwheel, lift the pneumatic valve cover.
, cast stainless steel pneumatic valve body, disc, packing gland, and pneumatic valve yoke.
pneumatic valve, stainless steel rod with corrosion resistance.
pneumatic valve, high strength cast stainless steel yoke, even under high load, also won't produce bent or twisted.
and precision machining of stainless steel gate provides superior sealing force.
and damper design meet the MSS - SP - Psi pressure rating of the prescribed standards.
, you can configure the handwheel, hydraulic actuator, pneumatic actuator, electric actuator, helical gears, chain wheel, electric actuators, or use the existing foundry pneumatic valve yoke with fail-safe spring piston type actuators.
and elastic pneumatic seat is flush with the bottom of the port, pneumatic valve does not produce any medium at the bottom of the accumulation.
and standards of TFE lubrication of the synthetic packing, working temperature of ℉, pH ~.
resistance, high strength pneumatic valve body design line load and internal pressure formation of the coriolis force.
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