Steam traps are valves used in steam networks and equipment that can automatically drain condensate, air and other non-condensable gases and block the leakage of water vapor.
According to the different working principle of steam traps, steam traps can be converted into the following three types:
Mechanical type: Rely on changes in the height of the condensate in the steam trap, including:
Float ball type: The float is a closed hollow ball open upward float type: the float is an open upward barrel type downward float type: the float is an open downwards bucket type thermostatic type: it depends on the change of liquid temperature ,include:
Bimetal: The sensitive original is a bimetal vapor pressure type: Sensitive originals are bellows or cartridges, internally filled with volatile liquids Thermodynamic type: Rely on changes in the thermodynamic properties of the liquid.
Disc Type: Due to different flow rates of liquid and gas under the same pressure, the different dynamic and static pressures generated will drive the disc valve to actuate pulse type: due to different temperatures of condensed water passing through the two-pole serial orifice The plate type, sitting in different pressures between the orifice plates, drives the flap.
According to the different working principle of steam traps, steam traps can be converted into the following three types:
Mechanical type: Rely on changes in the height of the condensate in the steam trap, including:
Float ball type: The float is a closed hollow ball open upward float type: the float is an open upward barrel type downward float type: the float is an open downwards bucket type thermostatic type: it depends on the change of liquid temperature ,include:
Bimetal: The sensitive original is a bimetal vapor pressure type: Sensitive originals are bellows or cartridges, internally filled with volatile liquids Thermodynamic type: Rely on changes in the thermodynamic properties of the liquid.
Disc Type: Due to different flow rates of liquid and gas under the same pressure, the different dynamic and static pressures generated will drive the disc valve to actuate pulse type: due to different temperatures of condensed water passing through the two-pole serial orifice The plate type, sitting in different pressures between the orifice plates, drives the flap.
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