Technical Document
Specifications
Male Connection
3/8 in BSP
Body Material
Brass
Height
70mm
Maximum Working Pressure
10 bar
Male Thread Size
3/8in
Thread Standard
BSP
Country of Origin
Italy
Product details
Automatic Air Vent
High quality automatic air vents for use in heating systems to vent air when commissioning a system. The device consists of a polypropylene float connected to a simple valve. When the build-up of air within the float chamber exceeds a certain level the float drops, opening the valve and releasing the air trapped within the chamber. As the air is released, water replaces it, and moves the float back into the up position, which closes the valve
Max. working pressure: 10 bar
Max. working temperature: 110゚C
Body: Standard brass
Cap: Standard brass
Float: Heat resistant polypropylene
Air Vents
Air vents automatically remove air and other incondensable gases from steam systems, reducing heat transfer and affecting steam temperature. They improve heat transfer, while saving energy, and maintain process performance where temperature is critical. Their use reduces corrosion and maintenance costs, promotes even heating and improves product quality.
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P.O.A.
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P.O.A.
1
Technical Document
Specifications
Male Connection
3/8 in BSP
Body Material
Brass
Height
70mm
Maximum Working Pressure
10 bar
Male Thread Size
3/8in
Thread Standard
BSP
Country of Origin
Italy
Product details
Automatic Air Vent
High quality automatic air vents for use in heating systems to vent air when commissioning a system. The device consists of a polypropylene float connected to a simple valve. When the build-up of air within the float chamber exceeds a certain level the float drops, opening the valve and releasing the air trapped within the chamber. As the air is released, water replaces it, and moves the float back into the up position, which closes the valve
Max. working pressure: 10 bar
Max. working temperature: 110゚C
Body: Standard brass
Cap: Standard brass
Float: Heat resistant polypropylene
Air Vents
Air vents automatically remove air and other incondensable gases from steam systems, reducing heat transfer and affecting steam temperature. They improve heat transfer, while saving energy, and maintain process performance where temperature is critical. Their use reduces corrosion and maintenance costs, promotes even heating and improves product quality.