Condensate discharge device

F - Mech Eng,Light,Heat,Weapons – 16 – T

Patent

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Details

F16T 1/38 (2006.01)

Patent

CA 2199782

A condensate discharge device which prevents metal ions from attaching and depositing on the condensate discharge port surface. An inlet, a condensate discharge port, and an outlet are formed in a valve casing, which valve casing includes an upper casing and a lower casing. A valve seat member having a discharge passage is screwed into the lower casing. The discharge passage includes a first orifice having a smaller opening area than the condensate discharge port, and a second orifice having a smaller opening area than the first orifice. A movable member is mounted through the second orifice. On end of the movable member rests on one side of the second orifice, and another end is located on the other side of the second orifice. Condensate flows slowly through the condensate discharge port, preventing metal ions from attaching there, and flows rapidly through the second orifice. Any metal ions attaching to the second orifice are removed by moving action of the movable member, which moving action is caused by flow of condensate around the movable member.

Dispositif de décharge de condensat empêchant les ions métalliques de s'accrocher et de se déposer sur la surface de la lumière de décharge du condensat. Une entrée, une lumière de décharge du condensat et une sortie se trouvent dans le carter d'une soupape, carter qui comprend une partie supérieure et une partie inférieure. Un élément siège comportant un passage de décharge est vissé dans la partie inférieure du carter. Le passage de décharge comprend un premier orifice ayant une ouverture plus petite que la lumière de décharge et un deuxième orifice ayant une ouverture plus petite que celle du premier orifice. Un élément mobile est installé à travers le deuxième orifice. Une extrémité de l'élément mobile repose sur un côté du deuxième orifice et l'autre extrémité se trouve de l'autre côté du deuxième orifice. Le condensat coule lentement dans la lumière de décharge du condensat, empêchant ainsi les ions métalliques de s'y accrocher, et coule rapidement à travers le deuxième orifice. Tout ion métallique s'accrochant au deuxième orifice est enlevé par le mouvement de l'élément mobile, mouvement qui est causé par le débit de condensat autour de l'élément mobile.

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