Automatic draining back flow prevention device
US-9482353-B2 · Nov 1, 2016 · US
US10370834B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10370834-B2 |
| Application number | US-201615338877-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 31, 2016 |
| Priority date | May 23, 2008 |
| Publication date | Aug 6, 2019 |
| Grant date | Aug 6, 2019 |
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A double check valve is provided that includes an in-line inlet check valve and an outlet check valve that cooperate to prevent back flow of fluid through the valve. The check valve also includes at least one vent that allows for fluid trapped within the check valve to drain, thereby preventing freezing of the check valve and hydrant to which it is interconnected. The check valve provided omits many superfluous components and thus is smaller and easier to install than check valves of the prior art.
Opening claim text (preview).
What is claimed is: 1. A back flow prevention device, comprising: a valve body with a fixed inlet volume and a fixed outlet volume, said valve body also having a vent for allowing fluid from inside said valve body to escape; a valve cap; a seal positioned between said valve cap and said valve body, wherein said seal is adapted to selectively block said vent; an inlet check valve positioned within said inlet volume, wherein said inlet check valve comprises an inlet check body biased at least partially within said inlet volume; and an outlet check valve positioned within said outlet volume, wherein said outlet check valve comprises an outlet check body biased at least partially within said outlet volume, and wherein at least a portion of said inlet check body is moveably received within at least a portion of said outlet check body. 2. The device of claim 1 , wherein said valve body includes threads that are adapted to receive a hose. 3. The device of claim 1 , wherein said inlet volume and said outlet volume are separated by a wall. 4. The device of claim 3 , wherein said inlet check valve includes: an inlet check spring positioned within said inlet volume, wherein said spring contacts an upper surface of said wall, and wherein said inlet check body is positioned within said inlet check spring; and an inlet check seal interconnected to said inlet check body that is adapted to selectively engage said seal, thereby opening and closing an aperture of said seal to prevent fluid flow from said valve cap into said inlet volume. 5. The device of claim 3 , wherein said outlet check valve includes: an outlet check seal interconnected to said outlet check body that is adapted to selectively engage said seal to either open a flow path between said inlet volume and said outlet volume or isolate said outlet volume from said inlet volume, thereby preventing fluid from flowing from an interconnected hose into a sill cock; and an outlet check spring positioned about said outlet check body that contacts a portion of said outlet check body and a hub of a plunger. 6. A back flow prevention device comprising: a body with a fixed inlet volume and a fixed outlet volume, said body also having an aperture; a cap; a primary means for sealing positioned between said cap and said body, wherein said primary means for sealing is adapted to selectively block said aperture; an inlet means for selectively preventing flow of fluid positioned within said inlet volume, wherein said inlet means comprises an inlet check body disposed at least partially within said inlet volume; and an outlet means for selectively preventing flow of fluid positioned within said outlet volume, wherein said outlet means comprises an outlet check body disposed at least partially within said outlet volume, and wherein at least a portion of said inlet check body is moveably received within at least a portion of said outlet check body. 7. The device of claim 6 , wherein said body includes a means for selectively interconnecting that are adapted to receive a means for distributing fluid. 8. The device of claim 6 , wherein said inlet volume and said outlet volume are separated by a fixed internally-disposed wall. 9. The device of claim 8 , wherein said inlet means for selectively preventing flow of fluid includes: an inlet means for biasing positioned within said inlet volume, wherein said inlet means for biasing contacts an upper surface of said wall, wherein said inlet check body is positioned within said inlet means for biasing; and an inlet means for sealing interconnected to said inlet check body that is adapted to selectively engage said primary means for sealing, thereby opening and closing an aperture of said primary means for sealing to prevent fluid flow from said cap into said inlet volume. 10. The device of claim 8 , wherein said outlet means for selectively preventing flow of fluid includes: an outlet means for sealing interconnected to said outlet check body that is adapted to selectively engage said wall to either open a flow path between said inlet volume and said outlet volume or isolate said outlet volume from said inlet volume; and an outlet means for biasing positioned about said outlet check body that contacts a portion of said outlet check body. 11. A water delivery system comprising: a faucet associated with a water supply; a valve associated with said faucet that is adapted to selectively control a flow of fluid from said water supply through said faucet; and a double check valve associated with said faucet that prevents fluid from entering said water supply and that allows fluid within said faucet to drain therefrom when said valve is in an off position, said double check valve comprising: a valve body with a fixed inlet volume and a fixed outlet volume, said valve body also having a vent for allowing fluid from inside said valve body to escape, a valve cap, a seal positioned between said valve cap and said valve body, wherein said seal is adapted to selectively block said vent, an inlet check valve positioned within said inlet volume, wherein said inlet check valve comprises an inlet check body biased at least partially within said inlet volume, and an outlet check valve positioned within said outlet volume, wherein said outlet check valve comprises an outlet check body biased at least partially within said outlet volume, and wherein at least a portion of said inlet check body is moveably received within at least a portion of said outlet check body. 12. The device of claim 11 , wherein said seal defines an aperture and said inlet check valve includes: an inlet check spring positioned with said inlet volume, wherein said inlet check body is positioned within said inlet check spring; and an inlet check seal interconnected to said inlet check body that is adapted to selectively engage said seal, thereby opening and closing said aperture of said seal to prevent fluid flow from said valve cap into said inlet volume. 13. The device of claim 11 , wherein said inlet volume and said outlet volume are separated by a seat and said outlet check valve includes: an outlet check seal interconnected to said outlet check body that is adapted to selectively engage said seat to either open a flow path between said inlet volume and said outlet volume or isolate said outlet volume from said inlet volume, thereby preventing fluid from flowing from an interconnected hose into a sill cock; and an outlet check spring positioned about said outlet check body. 14. A back flow prevention device, comprising: a housing having first and second ends and including a means for connecting to a fluid inlet line at said first end and for connecting a fluid outlet line to said second end; a central cavity within said housing; a vent defined within said housing for allowing fluid from inside said housing to escape; a seal positioned between said means for connecting to said fluid inlet line and said housing, wherein said seal is adapted to selectively block said vent; and wherein said housing includes a valve system consisting essentially of first and second drain valves and is devoid of a third drain valve, said first drain valve located within said housing between said central cavity and said fluid inlet line to permit drainage of fluid from said fluid inlet line to said fluid outlet line end of said housing when said fluid outlet line is not connected thereto, and said second drain valve located within said housing between said central cavity and said fluid inlet line to control flow between said fluid inlet line and said central cavity, whereby said back flow prevent
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