Addow's checkvalved FDC

6173739
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Inventors

Addo, Abdul
Addo, Ali

Application #

222724

Filed

Dec-29-1998

Published

Jan-16-2001

Current US Class

137/360
137/512.1
137/550
137/583
169/16

International Classes

F16K 015/03

Field of Search

137/512.1 137/550 137/583 137/360 169/13 169/16

Examiners

Rivell; John

US Patent References

4043358   Flapper check valve
4342251   Anti-detonation pow...
4602654   Coupling for fire hy...
4850796   Centrifugal pump...
4973403   Suction head and s...
5241979   Structure of an elbo...
5269342   T-fitting
5301709   Check valve and m...
5318063   Fluid check valve...
5860449   Back-flow check va...
5884661   Swiveling fluid con...
5934558   Water display with...
5935434   In-line pipe coupli...
 

Referenced by:

View Backward References

Other References

Brochure from Potter-Roemer : Smith Industries, Inc. "Exposed Fire Dept Inlet Connections- Clapper Type" Date Unknown. Brochure from Reliable Automatic Sprinkler Co, Inc. Mt. Vernon, NY. Model B Fire Dept. Connection, Dec. 1996. Fire Protection Contractor Magazine Advertisement of Knox Company Fire Dept. Connector, Date Unknown.

Citation

Cite This Patent

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Abstract
Addow's FDC is different from current FDCs, because it is a FDC and a check valve in one. Addow's FDC saves labor and time when compared to the current FDC, because with current FDC, one has to install a check valve and then install the FDC. With Addow's FDC, it is a one step process. Addow's FDC is equipped with swivels which don't allow debris, garbage or trash to be deposited in the FDC and this makes Addow's FDC debris proof. Addow's FDC allows back flushing test to be performed by removing the 4 inch cap and reversing the FDC. Addow's FDC, unlike current FDCs, comes with three different styles of outlets, which are grooved, flange, and threaded. This gives the consumers more selections to suit their needs. Current FDCs come only with one style of outlet, which is threaded outlet.
 
Claims
What is claimed is:

1. A reversible fire department connection comprising two axially opposite ends, each end being removably coupled to a stand pipe attachment of a building fire sprinkler system, one end having one or more passages for accommodating normal in flow or out flow, and an axial passage closeable by a removable cap, a check valve comprising spring loaded pivotal clappers located in the other end, in a first operative position of the fire department connection water is supplied to the fire sprinkler system, and in a second operative position of the fire department connection water is drained from the sprinkler system by removing the cap and connecting the axial passage end to the standpipe attachment, and a removable filter comprising metallic screener with rubber coated outer circumference for stopping debris from entering the fire sprinkler system located in the one or more inlet passages.



Description
The word "FDC" stands for fire department connection. FDC is a device located outside of buildings which are equipped with automatic fire sprinkler systems or standpipe systems for fire protection or fire fighting purposes. FDC allows the fire fighters to pump water into a standpipe system or a fire sprinkler system without going inside a building. In case of a fire in a building equipped with fire sprinkler system, the fire fighters will pump water through the FDC to help the fire sprinklers extinguish the fire without going inside the building.

All existing or current FDCs are installed with check valves which allow the water to go in one direction only (in the system direction) and prevent any back flow of water. In other words, current FDCs depend on check valves in order not to let water to flow out of the sprinkler system and into outside of building. Addow's FDC doesn't need a check valve, because it has a check valve built within. Please refer to drawing section detail #B and notations #8 & 9. This detail shows spring loaded clappers that allow the water to flow in one direction only. Please refer to drawing elevation detail and legand #2 (FDC inlet). In case of a fire, the fire fighters will pump water through the FDC inlet by using a public fire hydrant and their fire engine at a pressure of 100 psi and higher. When this process occurs, the spring-loaded clappers of Addow's FDC open up or the clappers shall be pushed down by the bigger pressure of the fire engine and water flows through the FDC and into the fire sprinkler system. And as soon as the pumping of water is stopped, the clappers are pushed back to their original position by the spring. Therefore Addow's FDC is capable of preventing water to flow from the fire sprinkler system to outside, while current FDCs depend on check valves to prevent the back flow of water.
 
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