Not applicable.
Not applicable.
Not applicable.
This invention is in the field of valve repair, more specifically in the field of repair of leaks in gas valves, and still more specifically in the field of repair of gas and liquid fill check valves.
Gas valves require perfect gas-tight seal, usually accomplished by very tight compression of polished round metal surfaces together (a “compression fitting” or “flare fitting”) or compression of resilient, gas-compatible polymeric material such as a washer or gasket against a polished metal surface, as in the case of a gas valve stem. The gas valve stem widely used for inflating a vehicle tire, recharging an air conditioner or refrigeration system, and other systems to which compressed gas may need to be added, comprises a hollow body through which gas pushes in one direction. In the remainder of this description, the invention will be described in terms of use in servicing refrigeration service ports such as the hot gas ports, cold gas ports, and liquid ports in refrigeration/air conditioning service, but the parts and their interaction will work in principle with modifications in part shapes that are used in many other compressed gas and liquid charging and discharging applications. The body is seated within a flare fitting in which a resilient portion of the exterior surface of the body is screwed tightly against the internal surface of the flare fitting. The annular bottom of the body is sealed against upward passage of gas by a small disc containing a resilient ring that is forced against the bottom of the body both by the pressure of the gas below it and a spring inside the body. The ring can be manually moved away from the bottom of the body by finger or tool pressure against a plunger connected to the disc, overcoming the gas pressure and the spring tension, allowing gas to escape. A secondary seal against gas leakage is provided by a valve cap that compression fits over the male flare fitting containing the valve stem. For this to work, both the interior of the cap and the exterior of the fitting must be perfectly round.
Compression and flare fittings are subject to damage by accidental tool blows, twisting, over-tightening, and/or cross-threading of mating parts. This damage is cumulative over years of servicing. Eventually, it may allow leakage between the male flare fitting and the cap or other mating part, which is not a problem as long as the valve stem itself seals properly. However, over time, the stem mechanism and its resilient parts may fail, allowing gas to leak continuously, requiring replacement of the stem. The stem must be unscrewed from within the male flare fitting using a special forked tool. If the male flare fitting is distorted, it may not allow the stem to be unscrewed. The interior of the flare fitting can sometimes be restored to sufficient roundness to allow the stem to be unscrewed by working it with a screwdriver, pliers and/or other tools, but such work is laborious and time-consuming, and not always successful. Even if such work allows the stem to be replaced, the cap seal may leak. Either way, in the case of air conditioning fill valves, replacing the entire flare fitting usually requires complete draining of the refrigerant, an even more laborious and time-consuming endeavor.
The principal object of this invention is to provide a simple, inexpensive, and reliable means for restoring the roundness of the flare fitting and removing the gas valve stem.
The present invention is a rod having a forked stem extractor on one end and having at the other end a cap with a flare fitting rounding tool built into it.
Referring now to the drawings, in which like reference characters refer to like elements among the drawings,
The invention 20 is depicted here as fork 12 connected to a cap 4 by a rod 1. It is within the scope of this invention to connect the fork 12 to the cap 4 directly or by intervening material of any shape such as, but not limited to, a crosspiece attached to the rod 1 to enable hand tightening of the cap 4 against the valve 60. The scope of this invention also includes the cap 4 by itself or in combination with hand-tightening means, without limitation. The scope of this invention further includes a cap 4 equipped with a downward projection 8 of a shape other than conical that performs in an equivalent manner, such as, by examples and not limitation, one formed by rotation of a plane geometric figure about the axis of the cap 4 such as would be produced by rotating a quadrant of a circle about the axis to produce a hemisphere.
Modifications and alterations to this invention will occur to others upon reading and understanding the above detailed description. The invention should be construed to include all such modifications and alterations as they may come within the scope of the appended claims or the equivalents thereof.
This nonprovisional patent application claims priority of U.S. provisional application No. 62/263,004, filed Dec. 1, 2015.
Number | Name | Date | Kind |
---|---|---|---|
1354201 | Kraft | Sep 1920 | A |
1390707 | Henemier | Sep 1921 | A |
1489364 | Schweienert | Apr 1924 | A |
1672082 | Oakley | Jun 1928 | A |
1756273 | Wynkoop | Apr 1930 | A |
1767884 | Heinrich | Jun 1930 | A |
1769663 | David | Jul 1930 | A |
1803373 | Wahl | May 1931 | A |
6862787 | Groves | Mar 2005 | B2 |
6944924 | Hayes | Sep 2005 | B2 |
20040060157 | Benefield | Apr 2004 | A1 |
20080127472 | Whitehead | Jun 2008 | A1 |
Number | Date | Country | |
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62263004 | Dec 2015 | US |