Keg coupler with secondary pressure regulator and systems using same
US-9828227-B2 · Nov 28, 2017 · US
US2016200561A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016200561-A1 |
| Application number | US-201614990673-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jan 7, 2016 |
| Priority date | Jan 8, 2015 |
| Publication date | Jul 14, 2016 |
| Grant date | — |
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Official abstract text for this publication.
A pressure regulator comprising a housing formed to include a bore therein, a piston moveably disposed within the bore wherein that piston comprises a first annular lip adjacent a first end, a spring disposed within said bore and comprising a first end and a second end, an adjustment cap moveably disposed in the bore, wherein the first end of the spring is in physical contact with the first annular lip and the second end of the spring is in physical contact with the adjustment cap.
Opening claim text (preview).
We claim: 1 . A pressure regulator comprising a housing formed to include a bore therein; a piston moveably disposed within said bore, wherein said piston comprises an annular lip adjacent a first end thereof; a spring disposed within said bore, and comprising a first end and a second end; an adjustment cap moveably disposed in said bore; wherein: said first end of said spring is in physical contact with said annular lip; and said second end of said first spring is in physical contact with said adjustment cap. 2 . The pressure regulator of claim 1 , wherein: said bore is defined by a cylindrical wall; said cylindrical wall is formed to include first threading therein. 3 . The pressure regulator of claim 2 , wherein: said adjustment cap is formed to include second threading formed on a periphery thereof; said second threading is configured to mesh with said first threading. 4 . The pressure regulator of claim 3 , wherein: rotating said adjustment cap in a first direction causes said adjustment cap to compress said first spring; rotating said adjustment cap in a second and opposite direction causes said adjustment cap to decompress said first spring; 5 . The pressure regulator of claim 4 , wherein: rotating said adjustment cap in said first direction increases the output pressure of the pressure regulator; rotating said adjustment cap in said second direction decreases the output pressure of the pressure regulator. 6 . The pressure regulator of claim 5 , wherein said adjustment cap is formed to include a plurality of key slots formed therein. 7 . The pressure regulator of claim 6 , wherein said adjustment cap is further formed to include an aperture extending therethrough. 8 . The pressure regulator of claim 7 , wherein: said piston comprises a piston shaft; said piston shaft passes through said aperture. 9 . The pressure regulator of claim 1 , wherein: said housing comprises an integral tail piece disposed on an input end; said housing comprises a first annular lip disposed on an output end. 10 . An assembly, comprising: a pressure regulator comprising a first housing formed to include a bore therein, a piston moveably disposed within said bore wherein said piston comprises a first annular lip adjacent a first end, a spring disposed within said bore and comprising a first end and a second end, an adjustment cap disposed in said bore, wherein said first end of said first spring is in physical contact with said first annular lip and said second end of said first spring is in physical contact with said adjustment cap; a keg coupler comprising a second housing, wherein said second housing is configured to releaseably attach a tail piece using a hex nut comprising an annular lip and formed to include an aperture extending therethrough, said hex nut further comprising threading formed on a wall defining said aperture; wherein said hex nut releaseably attaches said output end of said pressure regulator to said second housing. 11 . The assembly of claim 10 , wherein: said bore is defined by a cylindrical wall; said cylindrical wall is formed to include first threading therein. 12 . The assembly of claim 11 , wherein: said adjustment cap is formed to include second threading adjacent a first end; said second threading is configured to mesh with said first threading. 13 . The assembly of claim 12 , wherein: rotating said adjustment cap in a first direction causes said adjustment cap to compress said first spring; rotating said adjustment cap in a second, and opposite, direction causes said adjustment cap to decompress said first spring; 14 . The assembly of claim 13 , wherein: rotating said adjustment cap in said first direction increases the output pressure of the pressure regulator; rotating said adjustment cap in said second direction decreases the output pressure of the pressure regulator. 15 . The assembly of claim 14 , wherein said adjuster cap is formed to include a corresponding plurality of key slots formed therein. 16 . The assembly of claim 15 , wherein said adjustment cap is further formed to include an aperture extending therethrough. 17 . The assembly of claim 16 , wherein: said piston comprises a piston shaft; said piston shaft passes through said aperture. 18 . The assembly of claim 1 , wherein: said first housing comprises an integral tail piece disposed on an input end; said first housing comprises a first annular lip disposed on an output end.
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