IP Library Granted Patent US 9,435,475
Granted Patent B2
US 9,435,475 · App. 14/407,359 · Granted Sep 6, 2016

Low-temperature conduit coupling

Inventor: Andreas Von Keitz (Dietz, DE)
F16L39/04F16J15/00F16L17/025F16L25/06F16L37/30Y10T137/87949
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Quick Facts
Patent No.
US 9,435,475
App. No.
14/407,359
Granted
Sep 6, 2016
Kind
B2
Abstract

A conduit coupling for low temperature applications includes two coupling halves that are equipped with a poppet valve and a stem-actuated valve, respectively, so as to open during a coupling process. The stem-actuated valve has a piston that seals by way of a spreading lip seal.

Claims (17)

1. A conduit coupling for connecting a first conduit to a second conduit to open or block a medium passage for low temperature media, comprising:

a first coupling half arranged in a course of a first conduit, which comprises a first tubular housing with an outer coupling groove, and a poppet valve with a spring biased valve disk that normally blocks a medium passage but can be pushed open;

a second coupling half arranged in a course of a second conduit, which comprises a second, three-part housing including a tubular jacket housing, a bell-shaped drive housing and a valve housing, and a stem-actuated valve including a valve stem and a valve piston that normally blocks said medium passage through an axial annular gap on the valve housing but clears said medium passage when being displaced by the drive housing, wherein the drive housing can take different rotational positions in order to engage and disengage coupling pins in the coupling groove and to rotate a cam groove to thereby drive a stem pin of the valve stem and the valve stem to open or close the stem-actuated valve, and to actuate the poppet valve of the first coupling half; and

a first spreading lip seal which, as an element of the valve piston, opens or closes the axial annular gap between the valve housing and the valve stem depending on the position of the drive housing.

2. The conduit coupling of claim 1 , wherein the first tubular housing comprises a radial coupling flange having a first axial annular inner surface, and wherein the valve housing of the second coupling half comprises a first axial flange end which has a second spreading lip seal cooperating with the first axial annular inner surface of the first coupling half when the conduit coupling is connecting the first conduit to the second conduit.

3. The conduit coupling of claim 1 , wherein the bell-shaped drive housing comprises a second axial annular inner surface, and wherein the valve housing comprises a second axial flange end which has a third spreading lip seal that cooperates with the second axial annular inner surface.

4. The conduit coupling of claim 1 , wherein the jacket housing of the second coupling half comprises a third axial annular inner surface, and wherein the drive housing of the second coupling half comprises an outer annular surface having a fourth spreading lip seal which cooperates with the third axial annular inner surface of the jacket housing.

5. The conduit coupling of claim 1 , wherein a ring seal is arranged on the valve piston in parallel to the first spreading lip seal.

6. The conduit coupling of claim 1 , wherein the valve disk of the first coupling half has a conical pressing lip seal.

7. The conduit coupling of claim 1 , wherein a hand wheel is mounted on the bell-shaped drive housing of the second coupling half for locking the coupling halves by engaging the coupling pins in the coupling groove and by rotating the drive housing with respect to the first tubular housing.

8. The conduit coupling of claim 1 , wherein the cam groove is a helical groove.

9. The conduit coupling of claim 1 , wherein the stem pin is formed as a shaft provided with rollers, which is arranged transversely to the motion direction of the valve stem.

10. The conduit coupling of claim 1 , wherein the bell-shaped drive housing has a ring portion of a larger diameter and a tubular portion of a smaller diameter.

11. The conduit coupling of claim 1 , wherein friction reducing linings are provided in a region of at least one of annular gaps between device elements that are movable relative to each other.

12. The conduit coupling of claim 11 , wherein the friction reducing linings comprise coatings containing polytetrafluoroethylene.

13. The conduit coupling of claim 1 , wherein the first tubular housing of the first coupling half includes a thermal barrier coating.

14. The conduit coupling of claim 10 , wherein the bell-shaped drive housing has each a thermal barrier coating on an inner surface of the ring portion and on an outer surface of the tubular portion.

Priority Claims (1)
DE 10 2012 104 990 · Jun 11, 2012 · national
Continuity (1)
Related Publication 20150114500A1 · Apr 30, 2015