This patent application is a U.S. National Phase of International Patent Application No. PCT/EP2014/072373 filed 10 Oct. 2014, which claims priority to German Patent Application No. 10 2014 000 384.6, filed 14 Jan. 2014 the disclosure of which are incorporated herein by reference in their entirety.
Illustrative embodiments relate to, at least in part, drawbacks as occur with comparable prior art rapid couplings. More specifically, illustrative embodiments may provide a rapid coupling in which the locking condition between the pipe nipple and the socket can be detected by an inexpensive additional element.
The sleeve provided may be a simple and light-weight structural element which presents the following advantages over the known rapid coupling:
(a) The compression spring, which is present in the known rapid coupling and increases the required space within the coupling, may be omitted. The coupling of the disclosed embodiments has a smaller overall length.
(b) Because no spring force has to be overcome when the pipe nipple is moved into the socket, the coupling of the disclosed embodiments may be more effortless to handle.
(c) The sleeve employed in the disclosed embodiments may be disposed on the outer side of the pipe nipple and—other than the compression spring of the known coupling—does not contact the fluid being conducted.
(d) The sleeve may have no influence on the interior design of the socket.
(e) The outer sleeve may be used to protect the socket of the coupling against dirt.
The embodiments of the disclosed embodiments may be particularly useful in view of its manufacture and handling.
In accordance with at least one embodiment, the sleeve has the additional function of protecting the coupling against pollution.
In accordance with at least one embodiment, the sleeve may have an elasticity advantageous for its functioning.
In accordance with at least one embodiment, the locking condition of the coupling may be precisely visible.
A disclosed embodiment will be explained in more detail below with reference to the drawings, in which:
The rapid coupling shown in
In accordance with
The sleeve 12 shown in
When assembling the coupling, the sleeve 12 is first mounted on the pipe nipple 11 until it is caught by the first annular groove 15 and retained there. The pipe nipple 11 is pushed into the socket 10 until the first annular groove 15 is caught by the looking ring disposed inside the socket 10, thereby locking the coupling. During this movement, the sleeve 12 first abuts with its flange 20 at the end wall of the socket 10 and is then pushed along the pipe nipple 11.
In the locked condition, in which the locking ring is caught by the first annular groove 15 of the pipe nipple 11, the inner projection 21 is caught by the second annular groove 17. This is recognizable by the fact that the second annular groove 17 disappears in the sleeve 12. In addition, the catching of the projection 21 of the sleeve 12 by the second annular groove 17 becomes visible in the area of the cut-outs 22. If the annular groove 17 is visible after the assembly, this indicates that the assembling process was incomplete.
In addition to this indicator function, the cut-outs 22 give the sleeve 12, which may be made of metal or plastic, a certain elasticity so that the sleeve 12 is retained on the pipe nipple 11 also outside the annular grooves 15, 17.
To release the coupling, the pipe nipple 11 is pulled out of the socket 10. The release process is done with a release tool which may take the form shown for instance in FIG. 12 of EP 0 467 381. After the sleeve 12 has been pushed back, the two tubular halves of that tool may be inserted in the gap between the pipe nipple 11 and the opening of the socket 12 to release the locking ring from the first annular groove 15.
The same release tool may be used for pushing the sleeve 12 from the annular groove 17 back into annular groove 15. This permits a multiple use of the sleeve 12.
In the alternative embodiment of
A rapid coupling having the features included in the preamble part of claim 1 is known from WO 2005/052431. There, the pipe nipple is pushed into the socket against the force of a compression spring until a circumferential groove provided on the pipe nipple catches in a locking ring disposed within the socket. The compression spring is so dimensioned that it pushes the pipe nipple out of the socket as long as the coupling is not locked by the circumferential groove catching the locking ring. The annular groove thus remains visible outside of the socket thereby indicating that the coupling is not locked.
Number | Date | Country | Kind |
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10 2014 000 387 | Jan 2014 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2014/072373 | 10/17/2014 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2015/104073 | 7/16/2015 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
4451069 | Melone | May 1984 | A |
5749606 | Lu et al. | May 1998 | A |
Number | Date | Country |
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0 226 689 | Jul 1987 | EP |
0 467 381 | Jan 1992 | EP |
2005052431 | Jun 2005 | WO |
Entry |
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Search Report and Written Opinion for International Patent Application No. PCT/EP2014/072373; dated Jan. 23, 2015. |
Number | Date | Country | |
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20160348821 A1 | Dec 2016 | US |