Applicant claims priority under 35 U.S.C. §119 of German Application No. 10 2004 055 537.0 filed Nov. 17, 2004. Applicant also claims priority under 35 U.S.C. §365 of PCT/EP 2005/010864 filed Oct. 8, 2005. The international application under PCT article 21 (2) was not published in English.
1. The Field of the Invention
The present invention relates to a pipe connection having a metallic clamping ring which, for the purpose of connecting two metallic pipes that have been inserted one into the other, can be pushed axially onto the pipe that lies on the outside, whereby the clamping ring, on its inside,
a) has an entry segment that narrows radially and conically, counter to the push-on direction,
b) has an end segment that narrows radially and conically, counter to the push-on direction, which segment brings about radial compression of the pipes, in the assembled position, and
c) has a center segment disposed between entry segment and end segment.
2. The Prior Art
Such a pipe connection is known from the German patent DE 38 37 359 C2.
Pipe connections of the present type serve to mechanically connect two metallic pipes with one another and, at the same time, to seal this connection. For this purpose, the pipes are inserted one into the other, and braced together by means of axially pushing on the clamping ring. So that the pipes can be inserted one into the other, the pipe lying on the outside must have a greater inside diameter than the outside diameter of the inner pipe. Fundamentally, it is therefore possible to either join two pipes having different rated diameters, or to join two pipes having the same diameter, whereby the end segment of one pipe must be widened in the region of the connection.
The previously known pipe connection according to the cited patent has proven itself in excellent manner in most cases of application. However, it has turned out that in two specific cases of application, the mechanical strength of the previously known connection requires improvement: for one thing, the torsion strength and tensile strength of the connection of two pipes made of a softer, less elastic metal such as a soft aluminum alloy, for example, is unsatisfactory; for another thing, in the case of steel pipes to which a high internal pressure is applied, a reduction in the holding forces is observed.
The present invention is therefore based on the task of further developing the pipe connection of the type stated initially, in such a manner that even pipes made of softer materials, or pipes having a high internal pressure, can be reliably and durably joined and sealed.
This task is accomplished in that the center segment is configured conically.
The conical configuration of the center segment can take place in two different ways, namely in such a manner that the center segment narrows or widens counter to the push-on direction. The first configuration variant is particularly practical if joining soft materials is the matter of concern. The deformation of the pipes takes place over a longer region, so that a more harmonious distribution of stresses occurs in the connection. The deformation no longer takes place only at certain points and plastically in the region of the end segment, but rather also elastically in the region of the center segment, so that the pipes are joined with a force fit there.
In particular, the conical center segment should be dimensioned in such a manner that the pipes are deformed in the plastic region in the transition region between center segment and end segment. Thus, a seamless transition from the elastic to the plastic region of the pipes is created.
The second configuration variant, which is characterized by a center segment that widens counter to the push-on direction, is particularly practical for joining pipes subject to internal pressure and having greater elasticity. Widening relieves stress on the connection in the region of the center segment, and results in a spring-back effect, which brings about wave-shaped anchoring of the two pipes in the case of subsequent increased stress at the end segment. Furthermore, the assembly forces are lowered, particularly when joining pipe materials having great strength and greater wall thickness.
The entry segment of the clamping ring can be divided, in advantageous manner, into two consecutive partial segments that narrow radially and conically counter to the push-on direction, whereby the first partial segment, disposed on the opening side, must have a greater incline than the second partial segment. By means of this measure, pushing on the clamping ring is significantly facilitated.
On its outside, in the region of the center segment, the clamping ring can advantageously be provided with a circumferential constriction. This promotes an elastic deformation of the ring in the region of the center segment, which leads to greater strength of the connection.
The present innovation will now be explained in greater detail using exemplary embodiments. For this purpose, the figures show:
A first configuration variant of the clamping ring 1 is shown in
The entry segment 2 in turn is composed of two partial segments, a first partial segment 2a disposed on the opening side, and a subsequent second partial segment 2b. The two partial segments 2a, 2b narrow conically, whereby the first partial segment 2a has a greater incline than the second partial segment 2b.
The center segment 3 also narrows conically. However, the incline is clearly less than that of the entry segments 2a, 2b. The end segment 4 is also divided into two parts, namely into a reduction segment 4a that narrows radially and conically, and a comparatively short cylinder segment 4b. The great incline of the reduction segment 4a serves to radially compress the pipes in the assembled position, partially all the way into the plastic region. The cylindrical segment 4b imprints its inside diameter onto this constriction. Here, the seal occurs once the connection has been joined. On its outside, the clamping ring 1 is provided with a circumferential constriction, which extends in the region of the center segment 3.
Nevertheless, it is possible to join two pipes 6*, 7 that have a different inside diameter. Thus, the outer pipe 6* shown in
The wave-shaped deformation of the pipes 6, 6* and 7* is clearly evident in
The clamping ring 1* having a widening center segment 3* is also suitable for joining pipes having the same diameter 6, 7, of which the outer pipe 6 is widened (cf.
Number | Date | Country | Kind |
---|---|---|---|
10 2004 055 537 | Nov 2004 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/EP2005/010864 | 10/8/2005 | WO | 00 | 5/16/2007 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2006/053609 | 5/26/2006 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
1926270 | Eastman | Sep 1933 | A |
3893720 | Moebius | Jul 1975 | A |
4026006 | Moebius | May 1977 | A |
4061367 | Moebius | Dec 1977 | A |
4598938 | Boss et al. | Jul 1986 | A |
4705302 | Beiley | Nov 1987 | A |
4793638 | Baldwin, Jr. | Dec 1988 | A |
4858968 | Moebius | Aug 1989 | A |
4911484 | Hackforth | Mar 1990 | A |
5181752 | Benson et al. | Jan 1993 | A |
5346262 | Liebig | Sep 1994 | A |
5470113 | Schwalm et al. | Nov 1995 | A |
5868435 | Bartholomew | Feb 1999 | A |
6049962 | Pfeiffer | Apr 2000 | A |
6367850 | Thrift et al. | Apr 2002 | B1 |
6715800 | Hennig | Apr 2004 | B1 |
20050012328 | Baving et al. | Jan 2005 | A1 |
20050264006 | McKay | Dec 2005 | A1 |
20060284415 | McKay | Dec 2006 | A1 |
20070108760 | McKay | May 2007 | A1 |
Number | Date | Country |
---|---|---|
38 37 359 | Jul 1989 | DE |
3815492 | Nov 1989 | DE |
44 12 615 | Nov 1994 | DE |
2217416 | Oct 1989 | GB |
Number | Date | Country | |
---|---|---|---|
20080122223 A1 | May 2008 | US |