The present invention relates to a coupling device for holding together a coupling joint, said device comprising two coupling halves, which are articulated relative to one another and which may be joined together, said coupling device arranged in its active position to engage portions, preferably radial protrusions, of two interconnected pipes adjacent said coupling joint.
Coupling devices of the kind outlined above are well known. Other examples are coupling devices of hose-coupling type, i.e. in the form of a strap that is tightened by means of a screw. One problem found in coupling devices available on the market today is, however, that they are comparatively inconvenient to put in place, particularly in narrow spaces. Another problem is the difficulty to establish whether the coupling is correctly mounted, i.e. whether the coupling device grasps the coupling joint sufficiently.
The object of the present invention is to eliminate the above referred-to problems and also in other respects to provide an improved coupling device.
This object is now achieved in accordance with the teachings of the invention by means of a device possessing the characteristic features defined in the appended claim 1, preferred embodiments being defined in the subsequent claims 2-9.
Accordingly, in the inventive coupling device one of the coupling halves is formed with a catch and the other one with a holding portion that co-operates with the catch, one of the halves being provided with at least one protrusion and the other one with at least one recess, said protrusion and said recess arranged to co-operate to guide the catch on one of the coupling halves into a position, wherein it engages the holding portion on the other half. Owing to this arrangement, the catch on one of the coupling halves is locked against radial movements relative to the other half on which the holding portion is formed. Upon interconnection of the two halves, the catch is forced to flex radially outwards in order to engage the holding portion and it snaps into position when correctly located.
In accordance with a preferred embodiment of the invention, said protrusion is bevelled at least on one of its sides to facilitate its being fitted into said recess as the two coupling halves are being joined together. The bevelled side allows the protrusion to be more easily guided into the recess as the catch flexes radially outwards just prior to the catch snapping into engagement with the holding portion.
In accordance with another preferred embodiment of the invention it is instead said recess that is bevelled at least on one side for more convenient fitting together of recess and protrusion as the two coupling halves are being joined together.
According to yet another preferred embodiment of the invention said recess and said protrusion are bevelled at least on one side each for more convenient fitting together of recess and protrusion as the two coupling halves are being joined together.
In accordance with another preferred embodiment of the invention at least either the catch or the holding portion is bevelled in order to facilitate the joining-together of the two coupling halves. As the halves are being joined together the bevel allows the catch to slide easily across the holding portion to the snap-latch position.
According to a preferred embodiment of the invention the two coupling halves are integrally held together in a hinge. The advantage of this arrangement is that the coupling device constitutes one single piece with consequential easier manipulation for instance upon application of the coupling device. The fact that the coupling device may be formed as one single piece is advantageous also from a manufacturing point of view and thus provides an economical solution.
In accordance with another preferred embodiment of the invention the hinge is radially displaced in the mounted position of the device. The radial displacement of the hinge adds some flexibility to the coupling, which is an advantage when the two interconnected pipes expand and contract in response to changing temperatures. A coupling device formed with a radially displaced hinge thus adapts itself to changing pipe diameters. Also some dimensional inaccuracy in the pipes thus may be compensated for.
According to yet another preferred embodiment of the invention said coupling halves are formed with holding faces that are turned in opposite directions to be joined together to interengagement position. These designing features make it possible to use e.g. pliers to mount the coupling device correctly.
In accordance with another preferred embodiment of the invention said catch, when in engagement with the holding portion, is received in a recess in said portion for catch-protection purposes. This arrangement offers the catch additional protection against inadvertent disengagement.
The invention will be described in the following in more detail by means of one embodiment with reference to the accompanying drawing figures. In the drawings:
a-3c show the interconnection of two pipes by means of a coupling device in accordance with the present invention.
a, 5b are part sectional views through a locking portion along line V in
a, 6b are part sectional views through a locking portion along line VI in
The coupling device 1 shown in
To couple together two pipes 10 (see
As will be appreciated, a great many modifications of the above embodiment of the invention are possible within the scope of protection of the invention as defined in the appended claims. As described above the two coupling halves 6, 7 could for instance be of different sizes, i.e. one half could extend over e.g. 210 degrees around the pipes 10 while the second half extends over the remaining 150 degrees. Another possible modification is to form the protrusions 4 on the same coupling half as the holding portion 3. Yet another possibility is to use, instead of two protrusions 4 and two recesses 5 and one catch 2 and one holding portion 3, respectively, to use two catches 2 and one recess 5. Obviously, other combinations of the number of catches, holding faces 3, protrusions 4 and recesses 5 likewise are possible. In addition, the coupling device 1 could be used to interconnect two pipes 10 formed with grooves instead of with flanges 11. It is not either necessary that the flanges 11 or the grooves extend around the entire perimeter of the pipes 10.
Preferably, the protrusions 4 and/or the recesses 5 are bevelled in such a manner that a wedging effect is obtained serving to guide the two coupling halves 6, 7 into the intended position of engagement, i.e. to orientate the halves into a position, wherein the holding portion 3 is firmly guided in underneath the catch 2 in the radial direction, preferably also in the axial direction.
From
As will be appreciated it is within the scope of protection of the invention to provide a similar wedge-shaped guide edge at the rear edge of the recess to achieve a similar guide movement towards the position of engagement of the two halves of the clamp. Similar wedge-shaped faces could likewise be provided in the recess 5 as well as on the protrusion 4.
Number | Date | Country | Kind |
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0200631 | Mar 2002 | SE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/SE03/00097 | 1/22/2003 | WO | 00 | 1/24/2005 |
Publishing Document | Publishing Date | Country | Kind |
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WO03/074918 | 9/12/2003 | WO | A |
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08-152084 | Jun 1996 | JP |
Number | Date | Country | |
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20050121911 A1 | Jun 2005 | US |