The invention relates to a sealing ring having a first sealing surface arranged on the inner circumference thereof and at least one second sealing surface arranged on the outer circumference thereof.
A sealing ring of this type is already known in general. In particular, it is inserted into a receiving means of a component in which it is acted upon with force in the axial direction on both end faces. On account of the component tolerances, in particular the tolerances of the receiving means, there is no certainty here that it is made to fit axially in a precise manner. This means that there is either play in the axial direction, i.e. the sealing ring can be displaced in the axial direction, or there is axial pressing. Said pressing leads to deformation of the sealing ring such that the first sealing surface on the radial inner side of the sealing ring can also be deformed, as a result of which the sealing function is impaired. In the extreme case, this means that a sealing of a shaft, for example, cannot be securely guaranteed.
Proceeding from the prior art shown, the object underlying the invention is to further develop a sealing ring in such a manner that said sealing ring can be positioned in a fixed manner in the receiving means in the axial direction and any deformation of the sealing ring taking place, for instance, in the axial direction does not impair the sealing function of the first sealing surface. This object is achieved with a sealing ring wherein a compensation region, which can be at least partially deformed in an elastic manner in the axial direction, is arranged on at least one of the two end faces of the sealing ring. In this case, the idea underlying the invention is that a compensation region, which can be at least partially deformed in an elastic manner in the axial direction, is arranged on at least one of the two end faces of the sealing ring. The effect of said axial compensation region is that, with the component tolerances usually provided, an axial displacement of the sealing ring in the receiving means no longer takes place and that the at least one compensation region is able to absorb axial pressing forces which do not result in any deformation of the central region of the sealing ring supporting the second sealing region.
All combinations produced from at least two features disclosed in the description, the claims and/or the figures fall within the framework of the invention. In a particularly preferred embodiment, it is provided that two second sealing surfaces which are spaced apart in an axial manner and are arranged on a central region are provided, and in that the at least one compensation region connects to the central region in the axial direction. This means that a particularly good sealing effect and a radially uniform load of the sealing ring can be achieved.
In order to exclude deformation of the central region even where the central region is realized in a relatively flexible manner, it is provided in a further preferred embodiment that the compensation region is arranged in the region of a central axis of the central region, said central axis extending in the longitudinal direction. This means that no pitching moments or transverse forces that deform the central region can be generated when axial forces occur on the sealing ring.
In a particularly preferred further development of the invention it is provided that a compensation region is arranged in each case on both end faces of the sealing ring. This means axial forces can be transmitted to two compensation regions such that a particularly good springy effect of the compensation regions is achieved. In addition, when there is a sudden occurrence of axial forces from one of the two axial directions, they are absorbed by the respective compensation element before the sealing ring can be axially displaced in the receiving means.
A particularly good adaptation of the first sealing surface to the element to be sealed, for example a shaft, can be brought about when the first sealing surface is arranged on a sealing lip which projects radially inwards from the central region and is elastically resilient in a radial manner.
The axial deformability of the compensation region is ensured when the at least one compensation region has a width which is smaller than the width of the central region.
Further advantages, features and details of the invention are produced from the following description of preferred exemplary embodiments and by way of the drawings, in which:
The sealing ring 1 has a first sealing surface 6, which is arranged radially on the inside, and two second sealing surfaces 7 and 8, which are arranged radially on the outside and are spaced apart in an axial manner.
For the case where, on account of the component tolerances, in particular of the eccentric bush 3, this latter has a height in the region of the receiving means 4 that is greater than the axial extension of the sealing ring 1, it is possible, in contrast to this, for the sealing ring 1 to be arranged completely in the receiving means 4, but for said sealing ring not to assume a position there which is clearly defined in an axial manner.
A sealing ring 10 as claimed in the invention is now shown in
As can be seen in particular by way of
A sealing lip 25, which supports the first sealing surface 26 on its side protruding radially inwards, is integrally molded onto the central region 11 on the side protruding radially inwards.
The arrangement in
Number | Date | Country | Kind |
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10 2009 028 139.8 | Jul 2009 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP10/57628 | 6/1/2010 | WO | 00 | 4/16/2012 |