This application is a U.S. National Phase application submitted under 35 U.S.C. ยง371 of Patent Cooperation Treaty application serial no. PCT/DE2007/001808, filed Oct. 11, 2007, and entitled SEAL ARRANGEMENT, which application claims priority to German patent application serial no. DE 10 2006 049 634.5, filed Oct. 20, 2006, and entitled DICHTUNGSANORDNUNG, the specifications of which are incorporated herein by reference in their entireties.
The invention relates to a seal arrangement for sealing the gap between a stator and a rotor.
The DE 196 18 475 A1 discloses a sealing arrangement for a non-hermetic seal of a gap between a stator and a rotor. The sealing arrangement shown there has a brush seal having a bristle package with several bristles, the bristles being wound about a core element and fixed to the core element and the bristles having sealing bristle sections, which are at an angle to the shaft of the bristles and the free ends of which run against a sealing surface of the rotor. Such bristle seals with sealing bristle sections at an angle are also referred to as hooked bristle seals. The bristle package of the brush seal is accommodated in a space, which is bounded by a supporting element and a covering element. According to the DE 196 18 475 A1, the supporting element as well as the covering element has projections for supporting these sections of the sealing bristles, which are at an angle to the shafts of the bristles.
In the case of the seal arrangement, known from the prior art, a so-called blow-down effect may occur at the bristles of the bristle package, facing the flow. As a result of this effect, these sections of the sealing bristles are moved radially in the direction of the rotor. Accordingly, the sections of sealing bristles are pressed against the rotor and thereby abraded appreciably by this blow-down effect, with the result of premature wear. Up to now, the prior art has not disclosed any seal arrangements with a hooked bristle seal, which counteracts the premature wear of the bristles resulting from the blow-down effect.
Starting out from the preceding, the present invention is based on the problem of creating a novel sealing arrangement.
This problem is solved by a sealing arrangement as claimed. According to the invention, the covering element has a supporting surface at an end adjacent to the sealing bristle sections, the supporting surface contacting the bristle shafts in a defined, though locally limited region, so that the radial mobility of the sealing bristle sections in the direction of the rotor is limited.
For the inventive sealing arrangement, the radial mobility of the sealing sections of the bristles of the brush seal in the direction of the rotor is limited, as a result of which the premature wear of the bristles by a blow-down effect can largely be eliminated and, consequently, the service life of the sealing arrangement can be lengthened.
Preferably, the stiffness of the covering element, forming the supporting surface, is at least twice that of the bristle package.
According to an advantageous further development of the invention, a section of the covering element, extending between the supporting surface of the covering element and a clamping element of the brush seal, is at a distance from the bristle package with formation of a space with respect to the supporting surface, in which there is no bending. Opposite to the supporting surface of the covering element, the supporting element has a bulge, which is at a distance from the bristle package with the formation of a cavity, there being sections, wherein the cavity on the supporting element side and the space on the covering element side, in which there is no bending, overlap.
Preferred further developments of the invention arise out of the dependent claims and the following description. Without limiting it, examples of the invention are explained in greater detail in the drawing, in which
The bristle package 14 is disposed in an accommodating space, which is bounded by a supporting element 18 and a covering element 19. The bristles 15 of the bristle package 14 have bristle shafts 20 as well as sealing bristle sections 21, which are at an angle to the bristle shafts 20, the free ends of the sealing bristle sections 21 running against a sealing surface 22 of the rotor 12.
In the sense of the invention here, the covering element 19 has a supporting surface 23 at an end adjacent to the sealing bristle section 21. The supporting surface 23 contacts the bristle shafts 20 in a defined, locally limited region and, moreover, in such a manner, that the radial mobility of the sealing bristle sections 21 in the direction of the rotor 12 is limited. Moreover, the radial mobility of the sealing bristle sections 21 in the direction of the rotor is limited in such a manner, that the brush seal can be closed only until it makes contact with the sealing surface 22 of the rotor 12.
According to
The radial mobility of the sealing bristle sections 21 of the bristle package 14 in the direction of the sealing surface 22 of the rotor 12 is limited by the inventive construction of the seal arrangement. As far as possible, the sealing bristle sections 21 are operated in the optimum line-to-line contact with the sealing surface 22 of the rotor 12. As a result, premature wear of the sealing bristle sections 21 can be avoided. By these means, the service life of the sealing arrangement is lengthened distinctly in comparison with that of the prior art.
According to
Preferably, the stiffness of the covering element 19, forming the supporting surface 23, is at least twice that of the bristle package 14 of the brush seal 13. By these means, bending of the cover element 19 as a result of the blow-down effect is avoided.
Aside from the reference symbols 10 to 26, three diameters D1 to D3 are also given in
In actual fact, however, static, that is, non-orbiting eccentricities of the rotor 12 relative to the brush seal 13, fixed to the stator, occur frequently. Such eccentricities may arise during the production or installation or may also be caused by loads, for example, as a result of gravity in the case of heavy rotors. In relation to the concentric operation, it may then be advantageous to reduce the diameter of the supporting surface 23 to a smaller value D3 (shown by the broken line in
Number | Date | Country | Kind |
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10 2006 049 634 | Oct 2006 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/DE2007/001808 | 10/11/2007 | WO | 00 | 6/5/2009 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2008/046390 | 4/24/2008 | WO | A |
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Number | Date | Country |
---|---|---|
196 18 475 | Nov 1997 | DE |
603 05 357 | Sep 2006 | DE |
1 006 301 | Jun 2000 | EP |
Number | Date | Country | |
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20100320696 A1 | Dec 2010 | US |