TURBINE CASING COMPRISING A LOW-STRESS CONNECTION FLANGE, AND EXHAUST-GAS TURBINE HAVING SUCH A TURBINE CASING
20220268177 ยท 2022-08-25
Inventors
Cpc classification
F01D25/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D21/045
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2260/39
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2240/15
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2240/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2220/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2260/31
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2260/972
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D25/243
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D25/162
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01D25/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A turbine casing for an exhaust-gas turbine is provided herein. The turbine casing has a connection flange for bearing-casing-side attachment to a bearing casing in which casing-connection holes that are mutually spaced in the circumferential direction are provided, wherein, between adjacent casing-connection holes, material recesses that are open radially inwards towards a central longitudinal axis of the turbine casing are provided in the connection flange. Further provided herein is an exhaust-gas turbine that is equipped with the turbine casing.
Claims
1. A turbine casing for an exhaust-gas turbine, the turbine casing having a connection flange for bearing-casing-side attachment to a bearing casing, wherein casing-connection bores that are mutually spaced in a circumferential direction are provided, and wherein, between mutually adjacent casing-connection bores, material recesses that are open radially inward toward a central longitudinal axis of the turbine casing are provided in the connection flange.
2. The turbine casing as claimed in claim 1, wherein the mutually spaced casing-connection bores in the connection flange are arranged in the circumferential direction along at least one circle.
3. The turbine casing as claimed in claim 2, wherein the turbine casing has a clamping edge arranged adjacent to the casing-connection bores in a radial direction.
4. The turbine casing as claimed in claim 3, wherein the adjacent casing-connection bores are surrounded, at least in one section, by connection webs arranged in a manner recessed in the axial direction of the turbine casing with respect to the clamping edge, wherein the material recesses provided between each case of two adjacent casing-connection bores are arranged in a manner recessed in an axial direction of the turbine casing with respect to the connection webs.
5. The turbine casing as claimed in claim 4, wherein the clamping edge has, in a region between two adjacent casing-connection bores, a respective clamping edge recess that widens an annular depression.
6. The turbine casing as claimed in claim 5, wherein a first depth of the clamping edge recess coincides with a sum of a second depth of the annular depression and a third depth of the casing-connection bores provided in the annular depression, and wherein these depths extend in the axial direction of the turbine casing.
7. The turbine casing as claimed in claim 2, wherein the turbine casing is of a multi-piece design.
8. The turbine casing as claimed in claim 7, wherein the clamping edge forms a separate component of the turbine casing.
9. The turbine casing as claimed in claim 7, wherein a heat shield or a nozzle ring forms a separate component of the turbine casing.
10. The turbine casing as claimed in claim 9, wherein the clamping edge is part of the heat shield or of the nozzle ring.
11. An exhaust-gas turbine having the turbine casing as claimed in claim 1.
12. The exhaust-gas turbine as claimed in claim 11, wherein the exhaust-gas turbine has a bearing casing connected to the turbine casing, wherein the turbine casing is connected to the bearing casing by connection elements.
13. The exhaust-gas turbine as claimed in claim 12, wherein the exhaust-gas turbine has clamping elements that are each pressed against the connection flange of the turbine casing and against the bearing casing by one or more connection elements.
14. The exhaust-gas turbine as claimed in claim 11, wherein the clamping elements are pressed against the clamping edge.
15. The exhaust-gas turbine as claimed in claim 11, wherein the connection elements are screws or threaded pins.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031] In the drawings:
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
DETAILED DESCRIPTION OF THE DISCLOSURE
[0041]
[0042] A connection of the turbine casing to a bearing casing (not illustrated in
[0043] During the operation of the turbocharger, the material recesses 4 that are provided in contrast to the prior art cause faster and more uniform heating of the connection flange 2 of the turbine casing. Furthermore, owing to the material recesses 4 introduced into the connection flange 2, there is reduced rigidity of the turbine casing in the region of the connection flange 2. This, in turn, has the result that reduced thermal-transient stresses occur in the region of the connection flange 2 in comparison with the prior art. By virtue of this reduction in the thermal-transient stresses in the region of the connection flange, the service life of the turbine casing and thus also the service life of the entire turbocharger are extended.
[0044]
[0045]
[0046]
[0047] In this embodiment of the disclosure, the casing-connection bores 3 mutually spaced in the circumferential direction 9 are introduced into the depression bottom 6 of the annular depression 5.
[0048] Furthermore, in this embodiment, the material recesses 4 provided between in each case two adjacent casing-connection bores 3 are likewise introduced into the depression bottom 6 of the annular depression 5. These material recesses 4 extend in the radial direction 8 over the entire depression bottom 6.
[0049] By introducing the casing-connection bores 3 and the material recesses 4 into the depression bottom 6 of the annular depression 5, the thickness of the connection flange 2 of the turbine casing in the connection region of the turbine casing to the bearing casing and thus the thermal-transient stresses occurring in the connection flange 2 during the operation of the turbocharger are further reduced.
[0050]
[0051]
[0052]
[0053] General aspects of the disclosure are described below, wherein the reference signs relate to all of the abovementioned embodiments but what has been stated is not limited to any individual embodiment, instead being susceptible of combination with any desired embodiments and aspects.
[0054] According to one aspect, the flange thickness 19 of the connection flange 2 is reduced owing to the recesses 4 and 10 introduced into the connection flange 2 in addition to the casing-connection bores 3, and therefore the thermal-transient stresses occurring in the connection flange 2 are reduced in comparison with the prior art, leading to an extended service life of the turbine casing and thus of the entire turbocharger. This turbocharger has a turbine casing of the kind explained above.
[0055] According to another aspect, this turbocharger has a bearing casing connected to the turbine casing, wherein the turbine casing is connected to the bearing casing by means of connection elements 15, which are introduced into the casing-connection bores 3 of the turbine casing and which are, for example, screws or threaded pins.
[0056] According to another aspect, the turbocharger has clamping elements which are embodied as clamping lugs 16 and are each pressed against the connection flange 2 of the turbine casing and against the bearing casing 14 by one or more connection elements. In this case, the clamping elements are pressed against a clamping edge of the connection flange. It is also possible to use clamping disks or clamping rings, for example, instead of clamping lugs. The clamping elements may be designed to be at least slightly elastic in order to be able to yield at least slightly when the nuts are tightened.
[0057] According to a further aspect, the mutually spaced casing-connection bores 3 in the connection flange 2 are arranged in the circumferential direction along at least one circle, which may be at most three or at most two circles (concentric to one another and/or to the turbine axis) and extend along the entire at least one circle, and may be distributed at regular intervals over the entire circumference of the circle. The number of casing-connection bores required depends on the strength requirements in the event of damage (containment) and on the leaktightness requirements.
[0058] According to a further aspect, the mutually spaced casing-connection bores 3 in the connection flange 2 can also be arranged in the circumferential direction along two or more circles, wherein, for example, each second casing-connection bore 3 is arranged along a first circle and each casing-connection bore 3 lying therebetween is arranged along a second circle.
[0059] According to one aspect, the flange may have at least five casing-connection bores 3 and/or at least two, and at least four or at least five of the material recesses 4 between mutually adjacent casing-connection bores 3.
[0060] According to a further aspect, material recesses 4 are provided between all the casing-connection bores 3. The material recesses 4 are open radially inward. The material recesses 4 may be closed off in the axial direction by a (e.g. annular) rear side of the connection flange, and are therefore not continuous in the axial direction.
[0061] As an alternative, material recesses 4 may not be provided between all the casing-connection bores 3 but only where the effect on service life is relevant, e.g. in the region of the inlet into the spiral.
[0062] According to one aspect, the flange is arranged coaxially with the longitudinal central axis of the turbine casing.
[0063] According to another aspect, the flange is aligned with a bearing casing of the exhaust-gas turbine or is arranged for connection of the turbine casing to the bearing casing (optionally to part of a heat shield and/or of a diffuser ring between the flange and the corresponding part of the bearing casing).
[0064] According to one aspect, the recess 4 has an arc length in the circumferential direction of more than half the distance between the centers of the two casing-connection bores 3.
[0065] According to one aspect, the connection flange 2 has connection webs 19 which directly surround the casing-connection bores 3, at least in some section or sections, and which are arranged in the circumferential direction between the adjacent casing-connection bores 3 and the material recess 4 lying therebetween.
[0066] According to one aspect, the connection flange 2 has a clamping edge 7 arranged adjacent to the casing-connection bores 3 in the radial direction 8.
[0067] According to one aspect, the connection webs 19 extend radially inward, starting from the clamping edge 7. The clamping edge can be provided as a separate part of the turbine casing or can be provided integrally with the remainder of the turbine casing or connection flange.
[0068] According to one aspect, the turbine casing can be of multi-piece design. In this case, a heat shield or a nozzle ring can form a separate part of the turbine casing. In this case, the clamping edge of the turbine casing can be part of the heat shield or of the nozzle ring, i.e. can be integrated into the heat shield or the nozzle ring.
[0069] According to one aspect, the connection webs are arranged in a manner recessed in the axial direction with respect to the clamping edge 7. In other words, the clamping edge projects beyond the connection webs (e.g. in a direction away from the turbine casing or toward the bearing casing of the exhaust-gas turbine) in the axial direction (e.g. by less than 1 mm or even by a maximum of 0.5 mm and/or by more than 0.1 mm). Accordingly, the connection webs form part of a depression bottom. According to one aspect, the material recesses 4 provided between in each case two adjacent casing-connection bores are arranged in a manner recessed even further in the axial direction with respect to the connection webs.
[0070] According to one aspect, the clamping edge can extend continuously (without interruption) in the circumferential direction or can have recesses.
[0071] According to one aspect, the connection flange 2 has an annular depression 5, which has a depression bottom 6.
[0072] According to one aspect, the adjacent casing-connection bores 3 are introduced into the depression bottoms.
[0073] According to one aspect, the material recesses 4 provided between in each case two adjacent casing-connection bores are provided in the depression bottom.
[0074] As can be seen from the above explanations, an aspect of the present disclosure may relate to a turbine casing for an exhaust-gas turbine, which turbine casing has a connection flange for bearing-casing-side attachment of the turbine casing to a bearing casing of the exhaust-gas turbine. This connection flange may be a bearing-casing-side side wall of the turbine casing. The side wall of the turbine casing may be designed for direct connection to a turbine-side side wall of the bearing casing, or is connected directly to the turbine-side side wall of the bearing casing. The side wall of the turbine casing may be designed for connection to a turbine-side side wall of the bearing casing by means of a common connection element (penetrating into the casing-connection bores of the turbine casing), for example a connection screw, or is connected to the turbine-side side wall of the bearing casing by means of such a common connection element. According to an aspect, there are no radially outwardly directed connection flanges at the connection point, and/or such connection flanges are not required in order to connect the turbine casing to the bearing casing.
LIST OF REFERENCE SIGNS
[0075] 1 turbine casing [0076] 2 connection flange [0077] 3 casing-connection bore [0078] 4 material recess [0079] 5 annular depression in the connection flange [0080] 6 depression bottom [0081] 7 clamping edge of the connection flange [0082] 8 radial direction [0083] 9 circumferential direction [0084] 10 clamping edge recess [0085] 11 depth of the annular depression 5 [0086] 12 depth of the casing-connection bores 3 [0087] 13 axial direction; direction of the longitudinal central axis of the turbine casing [0088] 14 bearing casing [0089] 15 connection element [0090] 16 clamping element [0091] 17 nut [0092] 18 washer [0093] 19 connection web [0094] 20 sum of the depth of the annular depression 5 and the depth of the casing-connection bores 3 [0095] 21 longitudinal central axis of the turbine casing