RADIAL TURBINE HAVING A CLEANING DEVICE FOR CLEANING A GUIDE VANE RING AND METHODS FOR MOUNTING AND DEMOUNTING THE CLEANING DEVICE
20230383674 · 2023-11-30
Inventors
- Stefan GANTERT (Lottstetten, DE)
- Thomas RECHIN (Baden, CH)
- Tobias VOGT (Rickenbach, DE)
- Matthias RICHNER (Riniken, CH)
- Magnus FISCHER (Zürich, CH)
- Markus LOOS (Baden, CH)
Cpc classification
F01D25/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2220/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2230/72
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D9/045
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01D25/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a radial turbine. The radial turbine comprises: —a turbine housing having a radial gas inflow channel; —a nozzle ring, which is disposed in the radial gas inflow channel; and —an annular cleaning device for cleaning the nozzle ring. The annular cleaning device is connected to a cleaning-agent feed by means of an axially insertion-connectable supply line such that, after or during the demounting of the nozzle ring, the annular cleaning device can be removed from the turbine housing in the axial direction. The invention also relates to a method for mounting a cleaning device for cleaning a nozzle ring of a radial turbine and to a method for demounting the cleaning device.
Claims
1. A radial turbine, comprising: a turbine housing having a radial gas inflow channel; a nozzle ring which is arranged in the radial gas inflow channel; and an annular cleaning device for cleaning the nozzle ring, wherein the annular cleaning device is connected to a cleaning agent feed via an axially pluggable supply line, so that, after or with dismounting of the nozzle ring, the annular cleaning device can be removed from the turbine housing in the axial direction.
2. The radial turbine as claimed in claim 1, wherein the annular cleaning device is fixed in the axial direction exclusively via a fixing of the nozzle ring in the turbine housing.
3. The radial turbine as claimed in claim 1, wherein the nozzle ring is a nozzle ring which is open on one side having guide vanes, wherein the guide vanes extend from a bearing housing-side annular disc in the axial direction, and wherein the guide vanes in the mounted state are in contact with the annular cleaning device.
4. The radial turbine as claimed in claim 3, wherein the annular cleaning device has receptacles for the guide vanes.
5. The radial turbine as claimed in claim 1, wherein the nozzle ring is a closed nozzle ring having guide vanes, wherein the guide vanes are embodied to be integral with the annular cleaning device.
6. The radial turbine as claimed in claim 1, wherein the nozzle ring is a closed nozzle ring having guide vanes, wherein the guide vanes are arranged between a bearing housing-side annular disc and a turbine housing-side annular disc, and wherein the annular cleaning device is connected to the turbine housing-side annular disc.
7. The radial turbine as claimed in claim 1, wherein the annular cleaning device comprises several cleaning agent openings arranged over the circumference.
8. The radial turbine as claimed in claim 1, wherein the axially pluggable supply line is formed by means of a plug-in tube and a plug-in sleeve which are sealed off from one another by means of one or more seal elements.
9. The radial turbine as claimed in claim 8, wherein the plug-in tube is connected to the annular cleaning device.
10. The radial turbine as claimed in claim 1, wherein the axially pluggable supply line comprises at least one compensation element for compensation of thermal expansions.
11. The radial turbine as claimed in claim 1, wherein the axially pluggable supply line is formed by means of a plug-in tube and a plug-in sleeve which are sealed off from one another by means of one or more seal elements, wherein the axially pluggable supply line comprises at least one compensation element for compensation of thermal expansions, and wherein the at least one compensation element is part of at least one of the plug-in tube and/or the plug-in sleeve.
12. An exhaust gas turbocharger having a radial turbine, the radial turbine comprising: a turbine housing having a radial gas inflow channel; a nozzle ring which is arranged in the radial gas inflow channel; and an annular cleaning device for cleaning the nozzle ring, wherein the annular cleaning device is connected to a cleaning agent feed via an axially pluggable supply line, so that, after or with dismounting of the nozzle ring, the annular cleaning device can be removed from the turbine housing in the axial direction.
13. A method for mounting a cleaning device for cleaning a nozzle ring of a radial turbine, comprising: axial pushing-in of the annular cleaning device into a corresponding receptacle of a turbine housing of the radial turbine; axial connecting of the annular cleaning device to a cleaning agent feed via an axially pluggable supply line; and fixing the annular cleaning device by means of a fixing of the nozzle ring.
14. A method for dismounting an annular cleaning device for cleaning a nozzle ring of a radial turbine, comprising: releasing a fixing of the nozzle ring, releasing an axial plug-in connection in a supply line from a cleaning agent feed to the annular cleaning device; and axial removal of the annular cleaning device.
15. The radial turbine as claimed in claim 1, wherein the nozzle ring is a closed nozzle ring having guide vanes, wherein the guide vanes are arranged between a bearing housing-side annular disc and a turbine housing-side annular disc, and wherein the annular cleaning device is connected to the turbine housing-side annular disc by means of a connection selected from a screw connection and a welded connection.
16. The radial turbine as claimed in claim 1, wherein the axially pluggable supply line is formed by means of a plug-in tube and a plug-in sleeve which are sealed off from one another by means of one or more sealing rings.
17. The radial turbine as claimed in claim 8, wherein the plug-in tube is embodied to be integral with the annular cleaning device.
18. The radial turbine as claimed in claim 10, wherein the at least one compensation element is a bellows.
19. The method of claim 13, fixing the annular cleaning device by means of a fixing of the nozzle ring is done so that the annular cleaning device is fixed exclusively via the fixing of the nozzle ring with respect to the turbine housing.
20. The method of claim 14, wherein for axial removal of the annular cleaning device exclusively the fixing of the nozzle ring and the axial plug-in connection in the supply line are to be released.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0014] The invention should be explained below on the basis of exemplary embodiments represented in figures, from which exemplary embodiments further advantages and modifications arise. In the figures:
[0015]
[0016]
[0017]
[0018]
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[0020]
[0021]
[0022]
DETAILED DESCRIPTION OF THE FIGURES
[0023] Various embodiments are described below, of which one or more examples are represented in each illustration. Each example serves the purpose of explanation and is not to be regarded as a restriction. For example, features which are represented or described as part of an embodiment can be used in combination with any other embodiment in order to obtain a further embodiment. It is intended that the present disclosure encompasses such modifications and variations.
[0024] In the following description of the drawing, identical reference numbers relate to identical or similar components. Only the differences in relation to the individual embodiments are generally described. Unless indicated otherwise, the description of one part or aspect in one embodiment can relate to a corresponding part or a corresponding aspect in another embodiment.
[0025] A radial turbine 20 having a cleaning device 10 according to the present disclosure is described with reference to
[0026] According to one embodiment which can be combined with other embodiments described herein, the radial turbine 20 comprises a turbine housing 21 with a radial gas inflow channel 22. The radial turbine 20 furthermore comprises a nozzle ring 23 which is arranged in the radial gas inflow channel 22. The radial turbine 20 further comprises an annular cleaning device 10 for cleaning the nozzle ring 23. The annular cleaning device 10 is connected to a cleaning agent feed 13 via an axially pluggable supply line 12 in such a manner that after or with dismounting of the nozzle ring 23 the annular cleaning device 10 can be removed from the turbine housing 21 in the axial direction. In particular, the annular cleaning device 10 is mounted in the turbine housing 21 in such a manner that the annular cleaning device 10 can be dismounted without releasing external connection or mounting elements. The term “external connection or mounting elements” should be understood as those connection or mounting elements which, in the mounted state, are located at least partially outside the turbine housing.
[0027] A radial turbine having a cleaning device for cleaning a nozzle ring can thus advantageously be provided which is advantageously configured such that it can be easily mounted and dismounted so that the maintenance outlay is reduced in comparison with the prior art.
[0028] According to one embodiment which can be combined with other embodiments described herein, the annular cleaning device 10 comprises several cleaning agent openings 111 arranged over the circumference, as is represented by way of example in
[0029] According to one embodiment which can be combined with other embodiments described herein, the annular cleaning device 10 is fixed in the axial direction exclusively via a fixing of the nozzle ring 23 in the turbine housing 21. In other words, the fixing of the nozzle ring 23 fixes the axial position of the cleaning device 10 in relation to the turbine housing 21, wherein no additional fixing is provided for fixing the axial position of the cleaning device 10.
[0030] According to one embodiment which can be combined with other embodiments described herein, the nozzle ring 23 can be a nozzle ring which is open on one side. The nozzle ring which is open on one side typically has guide vanes 24 which extend from a bearing housing-side annular disc 25 in the axial direction, as is represented by way of example in
[0031] According to one alternative embodiment, there is no contact between the guide vanes 24 and the annular cleaning device 10. It should be noted in this context that the annular cleaning device 10 can be fixed by means of inner fixing elements in the turbine housing 21. The term “inner fixing elements” should be understood as those fixing elements which, in the mounted state, are arranged entirely inside the turbine housing.
[0032] According to one embodiment which can be combined with other embodiments described herein, the nozzle ring 23 is a closed nozzle ring with guide vanes 24 which are embodied to be integral with the annular cleaning device 10.
[0033] As is represented by way of example in
[0034] According to one embodiment which can be combined with other embodiments described herein, the nozzle ring 23 is a closed nozzle ring with guide vanes 24 which are arranged between a bearing housing-side annular disc 25 and a turbine housing-side annular disc 26, as is represented by way of example in
[0035] According to one embodiment which can be combined with other embodiments described herein, the axially pluggable supply line 12 is formed by means of a plug-in tube 121 and a plug-in sleeve 122, as is represented by way of example in
[0036] With reference to
[0037] According to one embodiment which can be combined with other embodiments described herein, the axially pluggable supply line 12 comprises at least one compensation element 14 for compensation of thermal expansions, as is represented by way of example in
[0038] According to a first aspect of the invention, the radial turbine according to the embodiments described herein is used for an exhaust gas turbocharger so that an exhaust gas turbocharger having a radial turbine according to the embodiments described herein is provided.
[0039] A further aspect of the invention relates to a method 30 for mounting a cleaning device 10 for cleaning a nozzle ring 23 of a radial turbine 20. The method for mounting the cleaning device is illustrated schematically by the block diagram represented in
[0040] A further aspect of the invention relates to a method 40 for dismounting a cleaning device 10 for cleaning a nozzle ring 23 of a radial turbine 20. The method 40 for dismounting the cleaning device is illustrated schematically by the block diagram represented in
[0041] It should be noted that the method 30 for mounting and the method 40 for dismounting a cleaning device typically involve the cleaning device 10 for cleaning a nozzle ring 23 of a radial turbine 20 according to any one of the embodiments described herein.
LIST OF REFERENCE NUMBERS
[0042] 10 Annular cleaning device [0043] 101 Central axis [0044] 111 Cleaning agent openings [0045] 112 Welded connection [0046] 113 Screw connection [0047] 12 Axially pluggable supply line [0048] 121 Plug-in tube [0049] 122 Plug-in sleeve [0050] 123 Sealing element(s) [0051] 13 Cleaning agent feed [0052] 14 Compensation element [0053] 141 First compensation element [0054] 142 Second compensation element [0055] 20 Radial turbine [0056] 21 Turbine housing [0057] 22 Radial gas inflow channel [0058] 23 Nozzle ring [0059] 24 Guide vanes [0060] 25 Bearing housing-side annular disc [0061] 26 Turbine housing-side annular disc [0062] 27 Receptacle in the turbine housing [0063] 30 Method for mounting a cleaning device [0064] 31, 32, 33 Blocks of the block diagram to illustrate the method for mounting the cleaning device [0065] 40 Method for dismounting a cleaning device [0066] 41, 42, 43 Blocks of the block diagram to illustrate the method for dismounting the cleaning device