APPARATUS FOR CONNECTING TWO TURBINE HOUSINGS OF A TWO-STAGE TURBOCHARGER SYSTEM
20200011192 ยท 2020-01-09
Inventors
Cpc classification
F01D25/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B2200/99
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B37/013
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B37/004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N13/1805
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02T10/12
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F01D13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N13/1827
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D11/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N13/1861
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B7/0413
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2220/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N13/1855
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B67/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01D11/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An apparatus for connecting an exhaust gas outlet of a first turbine housing with an exhaust gas inlet of a second turbine housing of a two-stage turbocharger system, which features a pocket that is situated in the area of a first flange on the first turbine housing and features a projection that is arranged in the area of a second flange on the second turbine housing and is able to be inserted into the pocket. The projection is designed such that, after the projection has been inserted into the pocket, the first and second turbine housings are able to be tilted in relation to each other in order to establish a flush connection between the first flange and the second flange.
Claims
1. An apparatus for connecting an exhaust gas outlet (112) of a first turbine housing (110) with an exhaust gas inlet (212) of a second turbine housing (210) in a two-stage turbocharger system (10) having a pocket (130) situated in the area of a first flange (120) on the first turbine housing (110), and a projection (230), which is situated in the area of a second flange (220) on the second turbine housing (210) and can be inserted into the pocket (130), wherein the projection (230) is designed such that, after the projection (230) has been inserted into the pocket (130), the first and second turbine housings (110, 210) can be tilted in relation to one another in order to establish a flush connection between the first flange (120) and the second flange (220).
2. The apparatus according to claim 1, wherein the projection (230) is designed in the form of a strip, which extends in a linear direction from an outer wall (214) of the second turbine housing (210) and runs approximately parallel to a plane along which lies a connection area (222) for the second flange (220).
3. The apparatus according to claim 1, wherein the projection (230) has a lower side (232), which is disposed opposite a connection area (122) on the first flange (120) and features a chamfer (234).
4. The apparatus according to claim 1, wherein at least one connection means (700) is provided in order to attach the second turbine housing (210) to the first turbine housing (110).
5. The apparatus according to claim 1, wherein furthermore at least one locating pin (140) is provided in order to establish the position of the second turbine housing (210) in relation to the first turbine housing (110) during assembly.
6. A two-stage turbocharger system (10) having a first exhaust gas turbocharger (100) with a first turbine housing (110), and a second exhaust gas turbocharger (200) with a second turbine housing (210), wherein, situated in the area of a first flange (120) on the first turbine housing (110), the first turbine housing (110) features a pocket (130), into which projects a projection (230), which is arranged in the area of a second flange (220) on the second turbine housing (210), wherein, during the connection of the first and second turbine housings (110, 210), the projection (230) is designed such that, after the projection (230) has been inserted into the pocket (130), the first and second turbine housings (110, 210) can be tilted in relation to one another in order to establish a flush connection between the first flange (120) and the second flange (220).
7. The two-stage turbocharger system according to claim 6, wherein the projection (230) is designed in the form of a strip, which extends in a linear direction from an outer wall (214) of the second turbine housing (210) and runs approximately parallel to a plane along which lies a connection area (222) for the second flange (220).
8. The two-stage turbocharger system according to claim 6, wherein the projection (230) has a lower side (232), which is disposed opposite a connection area (122) on the first flange (120) and features a chamfer (234).
9. The two-stage turbocharger system according to claim 6, wherein at least one connection means (700) is provided in order to attach the second turbine housing (210) to the first turbine housing (110).
10. The two-stage turbocharger system according to claim 6, wherein a seal (600) is situated between the first flange (120) and the second flange (220).
11. The two-stage turbocharger system according to claim 6, wherein furthermore at least one locating pin (140) is provided in order to establish the position of the second turbine housing (210) in relation to the first turbine housing (110) during assembly, in particular wherein the locating pin (140) is situated in the connection area (122) of the first flange (120) and interacts with the projection (230) in order to position the first and second turbine housings (110, 210) in relation to one another.
12. The two-stage turbocharger system according to claim 6, wherein the two-stage turbocharger system (10) furthermore features a first compressor housing (300) having a compressor inlet (310) and a second compressor housing (400) having a compressor outlet (410), wherein the compressor outlet (410) and the compressor inlet (310) are connectable with one another by way of a plug connection (500).
13. The two-stage turbocharger system according to claim 12, wherein the plug connector (500) is designed to have a tubular shape and features a rigid center tube as well as a flexible outer casing, wherein there is a sealing bead (510) at each end of the plug connector (500).
14. A method for assembling a two-stage turbocharger system (10) having a first exhaust gas turbocharger (100), which features a first turbine housing (110), and a second exhaust gas turbocharger (200), which features a second turbine housing (210), comprising: inserting a projection (230) on the second turbine housing (210) into a pocket (130) in the first turbine housing (110); tilting the first turbine housing (110) and the second turbine housing (210) in relation to one another such that the first flange (120) of the first turbine housing (110) is situated flush against the second flange (220) of the second turbine housing (210); and attaching the first turbine housing (110) to the second turbine housing (210).
15. The method according to claim 14, furthermore comprising connecting a compressor inlet (310) of a first compressor of the two-stage turbocharger system (10) with a compressor outlet (410) of a second compressor of the two-stage turbocharger system (10) by way of a plug connection (500) during the insertion of the projection (230) into the pocket (130).
16. The apparatus according to claim 1, wherein the projection (230) has a lower side (232), which is disposed opposite a connection area (122) on the first flange (120) and features a chamfer (234) with a chamfer angle of from 2 to 7.
17. The apparatus according to claim 1, wherein the projection (230) has a lower side (232), which is disposed opposite a connection area (122) on the first flange (120) and features a chamfer (234) with a chamfer angle of from 4 to 5.
18. The two-stage turbocharger system according to claim 6, wherein the projection (230) has a lower side (232), which is disposed opposite a connection area (122) on the first flange (120) and features a chamfer (234), wherein the chamfer (234) has a chamfer angle of from 2 to 7.
19. The two-stage turbocharger system according to claim 6, wherein the projection (230) has a lower side (232), which is disposed opposite a connection area (122) on the first flange (120) and features a chamfer (234), wherein the chamfer (234) has a chamfer angle of from 4 to 5.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025]
[0026]
[0027]
DETAILED DESCRIPTION
[0028] Embodiments of the inventive apparatus for connecting two turbine housings of a corresponding two-stage turbocharger system will be described in reference to the drawings as follows. All of the following details and advantages apply to the connecting apparatus as well as to the two-stage turbocharger system having a corresponding apparatus. A method for assembling a two-stage turbocharger system will also be described.
[0029]
[0030] The connecting apparatus features a pocket 130 situated in the area of the first flange 120 of the first turbine housing 110 as well as a projection 230, which is situated in the area of the second flange 220 of the second turbine housing 210. The projection 230 is inserted into the pocket 130 in order to connect the two turbine housings 110, 210. The projection 230 is designed such that, after the projection 230 has been inserted into the pocket 130, the first and second turbine housings 110, 210 can be tilted in relation to each other in order to establish a flush connection between the first flange 120 and the second flange 220. This is made evident by comparing
[0031] As shown in
[0032] The projection 230 has a lower side 232, which is disposed opposite a connection area 122 on the first flange 120 (see
[0033] Once the first flange 120 and the second flange 220 are situated flush against one another, then at least one connection means 700 can be put in place in order to attach the second turbine housing 210 to the first turbine housing 110 (see
[0034] As was already referred to above, a seal 600 can be situated between the first flange 120 and the second flange 220. Through the tilting motion, both connection areas 122, 222 of the first and second flanges 120, 220 are pressed together with significant force. In the process, the seal is compressed between the two connection areas 122, 222. This readily apparent from the illustration at the bottom of
[0035] Furthermore, the apparatus for connecting the two turbine housings 110, 210 can be provided with at least one locating pin 140 in order to establish the position of the second turbine housing 210 in relation to the first turbine housing 110 during assembly. The locating pin 140 can, for example, be situated in the connection area 122 of the first flange 120 (as indicated in
[0036] The joining of the compressor inlet 310 of the first compressor housing 300 with the compressor outlet 410 of the second compressor housing 400 will be described in reference to
[0037] The method for assembling a two-stage turbocharger system will also be briefly discussed as follows. Initially, the two turbocharger assemblies may be assembled completely independently of one another. The first exhaust gas turbocharger 100 is then joined with the first turbine housing 110, and the second exhaust gas turbocharger 200 is joined with the second turbine housing 210, whereby the projection 230 of the second turbine housing 210 is inserted into the pocket 130 of the first turbine housing 110. This step is apparent in
[0038] While the projection 230 on the second turbine housing 210 is being inserted into the pocket 130 of the first turbine housing 110, the compressor inlet 310 of the first compressor is able to be connected with the compressor outlet 410 of the second compressor of the two-stage turbocharger system 10. This can take place, for example, by way of the plug connector 500. The plug connector 500 can, for example, have been previously inserted into the compressor outlet 410 of the second compressor housing 400. As a consequence, the two compressor housings 300, 400 as well as the two turbine housings 110, 210 can then be joined together. This approach not only simplifies assembly, but also reduces assembly time considerably. In addition, it is thereby possible to completely assemble the two turbocharger assemblies separately from one another.
[0039] Although the present invention has been described above and is defined in the attached claims, it should be understood that the invention may alternatively be defined in accordance with the following embodiments: [0040] 1. Apparatus for connecting an exhaust gas outlet (112) of a first turbine housing (110) with an exhaust gas inlet (212) of a second turbine housing (210) in a two-stage turbocharger system (10) having [0041] a pocket (130) situated in the area of a first flange (120) on the first turbine housing (110), and [0042] a projection (230), which is situated in the area of a second flange (220) on the second turbine housing (210) and can be inserted into the pocket (130), characterized in that the projection (230) is designed such that, after the projection (230) has been inserted into the pocket (130), the first and second turbine housings (110, 210) can be tilted in relation to one another in order to establish a flush connection between the first flange (120) and the second flange (220). [0043] 2. Apparatus according to embodiment 1, characterized in that the pocket (130) is situated in a wall of the first turbine housing (110) extending from the first flange (120). [0044] 3. Apparatus according to embodiment 1 or embodiment 2, characterized in that the projection (230) is designed in the form of a strip, which extends in a linear direction from an outer wall (214) of the second turbine housing (210) and runs approximately parallel to a plane along which lies a connection area (222) for the second flange (220). [0045] 4. Apparatus according to any of the preceding embodiments, characterized in that the projection (230) has a lower side (232), which is disposed opposite a connection area (122) on the first flange (120) and features a chamfer (234). [0046] 5. Apparatus according to embodiment 4, characterized in that the chamfer (234) has a chamfer angle of from 2 to 7, in particular from 4 to 5. [0047] 6. Apparatus according to any of the preceding embodiments, characterized in that at least one connection means (700) is provided in order to attach the second turbine housing (210) to the first turbine housing (110). [0048] 7. Apparatus according to any of the preceding embodiments, characterized in that a seal (600) is situated between the first flange (120) and the second flange (220). [0049] 8. Apparatus according to any of the preceding embodiments, characterized in that furthermore at least one locating pin (140) is provided in order to establish the position of the second turbine housing (210) in relation to the first turbine housing (110) during assembly. [0050] 9. Apparatus according to embodiment 8, characterized in that the locating pin (140) is situated in the connection area (122) of the first flange (120) and interacts with the projection (230) in order to position the first and second turbine housings (110, 210) in relation to one another. [0051] 10. Two-stage turbocharger system (10) having [0052] a first exhaust gas turbocharger (100) with a first turbine housing (110), and [0053] a second exhaust gas turbocharger (200) with a second turbine housing (210), [0054] wherein, situated in the area of a first flange (120) on the first turbine housing (110), the first turbine housing (110) features a pocket (130), into which projects a projection (230), which is situated in the area of a second flange (220) on the second turbine housing (210), characterized in that the projection (230) is designed such that, during the connection of the first and second turbine housings (110, 210), after the projection (230) has been inserted into the pocket (130), the first and second turbine housings (110, 210) can be tilted in relation to one another in order to establish a flush connection between the first flange (120) and the second flange (220). [0055] 11. Two-stage turbocharger system according to embodiment 10, characterized in that the pocket (130) is situated in a wall of the first turbine housing (110) extending from the first flange (120). [0056] 12. Two-stage turbocharger system according to embodiment 10 or embodiment 11, characterized in that the projection (230) is designed in the form of a strip, which extends in a linear direction from an outer wall (214) of the second turbine housing (210) and runs approximately parallel to a plane along which lies a connection area (222) for the second flange (220). [0057] 13. Two-stage turbocharger system according to any of the embodiments 10 to 12, characterized in that the projection (230) has a lower side (232), which is disposed opposite a connection area (122) on the first flange (120) and features a chamfer (234). [0058] 14. Two-stage turbocharger system according to embodiment 13, characterized in that the chamfer (234) has a chamfer angle of from 2 to 7, in particular from 4 to 5. [0059] 15. Two-stage turbocharger system according to any of the embodiments 10 to 14, characterized in that at least one connection means (700) is provided in order to attach the second turbine housing (210) to the first turbine housing (110). [0060] 16. Two-stage turbocharger system according to any of the embodiments 10 to 15, characterized in that a seal (600) is situated between the first flange (120) and the second flange (220). [0061] 17. Two-stage turbocharger system according to any of the embodiments 10 to 16, characterized in that also at least one locating pin (140) is provided in order to establish the position of the second turbine housing (210) in relation to the first turbine housing (110) during assembly. [0062] 18. Two-stage turbocharger system according to embodiment 17, characterized in that the locating pin (140) is situated in the connection area (122) of the first flange (120) and interacts with the projection (230) in order to position the first and second turbine housings (110, 210) in relation to one another. [0063] 19. Two-stage turbocharger system according to any of the embodiments 10 to 18, characterized in that the two-stage turbocharger system (10) furthermore features a first compressor housing (300) having a compressor inlet (310) and a second compressor housing (400) having a compressor outlet (410), wherein the compressor outlet (410) and the compressor inlet (310) are connectable with one another by way of a plug connection (500). [0064] 20. Two-stage turbocharger system according to embodiment 19, characterized in that the plug connection (500) is designed to have a tubular shape and feature a rigid center tube as well as a flexible outer casing. [0065] 21. Two-stage turbocharger system according to embodiment 20, characterized in that there is a sealing bead (510) at each end of the tube-shaped plug connection (500). [0066] 22. Method for assembling a two-stage turbocharger system having a first exhaust gas turbocharger (100), which features a first turbine housing (110), and [0067] a second exhaust gas turbocharger (200), which features a second turbine housing (210), comprising: [0068] inserting a projection (230) on the second turbine housing (210) into a pocket (130) in the first turbine housing (110); [0069] tilting the first turbine housing (110) and the second turbine housing (210) in relation to one another such that the first flange (120) of the first turbine housing (110) is situated flush against the second flange (220) of the second turbine housing (210); and [0070] attaching the first turbine housing (110) to the second turbine housing (210). [0071] 23. Method according to embodiment 22, furthermore comprising connecting a compressor inlet (310) of a first compressor of the two-stage turbocharger system with a compressor outlet (410) of a second compressor of the two-stage turbocharger system by way of a plug connection (500) during the insertion of the projection (230) into the pocket (130).