Bearing Assembly of a Rotor of a Wind Turbine
20210348599 ยท 2021-11-11
Inventors
- Thorsten Rohrmann (Binder, DE)
- Peter Decker (Hannover, DE)
- Lutz Winter (Laatzen, DE)
- Janina Brencher (Hannover, DE)
Cpc classification
F03D80/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C17/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2237/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2300/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C17/107
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/108
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C43/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2360/31
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/72
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
International classification
F03D80/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C17/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C17/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A bearing assembly of a rotor of a wind turbine, namely for mounting the rotor in a fixed housing, includes: a plurality of rotor-side axial slide bearing segments, each configured to: engage on the rotor, rotate together with the rotor, and be supported against a sliding surface of the housing; a plurality of housing-side axial slide bearing segments, each configured to: engage on the housing, be fixed together with the housing, and be supported against a first sliding surface of the rotor; and a plurality of housing-side radial slide bearing segments, each configured to: engage on the housing, be fixed together with the housing and be supported against a second sliding surface of the rotor.
Claims
1-12. (canceled)
13. A bearing assembly (10) of a rotor (11) of a wind turbine, for mounting the rotor (11) in a fixed housing (12), comprising: a plurality of rotor-side axial slide bearing segments (13), each configured to: engage on the rotor (11), rotate together with the rotor (11), and be supported against a sliding surface (14) of the housing (12); a plurality of housing-side axial slide bearing segments (15), each configured to: engage on the housing (12), be fixed together with the housing (12), and be supported against a first sliding surface (16) of the rotor (11); and a plurality of housing-side radial slide bearing segments (21), each configured to: engage on the housing (12), be fixed together with the housing (12) and be supported against a second sliding surface (22) of the rotor (11).
14. The bearing assembly according to claim 13, further comprising a radial projection (17) of the rotor (11) configured as a rotor-side thrust collar secured to a hub or shaft (18) of the rotor (11), wherein the rotor-side axial slide bearing segments (13) are fastened to the radial projection (17).
15. The bearing assembly according to claim 14, further comprising, on the radial projection (17) of the rotor (11), axial projections (23), the axial projections (23) together with the radial projection (17) defining receiving pockets (24) for the rotor-side axial slide bearing segments (13).
16. The bearing assembly according to claim 15, wherein the housing-side axial slide bearing segments (15) are supported against the first sliding surface (16) of the rotor (11) provided by the rotor-side thrust collar (17).
17. The bearing assembly according to claim 16, wherein the housing-side radial slide bearing segments (15) are supported against the second sliding surface (22) of the rotor (11) provided by a hub or shaft of the rotor (11).
18. The bearing assembly according to claim 17, further comprising a housing-side segment holder (26) configured to receive both the housing-side axial slide bearing segments (15) and the housing-side radial slide bearing segments (21), wherein the segment holder (26) is detachably fastened to the housing (11).
19. The bearing assembly according to claim 18, wherein the segment holder (26) is segmented into a plurality of segments (27), wherein each segment (27) of the segment holder (26) receives at least one housing-side axial slide bearing segment (15) and at least one housing-side radial slide bearing segment (21).
20. The bearing assembly according to claim 19, wherein a number of the housing-side axial slide bearing segments (15) received on the respective segment (27) of the segment holder (26) corresponds to a number of the housing-side radial slide bearing segments (21) received on the respective segment (27) of the segment holder (26).
21. The bearing assembly according to claim 20, wherein each segment (27) of the segment holder (27) receives a single housing-side axial slide bearing segment (15) and a single housing-side radial slide bearing segment (21).
22. The bearing assembly according to claim 19, wherein the number of the housing-side axial slide bearing segments (15) received on the respective segment (27) of the segment holder (26) deviates from the number of the housing-side radial slide bearing segments (21) received on the respective segment (27) of the segment holder (26),
23. The bearing assembly according to claim 22, wherein, for removing a housing-side axial slide bearing segment (15), that housing-side radial slide bearing segment (21), which together with the housing-side axial slide bearing segment (15) to be removed is mounted on the same segment (27) of the segment holder (26), is initially demountable from the respective segment (27) of the segment holder (26), and wherein following this the respective segment (27) of the segment holder (26) is demountable from the housing (12) and removable together with the housing-side axial slide bearing segment (15) to be removed.
24. The bearing assembly according to claim 23, wherein on the housing (12) a threading opening (30) for the rotor-side axial slide bearing segments (13) is formed, via which the rotor-side axial slide bearing segments (13) are mountable and demountable.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Preferred further developments of the invention are obtained from the following description. Exemplary embodiments of the invention are explained in more detail by way of the drawings without being restricted to this. In the drawings:
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
DETAILED DESCRPIPTION OF THE PRESENTLY PREFERRED EMBODIMENTS
[0021] The invention relates to a bearing assembly of a wind turbine that is coupled to rotor blades. Such a rotor of the wind turbine is also referred to as main rotor of the wind turbine.
[0022]
[0023] The bearing assembly 10 of
[0024] Accordingly, the bearing assembly 10 comprises rotor-side axial slide bearing segments 13.
[0025] The rotor-side axial slide bearing segments 13 engage on the rotor 11 or are fastened to the rotor 11, rotate together with the rotor 11 and are supported against the housing 12, namely against an axial sliding surface 14 of the housing 12, which is formed on a housing section 12a of the housing 12 extending in the radial direction.
[0026] In addition to these rotor-side axial slide bearing segments 13, the bearing assembly 10 comprises housing-side axial slide bearing segments 15.
[0027] The housing-side axial slide bearing segments 15 engage on the housing 12 or are fastened to the housing 12, namely on a housing section 12b extending in the axial direction. These housing-side axial slide bearing segments 15 are supported on the rotor 11, namely against an axial sliding surface 16 of the rotor 11, which is formed by a radial projection 17 of the rotor 11, wherein the projection 17 is an integral part of a shaft 18 of the rotor 11. Originating from the shaft 18, the radial projection 17 extends to radially outside and in the circumferential direction round about the shaft 18. A hub 19 of the rotor 11, on which the rotor blades 20 engage, engages on the shaft 18.
[0028] In addition to the rotor-side axial slide bearing segments 13 and the housing-side axial slide bearing segments 15 the bearing assembly 10 comprises housing-side radial slide bearing segments 21.
[0029] These housing-side radial slide bearing segments 21 in turn engage on the housing 12 or are connected to the housing 12, wherein the housing-side radial slide bearing segments 21 in turn are supported on the rotor 11, namely on a circumferential sliding surface 22 of the rotor 11, which is defined by the shaft 18 of the rotor 11.
[0030] Accordingly, the bearing assembly 10 according to an aspect of the invention comprises at least the rotor-side axial slide bearing segments 13, the housing-side axial slide bearing segments 15 and the housing-side radial slide bearing segments 21, wherein the axial slide bearing segments 13, 15 are supported on axial sliding surfaces 14, 16, which run perpendicularly to the radial direction of the rotor 11, whereas the radial slide bearing segments 21 are supported on a circumferential sliding surface 21 of the rotor 11. A spherical shape of the sliding surfaces is not provided in the bearing assembly according to the invention.
[0031] The radial projection 17 of the shaft 18 of the rotor 11, on which the housing-side axial slide bearing segments 15 are supported, forms a rotor-side thrust collar. On this rotor-side thrust collar 17 or the radial projection 17, axial projections 23 (see in particular
[0032] The rotor-side axial slide bearing segments 13 are connected to the rotor 11, namely with the projection or the thrust collar 17, namely according to
[0033] Located opposite the side of the thrust collar 17, on which the rotor-side axial slide bearing segments 13 are connected to the thrust collar 17 of the rotor 11, the thrust collar 17 forms the axial sliding surface 16, on which the housing-side axial slide bearing segments 15 are supported.
[0034] The rotor-side axial slide bearing segments 13 comprise a holder 13a, in which the actual sliding body 13b is received.
[0035] The respective sliding body 13b is mounted in the holder 13a via a screw 13c, which extends through a cover 13d of the holder 13a into the sliding body 13b. Between the slide bearing 13b and the holder 13a a disc spring 13e is arranged here.
[0036] A housing-side segment holder 26 serves for mounting or fastening the housing-side slide bearing segments 15 and 21, namely the housing-side axial slide bearing segments 15 and the housing-side radial slide bearing segments 21 on the housing section 12b of the housing 12. This housing-side segment holder 26 is preferentially segmented and comprises multiple segments 27.
[0037] Each segment 27 of the segment holder 26 is connected to the housing 12 or fastened to the housing 12 by way of fasteners which are not shown. On each segment 27 of the housing-side segment holder 26 at least one housing-side axial slide bearing segment 15 and at least one housing-side radial slide bearing segment 21 are detachably fastened. This detachable fastening of the housing-side slide bearing segments 15, 21 on the respective segment 27 of the segment holder 26 in turn is effected by way of fastening devices which are not shown.
[0038] In the illustrated preferred exemplary embodiment, a single housing-side axial slide bearing segment 15 and a single housing-side radial slide bearing segment 21 are fastened to the respective segment 27 of the segment holder 26. In contrast with this it is also possible that on each segment 27 of the segment holder 26 multiple housing-side axial slide bearing segments 15 and multiple housing-side radial slide bearing segments 21 each are fastened, wherein then the number of the housing-side axial slide bearing segments 15 received on the respective segment 27 of the segment holder 26 preferentially corresponds to the number of the radial slide bearing segments received on the respective segment 27 of the segment holder 26.
[0039] Furthermore it is possible in contrast with this that the number of the housing-side axial slide bearing segments 15 received on the respective segment 27 of the segment holder 26 deviates from the number of the housing-side radial slide bearing segments received on the respective segment 27 of the segment holder 26, wherein it can be provided in a first version that on the respective segment 27 in particular two housing-side axial slide bearing segments 15 and a single housing-side radial slide bearing segment 21 or according to a second version a single housing-side axial slide bearing segment 15 and two housing-side radial slide bearing segments 21 are received.
[0040] Each of the housing-side axial slide bearing segments 15 comprises, just like each of the rotor-side axial slide bearing segments 13, a sliding body 15b, which is received in the respective segment 27 of the segment holder 26. Fastening of this sliding body 15b in the respective segment 27 is effected by way of a screw 15c penetrating a cover 15d, wherein between the sliding body 15b and the segment 27 of the segment holder 26 a disc spring 15e is positioned.
[0041]
[0042] In
[0043]
[0044] In the above manner, individual housing-side radial slide bearing segments 21 and individual housing-side axial slide bearing segment 15 can be individually accessed in the event of a failure of the bearing assembly 10.
[0045]
[0046] The bearing assembly 10 for the rotor 11 of a wind turbine according to an aspect of the invention can be easily produced, mounted and demounted. Individual slide bearing segments can be individually accessed so that in the event of a failure of the bearing assembly 10 it is not necessary to completely disassemble the drive train or completely disassemble the wind turbine. The slide bearing segments 13, 15 and 21 are partly supported by the housing 12 and partly by the rotor 11. The same can be individually mounted and demounted.
[0047] Although exemplary embodiments have been discussed in the above description, it should be noted that numerous modifications are possible. Furthermore, it should be noted that the exemplary embodiments are merely examples which are not intended to limit the scope of protection, the applications and the structure in any way. Rather, a person skilled in the art will take from the above description a guideline for implementation of at least one exemplary embodiment, wherein various modifications may be made, in particular with regard to the function and arrangement of the described components, without departing from the scope of protection as can be gathered from the claims and equivalent feature combinations.
LIST OF REFERENCE NUMBERS
[0048] 10 Bearing assembly [0049] 11 Rotor [0050] 12 Housing [0051] 12a Housing section [0052] 12b Housing section [0053] 13 Rotor-side axial slide bearing segment [0054] 13a Holder [0055] 13b Sliding body [0056] 13c Fastening screw [0057] 13d Cover [0058] 13e Disc spring [0059] 14 Sliding surface [0060] 15 Stator-side axial slide bearing segment [0061] 16 Sliding surface [0062] 17 Projection/thrust collar [0063] 18 Shaft [0064] 19 Hub [0065] 20 Rotor blade [0066] 21 Stator-side radial slide bearing segment [0067] 22 Sliding surface [0068] 23 Projection [0069] 24 Receiving space [0070] 25 Fastening screw [0071] 26 Segment holder [0072] 27 Segment [0073] 28 Bearing load [0074] 29 Reaction force [0075] 30 Mounting opening