Wind power equipment drive mechanism

A technology of wind power equipment and transmission mechanism, which is applied in the direction of wind power engines, engines, mechanical equipment, etc., can solve the problems of sliding bearing migration and non-commercialization, and achieve the effect of preventing axial migration, preventing offset, and improving position fixity

Active Publication Date: 2018-07-20
MIBA SINTER AUSTRIA
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Problems often arise in these bearings: the outer ring of the bearing rotates due to the cyclic, periodic load, and due to the additional axial force, the rolling bearing also leaves its rated position axially and migrates
[0003] Plain bearing concepts for planetary gears of wind power installations have likewise been described, but have not been commercialized until now
However plain bearings also have a high probability of migration due to the acting loads

Method used

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  • Wind power equipment drive mechanism
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Embodiment Construction

[0025] As an introduction, it should first be explained that in the various embodiments described in different descriptions, the same components are configured with the same reference numerals or the same component names, and the disclosure contained in the entire description can be transferred to the configurations according to the meaning. On the same part with the same reference number or the same component name. Furthermore, the orientation descriptions selected in the specification, such as up, down, side, etc., are relative to the direct description and shown drawings, and when the orientation changes, they can be transferred to the new orientation according to the meaning .

[0026] As is known, a wind power installation comprises a tower at the upper end of which a nacelle is arranged, in which nacelle a rotor with rotor blades is mounted. This rotor is operatively connected via a wind power transmission to a generator also located in the nacelle, wherein the low rota...

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Abstract

The invention relates to a wind power plant gear mechanism (1) with an axle (5) and a gearwheel (2), wherein at least one plain bearing bush (4, 20) is arranged between the axle (5) and the gearwheel (2), and wherein the at least one plain bearing bush (4, 20) is connected to the gearwheel (2) via a conical press fit, wherein the at least one plain bearing bush (4, 20) has a first end surface (8) and a second end surface (9) which lies opposite the former along a longitudinal center axis (7) through the at least one plain bearing bush (4, 20), and wherein the first end surface (8) has a diameter d (10) and the second end surface (9) has a diameter D (11), wherein the diameter D (11) is greater than the diameter d (10), and wherein a bearing surface (13) for the at least one plain bearing bush (4, 20) is formed so as to adjoin the end surface (9) with the diameter D (11).

Description

technical field [0001] The invention relates to a transmission mechanism of a wind power installation, which comprises a shaft and a gear, at least one sliding sleeve is arranged between the shaft and the gear, and also relates to a wind power installation with a transmission mechanism of the wind power installation. Background technique [0002] Today, the only commercial solutions for supporting planetary gears in planetary gears of wind power installations are rolling bearing solutions. Problems frequently arise in these bearings: the bearing outer ring rotates due to the cyclic, cyclical load, and the rolling bearing also axially leaves its set position and shifts due to the additional axial force. In order to control this problem, a bearing scheme without an outer ring is proposed. [0003] Plain bearing concepts for planetary gears of wind power installations have likewise been described, but have not hitherto been commercialized. However, sliding bearings also have ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F16H57/08F03D80/70F16C33/10
CPCF16C33/08F16H57/0479F16H2057/085F03D15/00F05B2260/40311F16C17/04F16C33/1055F16D1/0858Y02E10/72F16C2360/31F16C2361/61F03D80/70Y10T74/1986F16C17/105F16C33/122F16H55/17
Inventor G·哈格J·S·赫茨尔
Owner MIBA SINTER AUSTRIA
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