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Sliding bearing rotating connection

A technology of rotating connection and sliding bearing, applied in the direction of sliding contact bearing, pivot connection, bearing of rotary motion, etc., can solve the problems of lubricant loss, high load, intrusion, etc., to improve damping characteristics, facilitate assembly, and improve assembly Effect

Active Publication Date: 2021-07-13
SCHAEFFLER TECH AG & CO KG
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In addition to the fact that such plain bearing swivel joints require maintenance, there is the additional problem that the bearing play, especially in the radial direction, cannot be adjusted, that is to say, the bearing always has some play, which leads to wear
Due to the high loads to be transmitted, it is also required to lubricate the sliding area, that is to say the area of ​​the guide mechanism, however, lubricant losses occur during operation, which are compensated by maintenance, in terms of For example, dirt can sometimes penetrate into the area of ​​the guide mechanism, which also leads to wear

Method used

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  • Sliding bearing rotating connection
  • Sliding bearing rotating connection
  • Sliding bearing rotating connection

Examples

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Embodiment Construction

[0030] figure 1 and in Figures 2 to 4 The shown sectional views in different planes show a plain bearing rotary connection 1 according to the invention with a solid first ring 2 embodied here as an inner ring and as an outer ring and consisting of two A solid second ring 3 is formed by two axially connected solid ring halves 3a, 3b.

[0031] On the ring 2 , which will be described below as the inner ring, and on the ring 3 , which will be described below as the outer ring, there are respectively arranged guides 4 , 5 which engage with each other, in the case of the guide 4 . The flange 6 on the inner ring 2 and, in the case of the guide 5 , a complementary groove 7 formed on the outer ring 3 , into which the flange 6 engages.

[0032] The flange 6 has a triangular cross-sectional shape. This flange is delimited by two guide surfaces 8 a , 8 b extending at an angle other than 90° relative to the axis of rotation D . The guide surfaces extend at a sharp angle at an angle of...

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Abstract

The invention relates to a sliding bearing rotary connection with first and second solid rings (2, 3), respectively, which are radially staggered, wherein the rings (2, 3) have grooves (6) in the form of ) and the guide mechanism (4, 5) complementary to each other and engaged with each other of the flange (7), wherein the groove (6) and the flange (7) respectively have at least two guide surfaces (8a, 8b, 9a, 9b), which slide one above the other or between which a sliding layer is arranged, wherein the guide surfaces (8a, 8b, 9a, 9b) are non-aligned with respect to the axis of rotation (D) 90° angle, and wherein at least one sealing element (22a, 22b, 23a, 23b) is respectively arranged on both sides of the guide surface, via which sealing elements live between the two rings (2, 3) existing Gap (30).

Description

technical field [0001] The invention relates to a sliding bearing rotary connection with first and second respectively solid rings arranged radially staggered relative to each other, wherein the rings have grooves in the form of grooves and flanges. Guiding mechanisms that complement each other and engage each other. Background technique [0002] Plain bearing rotary connections of this type are often used in applications in which large loads can be transmitted. Examples include areas of construction and agricultural machinery as well as railway vehicles or wind power installations in which parts that are rotatable relative to each other are often subjected to very high loads and shocks as well as static or oscillating motion. This is a solid bearing, ie the ring is solid in order to be able to transmit the load. Such a solid ring can also be embodied as a shaped ring, which has an L-shape, for example. [0003] Such plain bearing rotary connections known in the prior art...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F16C11/04F16C33/74
CPCF16C11/04F16C33/74F16C17/10F16C2300/14
Inventor 马丁·容维尔特优素福·穆杰布
Owner SCHAEFFLER TECH AG & CO KG