ROLLER BEARING UNIT WITH A SECURING RING, AND METHOD FOR DISASSEMBLING A SECURING RING
20200096040 ยท 2020-03-26
Assignee
Inventors
Cpc classification
F16C33/586
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C43/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2326/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C41/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/543
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2226/74
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C35/062
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/364
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A multi-row rolling bearing unit including an outer ring and at least two inner rings, between which rolling bodies are guided, and an elastic securing ring which engages in annular grooves of the inner rings, the securing ring having a U-shaped cross-sectional profile with two flanks which engage in the annular grooves.
Claims
1. A rolling bearing unit, comprising: at least one outer ring and at least two inner rings, between which rolling bodies are guided; wherein adjacent inner rings with axial front sides oriented toward one another are supported on one another and have, in order to secure an axial position, an elastic securing ring which engages in annular grooves of the inner rings; wherein the securing ring has a substantially U-shaped cross-sectional profile with two flanks which engage in the annular grooves; wherein the securing ring furthermore has a first and a second ring end; wherein a joint is formed in the circumferential direction between the two ring end; wherein an at least partially tapered projection is formed on the first ring end for simplified assembly of the securing ring, wherein a substantially flat lever tongue is formed on the second ring end for simplified disassembly of the securing ring; wherein the lever tongue is arranged axially between the annular grooves and is formed to be axially larger than an axial minimum distance between the two annular grooves; wherein an axial protrusion of the lever tongue is furthermore provided for actuation during disassembly of the securing ring.
2. The rolling bearing unit of claim 1, wherein the lever tongue is formed to be rectangular.
3. The rolling bearing unit of claim 1, wherein the axial protrusion is provided to receive a tool, wherein the respective inner ring has an edge which adjoins the respective annular groove and is provided as a fulcrum for the tool.
4. The rolling bearing unit of claim 1, wherein a joint which arises in the non-installed state between the two ring ends of the securing ring is larger than a joint which arises in the end position of the securing ring on the inner ring.
5. The rolling bearing unit of claim 1, wherein the securing ring is formed from a metallic material, in particular from a spring steel.
6. A securing ring for a rolling bearing unit, comprising: the securing ring having a substantially U-shaped cross-sectional profile with two substantially radially formed flanks; wherein the two flanks are provided to engage in annular grooves on inner rings of the rolling bearing unit and thus axially fix the inner rings; wherein the securing ring has a first and a second ring end; wherein a joint is formed in the circumferential direction between the two ring ends; wherein an at least partially tapered projection is formed on the first ring end for simplified assembly of the securing ring, wherein a substantially flat lever tongue is formed on the second ring end for simplified disassembly of the securing ring; wherein the lever tongue has an axial protrusion; wherein the lever tongue is formed to be axially larger than an axial minimum distance between the two annular grooves; wherein the axial protrusion is provided for actuation during disassembly of the securing ring.
7. A method for disassembling a securing ring from annular grooves of inner rings of a rolling bearing unit, comprising: pushing a tool into one of the two annular grooves on the inner ring; bearing against an axial protrusion on a lever tongue of the securing ring; and levering the tool in order to remove the securing ring from the annular groove
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Further measures which improve the disclosure are explained in greater detail below in conjunction with the description of a exemplary embodiment of the disclosure on the basis of the figures. In the figures
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DETAILED DESCRIPTION
[0018] According to
[0019] According to
[0020] In
[0021] According to
[0022] According to
[0023] The disassembly of securing ring 6 from annular groove 5b is represented in
LIST OF REFERENCE NUMBERS
[0024] 1a, 1b Outer ring [0025] 2a, 2b Inner ring [0026] 3a, 3b Rolling body [0027] 4a, 4b Front side [0028] 5a, 5b Annular groove [0029] 6 Securing ring [0030] 7a, 7b Flanks [0031] 8a, 8b Ring end [0032] 9 Joint [0033] 10 Projection [0034] 11 Lever tongue [0035] 12 Axial protrusion [0036] 13 Tool [0037] 14 Edge [0038] 15a, 15b Rolling body cage