ROLLING BEARING APPARATUS
20240271665 ยท 2024-08-15
Assignee
Inventors
Cpc classification
F16C2208/82
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2212/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2208/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C41/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/52
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16C41/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A rolling bearing apparatus includes an axis of rotation, a first machine element, a second machine element, a bearing ring attached to the first machine element and arranged concentrically on the axis of rotation, a set of cylinder rollers and a bypass apparatus. The set of cylinder rollers has a plurality of cylinder rollers and a cage. The set of cylinder rollers are arranged radially between the bearing ring and the second machine element, and directed radially transverse to the axis of rotation. The bypass apparatus forms an electrical connection between the first machine element and the second machine element. The bypass apparatus has an electrically conductive bypass conductor formed from loop-shaped stitched fibers and a holder attached on the bearing ring radially between the bearing ring and the first machine element. The holder is electrically conductively connected to the bypass conductor and holds the bypass conductor.
Claims
1. A rolling bearing apparatus, comprising: a set of cylinder rollers, a bearing ring, a bypass apparatus, a first machine element, and a second machine element, wherein: the set of cylinder rollers comprises a plurality of cylinder rollers and a cage, the bearing ring is arranged concentrically on an axially oriented axis of rotation of the rolling bearing apparatus, the set of cylinder rollers is provided with cylinder rollers arranged radially between the bearing ring and the second machine element, and directed radially transverse to the axis of rotation, at least one electrical connection between the first machine element and the second machine element is formed via the bypass apparatus, the bypass apparatus has a holder and at least one electrically conductive bypass conductor, and the holder and the bypass conductor are electrically conductively connected to one another, the holder is attached radially between the bearing ring and the first machine element on the bearing ring and holds the bypass conductor, and the bearing ring is attached to the first machine element, and the bypass conductor is formed from loop-shaped stitched fibers.
2. The rolling bearing apparatus according to claim 1, wherein the loop-shaped stitched fibers of the bypass conductor are stitched in a meandering manner.
3. The rolling bearing apparatus according to claim 1, wherein the loop-shaped stitched fibers of the bypass conductor are stitched with a double-superimposed meandering shape.
4. The rolling bearing apparatus according to claim 1, wherein the loop-shaped stitched fibers of the bypass conductor are arranged in a polygon shape.
5. The rolling bearing apparatus according to claim 1, wherein the loop-shaped stitched fibers of the bypass conductor have fiber cross sections which are open proximally to the axis of rotation.
6. The rolling bearing apparatus according to claim 1, wherein the loop-shaped stitched fibers of the bypass conductor are stitched with a further, concentrically arranged fiber bundle.
7. The rolling bearing apparatus according to claim 1, wherein the loop-shaped stitched fibers of the bypass conductor comprise constituents of carbon or derivatives of carbon.
8. The rolling bearing apparatus according to claim 1, wherein the loop-shaped stitched fibers of the bypass conductor are stitched on a textile base fabric.
9. A rolling bearing apparatus, comprising: an axis of rotation; a first machine element; a second machine element; a bearing ring attached to the first machine element and arranged concentrically on the axis of rotation; a set of cylinder rollers comprising: a plurality of cylinder rollers arranged radially between the bearing ring and the second machine element, the plurality of cylinder rollers being directed radially transverse to the axis of rotation; and a cage; and a bypass apparatus forming an electrical connection between the first machine element and the second machine element, the bypass apparatus comprising: an electrically conductive bypass conductor formed from loop-shaped stitched fibers; and a holder attached on the bearing ring radially between the bearing ring and the first machine element, wherein the holder is electrically conductively connected to the bypass conductor and holds the bypass conductor.
10. The rolling bearing apparatus of claim 9, wherein the loop-shaped stitched fibers are stitched in a meandering manner.
11. The rolling bearing apparatus of claim 9, wherein the loop-shaped stitched fibers are stitched with a double-superimposed meandering shape.
12. The rolling bearing apparatus of claim 9, wherein the loop-shaped stitched fibers are arranged in a polygon shape.
13. The rolling bearing apparatus of claim 9, wherein the loop-shaped stitched fibers have fiber cross sections which are open proximally to the axis of rotation.
14. The rolling bearing apparatus of claim 9, wherein the loop-shaped stitched fibers are stitched with a further, concentrically arranged fiber bundle.
15. The rolling bearing apparatus of claim 9, wherein the loop-shaped stitched fibers comprise constituents of carbon or derivatives of carbon.
16. The rolling bearing apparatus of claim 9, wherein the loop-shaped stitched fibers are stitched on a textile base fabric.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0041] In the following, the disclosure is explained in more detail with reference to exemplary embodiments. In the drawings:
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DETAILED DESCRIPTION
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[0053] The bypass apparatus 20 has a holder 21 and at least one electrically conductive bypass conductor 23, wherein the holder 21 and the bypass conductor 23 are electrically conductively connected to one another. The holder 21 is attached to the bearing ring 5, 11 radially between the bearing ring 5 and one of the machine elements 4, 30. The holder holds the bypass conductor 23, wherein the bearing ring 5 is attached to the machine element 31. The bypass conductor 23 is formed from loop-shaped stitched fibers.
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[0055] The bypass apparatus 20 has a holder 21, a retaining disk 24, an electrically conductive bypass conductor 23 and the sleeve 13. Retaining elements 25 are formed on a radially extending main body 27 of a retaining ring 22 of the holder 21, of which retaining elements only one retaining element 25 is visible in the representation according to
[0056] The bypass conductor 23 is clamped axially between the retaining disk 24 and a main body 27 of the retaining ring 22. The retaining disk 24 is fixed to the main body 27 with retaining clips 28. Of the retaining clips 28, only one retaining clip 28 is visible in the image due to the sectional view. In the rolling bearing apparatus 2 there is an electrical connection between the outer ring 11 via the clamps 29 and the annular disk 22 to the bypass conductor 23 and from the bypass conductor 23 to the sleeve 35 and from the sleeve 35 to the second machine element 9, 31.
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[0061] Clamping elements 54 are formed in one piece and made of one material on the retaining disk 51. The retaining disk 51 bears on the rear side against the bypass conductor 46 and axially penetrates one of the cutouts 56 with a clamping element 54. On the front side 57 of the retaining ring 50, the clamping element 54 engages behind the retaining ring 50 on the front side and bears axially with its radial end 58 against the front side 57 of the retaining ring 50. The retaining disk 51 on the rear side 59 of the retaining ring 50 and the clamping element 54 on the front side 57 of the retaining ring 50 form a form-fitting, but non-releasable, clamping connection 60 between the retaining ring 50, the bypass conductor 46 and the retaining disk 51. The retaining ring 50 and retaining disk 51 are components cut from sheet metal and cold-formed components.
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REFERENCE NUMERALS
[0067] 1 Rolling bearing apparatus [0068] 2 Set of cylinder rollers [0069] 4 Housing [0070] 5 First bearing ring [0071] 7 Cage [0072] 8 Cylinder roller [0073] 9 Shaft [0074] 11 Outer ring [0075] 13 Hollow-cylindrical component [0076] 16 Axis of rotation of the set of cylinder rollers [0077] 20 Bypass apparatus [0078] 21 Holder of the bypass apparatus [0079] 22 Retaining ring [0080] 23 Bypass conductor [0081] 24 Retaining disk [0082] 25 Retaining element [0083] 26 Cutout [0084] 27 Main body of the holder [0085] 28 Retaining clip [0086] 29 Clamp [0087] 30 First machine element [0088] 31 Second machine element [0089] 35 Sleeve [0090] 37 Lever arm [0091] 38 Inner seat surface [0092] 39 Outer seat surface [0093] 40 Radial depression, annular groove [0094] 41 Radial protrusions [0095] 45 Bypass apparatus [0096] 46 Bypass conductor [0097] 47 Holder of the bypass apparatus [0098] 48 Retaining element [0099] 49 Radial protrusion of the retaining element [0100] 50 Retaining ring [0101] 51 Retaining disk [0102] 52 Through-hole [0103] 53 Edge region of the through-hole [0104] 54 Clamping element [0105] 55 Clamp [0106] 56 Cutout [0107] 57 Front side of the retaining ring [0108] 58 End of the clamping element 14 [0109] 59 Rear side of the retaining ring [0110] 60 Clamping connection [0111] 61 Fiber bundles [0112] 62 Loop [0113] 63 Proximally open fiber cross sections [0114] 64 Concentrically arranged fiber bundles