Vehicle-wheel bearing device with sensor
US-2015375563-A1 · Dec 31, 2015 · US
US10151342B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10151342-B2 |
| Application number | US-201615763332-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 20, 2016 |
| Priority date | Oct 1, 2015 |
| Publication date | Dec 11, 2018 |
| Grant date | Dec 11, 2018 |
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Official abstract text for this publication.
Rolling bearing arrangements are disclosed. The bearing may include an outer ring, an inner ring, and a strain sensor device having an annular main body. The strain sensor device may be connected to the outer ring and configured to measure axial loads acting on the rolling bearing. A circle segment-shaped force introduction element may extend in a circumferential direction and connect to the annular main body via a web-shaped coupling element. The strain sensor device may have, on an outer end facing away from the rolling bearing, a recess for accommodating a strain sensor. The recess may extend over the force introduction element at least in the circumferential direction and the coupling element may have a smaller extent in a radial direction than the recess.
Opening claim text (preview).
The invention claimed is: 1. A rolling bearing arrangement comprising: a rolling bearing having an outer ring and an inner ring; and a strain sensor device, which is integrated into the outer ring or fastened to the outer ring, and configured to measure axial loads acting on the rolling bearing, wherein the strain sensor device has an annular main body; wherein the strain sensor device has, on an inner end, at least one force introduction element extending in a circumferential direction in a shape of a circle segment, and the force introduction element is connected to the annular main body via at least one web-shaped coupling element; wherein the strain sensor device has, on an outer end facing away from the rolling bearing, at least one recess for accommodating a strain sensor, wherein the recess extends over the force introduction element at least in the circumferential direction, wherein the coupling element has a smaller extent in a radial direction than the recess; and in that the annular main body is secured to a frame. 2. The rolling bearing arrangement as claimed in claim 1 , wherein the strain sensor device is embodied as a separate component, and it is fastened to an end of the outer ring. 3. The rolling bearing arrangement as claimed in claim 1 , wherein the strain sensor device is integrated in an edge region of the outer ring. 4. The rolling bearing arrangement as claimed in claim 1 , wherein the strain sensor is a strain gauge. 5. The rolling bearing arrangement as claimed in claim 1 , wherein the strain sensor includes sensor layers applied in a region of the recess. 6. The rolling bearing arrangement as claimed in claim 1 , wherein the strain sensor device comprises two symmetrically arranged force introduction elements and two recesses, each for accommodating one strain sensor. 7. A bearing arrangement comprising: a rolling bearing having an outer ring and an inner ring; a strain sensor device, which is integrated into the outer ring or fastened to the outer ring, and configured to measure axial loads acting on the rolling bearing, wherein the strain sensor device has an annular main body; a spindle supported by rolling bearings; wherein the strain sensor device has, on an inner end, at least one force introduction element extending in a circumferential direction in a shape of a circle segment, wherein the force introduction element is connected to the annular main body via at least one web-shaped coupling element; and wherein the strain sensor device has, on an outer end facing away from the rolling bearing, at least one recess for accommodating a strain sensor, wherein the recess extends at least over the force introduction element in the circumferential direction, wherein the coupling element has a smaller extent in a radial direction than the recess, and in that the annular main body is secured to a frame. 8. The bearing arrangement as claimed in claim 7 , wherein it has a machine frame for axial support of the spindle. 9. The bearing arrangement as claimed in claim 8 , wherein the strain sensor device is fastened to an end of the outer ring and to an end of the machine frame. 10. The bearing arrangement as claimed in claim 7 , wherein it comprises an evaluation unit, which is connected to the strain sensor, and is configured to process data supplied by the strain sensor. 11. A rolling bearing, comprising: an outer ring; an inner ring; a strain sensor device having an annular main body, connected to the outer ring, and configured to measure axial loads acting on the rolling bearing; a circle segment-shaped force introduction element extending in a circumferential direction and connected to the annular main body via a web-shaped coupling element; the strain sensor device has, on an outer end facing away from the rolling bearing, a recess for accommodating a strain sensor; and the recess extends over the force introduction element at least in the circumferential direction and the coupling element has a smaller extent in a radial direction than the recess. 12. The rolling bearing arrangement as claimed in claim 11 , wherein the strain sensor device is embodied as a separate component, and it is fastened to an end of the outer ring. 13. The rolling bearing arrangement as claimed in claim 11 , wherein the strain sensor device is integrated in an edge region of the outer ring. 14. The rolling bearing arrangement as claimed in claim 11 , wherein the strain sensor is a strain gauge. 15. The rolling bearing arrangement as claimed in claim 11 , wherein the strain sensor includes sensor layers applied in a region of the recess. 16. The rolling bearing arrangement as claimed in claim 11 , wherein the strain sensor device comprises two symmetrically arranged force introduction elements and two recesses, each for accommodating one strain sensor.
integral with other parts, e.g. with housings or machine elements such as shafts or gear wheels · CPC title
by using strain gages, piezoelectric, piezo-resistive or other ohmic-resistance based sensors · CPC title
using resistance strain gauges · CPC title
between housing and outer race ring · CPC title
outside the space between the races, e.g. end faces or bore of inner ring · CPC title
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