Device and method for measuring a wear condition of plain bearing or guide elements
US-2021349046-A1 · Nov 11, 2021 · US
US11209044B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11209044-B2 |
| Application number | US-201816647406-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 25, 2018 |
| Priority date | Sep 29, 2017 |
| Publication date | Dec 28, 2021 |
| Grant date | Dec 28, 2021 |
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A bearing body is provided. The bearing body includes first and second support surfaces inclined so as to slope upward from a side on the imaginary central vertical plane passing through an axis of a rotating shaft to be supported toward one and the other outer sides in the width direction of the rotating shaft. First and second transitional regions that respectively make transitions from the first and second support surfaces to a first and end surface of the bearing body on one side in the axial direction of the rotating shaft have a curved shape projecting obliquely upward such that an orientation of a normal line changes from a perpendicular direction to a parallel direction with respect to the axis of the rotating shaft toward one side from the other side in the axial direction of the rotating shaft.
Opening claim text (preview).
The invention claimed is: 1. A bearing body for supporting a rotating shaft so as to be rotatable around an axis, the bearing body comprising: a first end surface facing one side in an axial direction of the rotating shaft; a second end surface facing another side in the axial direction of the rotating shaft; and a first support surface and a second support surface respectively extending toward a first outer side and a second outer side in a width direction of the rotating shaft from an imaginary central vertical plane passing through an axis of the rotating shaft in the axial direction of the rotating shaft, wherein the first support surface and the second support surface are symmetrical to each other with respect to the imaginary central vertical plane, wherein the first support surface and the second support surface are each inclined so as to respectively slope upward from a first side and a second side on the imaginary central vertical plane toward the first outer side and the second outer side such that the rotating shaft disposed therebetween is slidably supported so as to be immovable in the width direction and rotatable around the axis, and wherein the first support surface and the second support surface respectively transition to the first end surface via a first transitional region and a second transitional region, and the first transitional region and the second transitional region each have a curved shape projecting obliquely upward such that an orientation of a normal line changes from a perpendicular direction to a parallel direction with respect to the axis of the rotating shaft from the another side toward the one side in the axial direction of the rotating shaft, wherein the first transitional region is provided over the entirety of the first support surface in the axial direction of the rotating shaft, and wherein the second transitional region is provided over the entirety of the second support surface in the axial direction of the rotating shaft. 2. The bearing body according to claim 1 , wherein the first support surface is inclined such that a lowest point of which is where the imaginary central vertical plane passes and such that the first support surface slopes upward from the lowest point toward the first outer side, the second support surface is inclined so as to slope upward from the lowest point toward the second outer side, and the first support surface and the second support surface form a V-groove as viewed in the axial direction of the rotating shaft. 3. The bearing body according to claim 1 , wherein the first support surface is inclined such that a lowest point of which is where the imaginary central vertical plane passes and such that the first support surface slopes upward from the lowest point toward one side in the width direction, the second support surface is inclined so as to slope upward from the lowest point toward the other side in the width direction, and the first support surface and the second support surface form a V-groove as viewed in the axial direction of the rotating shaft, and wherein the first transitional region is provided only in a part of a region between the lowest point and a highest point of the first support surface, and the second transitional region is provided only in a part of a region between the lowest point and the highest point of the second support surface. 4. The bearing body according to claim 1 , further comprising a first bearing body having the first support surface and a second bearing body having the second support surface and being separate from the first bearing body. 5. The bearing body according to claim 1 , further comprising an upper surface connecting upper ends of the first end surface and the second end surface to each other and a lower surface connecting lower ends of the first end surface and the second end surface to each other and forming an installation surface, wherein the first support surface and the second support surface are provided on the upper surface. 6. The bearing body according to claim 1 , wherein the bearing body has a ring shape, wherein the first end surface and the second end surface are annular, and wherein the first support surface and the second support surface are provided on an inner circumferential surface connecting radially inner ends of the first end surface and the second end surface to each other. 7. A bearing body for supporting a rotating shaft so as to be rotatable around an axis, the bearing body comprising: a first end surface facing one side in an axial direction of the rotating shaft; a second end surface facing another side in the axial direction of the rotating shaft; and a first support surface and a second support surface respectively extending toward a first outer side and a second outer side in a width direction of the rotating shaft from an imaginary central vertical plane passing through an axis of the rotating shaft in the axial direction of the rotating shaft, wherein the first support surface and the second support surface are symmetrical to each other with respect to the imaginary central vertical plane, wherein the first support surface and the second support surface are each inclined so as to respectively slope upward from a first side and a second side on the imaginary central vertical plane toward the first outer side and the second outer side such that the rotating shaft disposed therebetween is slidably supported so as to be immovable in the width direction and rotatable around the axis, wherein the first support surface and the second support surface respectively transition to the first end surface via a first transitional region and a second transitional region, and the first transitional region and the second transitional region each have a curved shape projecting obliquely upward such that an orientation of a normal line changes from a perpendicular direction to a parallel direction with respect to the axis of the rotating shaft from the another side toward the one side in the axial direction of the rotating shaft, wherein the first support surface and the second support surface respectively have a first planar region and second planar region extending from the second end surface from the another side toward the one side in the axial direction of the rotating shaft and terminating within a thickness of the bearing body, wherein the first transitional region starts from the one side in the axial direction of the first planar region, and wherein the second transitional region starts from the one side in the axial direction of the second planar region. 8. A bearing body for supporting a rotating shaft so as to be rotatable around an axis, the bearing body comprising: a first end surface and a second end surface respectively facing one side and another side in an axial direction of the rotating shaft; and a first support surface and a second support surface respectively disposed more toward a first outer side and a second outer side in a width direction of the rotating shaft than an imaginary central vertical plane passing through an axis of the rotating shaft in the axial direction of the rotating shaft, wherein the first support surface and the second support surface are symmetrical to each other with respect to the imaginary central vertical plane, wherein the first support surface and the second support surface are each inclined so as to slope upward from a side on the imaginary central vertical plane toward the first outer side and the second outer side such that the rotating shaft disposed therebetween is slidably supported so as to be immovable in the width direction and rotatable around the axis, wherein the first support surface and the second support surface each transition to the first
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