Rolling bearing
US-11493089-B2 · Nov 8, 2022 · US
US2024418214A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2024418214-A1 |
| Application number | US-202218706473-A |
| Country | US |
| Kind code | A1 |
| Filing date | Nov 14, 2022 |
| Priority date | Nov 16, 2021 |
| Publication date | Dec 19, 2024 |
| Grant date | — |
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Official abstract text for this publication.
A mechanical roller bearing comprising two bearing races each having a rolling track, rolling elements arranged between the races, the rolling elements being able to roll against a portion of the rolling tracks, the rolling elements being made of a defined material, wherein it includes a plurality of intermediate blocks arranged between the races, the intermediate blocks being made of a material having a greater stiffness than the stiffness of the material of the rolling elements in directions normal to the rolling tracks, and, when the bearing is subjected to loading below a threshold load, the intermediate blocks have a smaller dimension than the rolling elements in directions normal to the rolling tracks, the races having a greater stiffness than the rolling elements.
Opening claim text (preview).
1 . A Mechanical roller bearing, comprising: two bearing races each having a rolling track; rolling elements arranged between the races, the rolling elements being configured to roll against a portion of the rolling tracks, the rolling elements being made of a defined material; and a plurality of intermediate blocks arranged between the races, the intermediate blocks being made of a material having a greater stiffness than the stiffness of the material of the rolling elements at least in directions normal to the rolling tracks, wherein, when the bearing is subjected to loading below a threshold load, the intermediate blocks have a smaller dimension than the rolling elements in directions normal to the rolling tracks, and wherein the races have a greater stiffness than the rolling elements. 2 . The mechanical roller bearing according to claim 1 , wherein the rolling elements are manufactured of a material having sufficient stiffness to allow deformation of the rolling elements within an elastic deformation range of the rolling elements at least until the intermediate blocks come in contact with the rolling tracks when the bearing is subjected to loading exceeding the threshold load. 3 . The mechanical roller bearing according to claim 1 , wherein the intermediate blocks comprise supporting faces located facing the rolling tracks, wherein the supporting faces of the intermediate blocks have a shape complementary to the shape of the rolling tracks. 4 . The mechanical roller bearing according to claim 1 , wherein the intermediate blocks have rounded edges. 5 . The mechanical roller bearing according to claim 4 , wherein the rounded edges have a progressively varying curvature formed by a succession of fixed tangential radii or a continuous differentiable function. 6 . The mechanical roller bearing according to claim 1 , wherein the intermediate blocks and the rolling elements are arranged so that they alternate. 7 . The mechanical roller bearing according to claim 1 , wherein the intermediate blocks and the races are made of a material containing ceramic and steel, and wherein the rolling elements are made of a nickel-titanium alloy. 8 . The mechanical roller bearing according to claim 1 , wherein the intermediate blocks and the races are made of ceramic and wherein the rolling elements are made of steel. 9 . The mechanical roller bearing according to claim 1 , comprising a bearing cage having first cells and second cells, wherein the first cells have a different shape than that of the second cells, and wherein the first cells contain the rolling elements and the second cells contain the intermediate blocks. 10 . The mechanical roller bearing according to claim 9 , wherein the intermediate blocks are rigidly secured to the second cells. 11 . The mechanical roller bearing according to claim 9 , wherein the intermediate blocks are mounted to move freely within the second cells by a clearance being provided in the second cells around the intermediate blocks. 12 . The mechanical roller bearing according to claim 9 , wherein the intermediate blocks are flexibly secured to the second cells. 13 . The mechanical roller bearing according to claim 1 , wherein the rolling elements have a spherical shape, and wherein the shape of the intermediate blocks in cross-section is a square or diamond in which the obtuse angles are rounded with two opposite vertices of rounded shape, the cross-section being along a radial plane. 14 . The mechanical roller bearing according to claim 1 , wherein the rolling elements have the shape of a tapered roller, and wherein the supporting faces of the intermediate blocks have a frustoconical shape. 15 . The mechanical roller bearing according to claim 1 , wherein the rolling elements have the shape of a cylindrical roller or needle, and wherein the supporting faces of the intermediate blocks have a cylindrical shape. 16 . The mechanical roller bearing according to claim 1 , wherein the rolling elements are rollers of a barrel shape facing an outer track having the shape of a sphere portion, and wherein the supporting faces of the intermediate blocks have the shape of a torus portion facing the inner track and of a sphere portion facing the outer track. 17 . A turbomachine module comprising a rotating shaft of longitudinal axis, and a mechanical roller bearing for guiding the rotation of the rotating shaft about the longitudinal axis, the mechanical roller bearing being in accordance with claim 1 . 18 . A turbomachine comprising a turbomachine module according to claim 17 . 19 . The turbomachine according to claim 18 , wherein the turbomachine further comprises a set of parts which rotate slowly or which are to be oriented along an axis which itself rotates about an axis of a rotating main shaft, wherein the parts are exposed to a field of centrifugal acceleration.
rigid · CPC title
with concave surfaces conforming to the shape of the rolling elements, e.g. the spacing bodies are in sliding contact with the rolling elements · CPC title
with hybrid structure, i.e. with parts made of distinct materials · CPC title
with loose spacing bodies between the rollers · CPC title
with loose spacing bodies, e.g. balls, between the bearing balls · CPC title
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