Liquid-lubricated bearing and vehicle pinion shaft support device

US9316256B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9316256-B2
Application numberUS-201314133142-A
CountryUS
Kind codeB2
Filing dateDec 18, 2013
Priority dateDec 27, 2012
Publication dateApr 19, 2016
Grant dateApr 19, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

An outer lubricating liquid inflow passage that provides communication between an outside of a liquid-lubricated bearing and a rolling element arrangement chamber is formed between an outer ring and a cage, on the lubricating liquid inflow side. The outer lubricating liquid inflow passage has an annular axially extending outer passage portion that extends in the axial direction, and an annular radially extending outer passage portion. The radially extending outer passage portion communicates with a rolling element-side axial end portion of the axially extending outer passage portion. The radially extending outer passage portion extends from the axially extending outer passage portion to the rolling element arrangement chamber inward in the radial direction of the outer ring. A labyrinth is formed by the axially extending outer passage portion and the radially extending outer passage portion.

First claim

Opening claim text (preview).

What is claimed is: 1. A liquid-lubricated bearing, comprising: an inner ring having a raceway surface formed in an outer peripheral face of the inner ring; an outer ring disposed radially outward of the inner ring, and having a raceway surface formed in an inner peripheral face of the outer ring; rolling elements disposed between the raceway surface of the inner ring and the raceway surface of the outer ring; and a cage having pockets that accommodate the rolling elements, wherein lubricating liquid flows through a space between the outer ring and the cage from a first side in an axial direction of the liquid-lubricated bearing to a second side in the axial direction, an outer lubricating liquid inflow passage that provides communication between an outside of the liquid-lubricated bearing and a rolling element arrangement chamber in which the rolling elements are arranged, is formed between the outer ring and the cage, on a lubricating liquid inflow side in the axial direction, the outer lubricating liquid inflow passage has an annular axially extending outer passage portion that extends in the axial direction, and an annular radially extending outer passage portion that communicates with a rolling element-side axial end portion of the axially extending outer passage portion, and that extends from the axially extending outer passage portion to the rolling element arrangement chamber inward in a radial direction of the outer ring, and a labyrinth is formed by the axially extending outer passage portion and the radially extending outer passage portion, the cage has a first annular end portion extending in the axial direction, a second annular end portion extending in the radial direction, and a plurality of cage bars connecting the first annular end portion and the second annular end portion, the first annular end portion having a length extending generally in the axial direction, a diameter of the length of the first annular end portion being greater than a diameter of the second annular end portion, the second annular end portion is located upstream of the rolling elements in a flow direction of the lubricating liquid, an end face of the second annular end portion has an outer side guide face that guides the lubricating liquid in such a direction that the lubricating liquid flows away from the liquid-lubricated bearing, the end face being on an opposite side of the second annular end portion from the rolling elements in the axial direction, the end face extends further upstream in the axial direction at a radially outward position of the end face relative to a radial center of the end face, and the end face extends further upstream in the axial direction at a radially inward position of the end face relative to the radial center of the end face, an entirety of the outer side guide face of the second annular end portion is formed in a concave face, the plurality of cage bars are connected to a connection portion of the second annular end portion and form an acute angle with a portion of the second annular end portion that extends radially outward from the connection portion, and an axial thickness of the second annular end portion is greater at a radially outward portion of the second annular end portion than at the connection portion. 2. The liquid-lubricated bearing according to claim 1 , wherein: an inner lubricating liquid inflow passage that provides communication between the outside and the rolling element arrangement chamber is formed between the inner ring and the cage, on the lubricating liquid inflow side in the axial direction, the inner lubricating liquid inflow passage has an annular axially extending inner passage portion that extends in the axial direction, and an annular radially extending inner passage portion that communicates with a rolling element-side axial end portion of the axially extending inner passage portion, and that extends from the axially extending inner passage portion to the rolling element arrangement chamber outward in a radial direction of the inner ring, and a second labyrinth is formed by the axially extending inner passage portion and the radially extending inner passage portion. 3. The liquid-lubricated bearing according to claim 2 , wherein: the plurality of cage bars extend on a rolling element side from the second annular end portion and are located at intervals in a circumferential direction of the second annular end portion; a radially outward extending portion of the second annular end portion is located radially outward of a portion of the second annular end portion, to which cage bars are connected, and extends in the radial direction; a lubricating liquid inflow-side axial end portion of the outer ring has a recess; a lubricating liquid inflow-side axial end face of the outer ring has an outer ring side step portion; the axially extending outer passage portion has a portion defined by an outer peripheral face of the radially outward extending portion and the inner peripheral face of the outer ring that faces the outer peripheral face of the radially outward extending portion in the radial direction; and the radially extending outer passage portion has a portion defined by a rolling element-side axial end face of the radially outward extending portion and the outer ring side step portion. 4. The liquid-lubricated bearing according to claim 3 , wherein the cage is a single-piece member and made of an elastic material having such an elasticity that the cage is allowed to be fitted into the outer ring. 5. A vehicle pinion shaft support device comprising: a case; a differential mechanism that is provided in the case, and that includes a ring gear; a pinion shaft having a pinion gear meshed with the ring gear of the differential mechanism; and the liquid-lubricated bearing according to claim 3 , by which the pinion shaft is rotatably supported. 6. The liquid-lubricated bearing according to claim 2 , wherein: the plurality of cage bars extend on a rolling element side from the second annular end portion and are located at intervals in a circumferential direction of the second annular end portion. 7. The liquid-lubricated bearing according to claim 6 , wherein the cage is a single-piece member and made of an elastic material having such an elasticity that the cage is allowed to be fitted into the outer ring. 8. A vehicle pinion shaft support device comprising: a case; a differential mechanism that is provided in the case, and that includes a ring gear; a pinion shaft having a pinion gear meshed with the ring gear of the differential mechanism; and the liquid-lubricated bearing according to claim 6 , by which the pinion shaft is rotatably supported. 9. The liquid-lubricated bearing according to claim 2 , wherein the cage is a single-piece member and made of an elastic material having such an elasticity that the cage is allowed to be fitted into the outer ring. 10. A vehicle pinion shaft support device comprising: a case; a differential mechanism that is provided in the case, and that includes a ring gear; a pinion shaft having a pinion gear meshed with the ring gear of the differential mechanism; and the liquid-lubricated bearing according to claim 2 , by which the pinion shaft is rotatably supported. 11. The liquid-lubricated bearing according to claim 1 , wherein: the plurality of cage bars extend on a rolling element side from the second annular end portion and are located at intervals in a circumferential direction of the second annular end portion; a radially outward extending portion of the second annular end portion is located radially outward of a portion of the second annular end portion

Assignees

Inventors

Classifications

  • Details of distribution or circulation inside the bearing, e.g. grooves on the cage or passages in the rolling elements · CPC title

  • Details of supply of the liquid to the bearing, e.g. passages or nozzles · CPC title

  • from an oil bath in the bearing housing, e.g. by an oil ring or centrifugal disc · CPC title

  • Bearing · CPC title

  • with tapered rollers, i.e. rollers having essentially the shape of a truncated cone · CPC title

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What does patent US9316256B2 cover?
An outer lubricating liquid inflow passage that provides communication between an outside of a liquid-lubricated bearing and a rolling element arrangement chamber is formed between an outer ring and a cage, on the lubricating liquid inflow side. The outer lubricating liquid inflow passage has an annular axially extending outer passage portion that extends in the axial direction, and an annular …
Who is the assignee on this patent?
Jtekt Corp
What technology area does this patent fall under?
Primary CPC classification F16C33/6659. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Apr 19 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).