Fixed type constant velocity universal joint

US9464674B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9464674-B2
Application numberUS-201214362659-A
CountryUS
Kind codeB2
Filing dateNov 16, 2012
Priority dateDec 15, 2011
Publication dateOct 11, 2016
Grant dateOct 11, 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.

In a fixed type constant velocity universal joint, track grooves of an outer joint member include first track groove portions positioned on an interior side and second track groove portions positioned on an opening side. The first track groove portions each have an arc-shaped ball raceway center line having a curvature center that is prevented from being offset in an axial direction of the outer joint member with respect to a joint center. Planes each including at least the ball raceway center line and the joint center are inclined with respect to a joint axial line with their inclination directions alternately opposite to each other in the first track groove portions that are adjacent to each other in a peripheral direction of the outer joint member.

First claim

Opening claim text (preview).

The invention claimed is: 1. A fixed type constant velocity universal joint, comprising: an outer joint member having a spherical inner peripheral surface in which a plurality of track grooves are formed so as to extend in an axial direction of the outer joint member, the outer joint member having an opening side and an interior side spaced apart from each other in the axial direction; an inner joint member having a spherical outer peripheral surface in which a plurality of track grooves are formed so as to be paired with the plurality of track grooves of the outer joint member; a plurality of balls for transmitting torque, the plurality of balls being interposed between the plurality of track grooves of the outer joint member and the plurality of track grooves of the inner joint member; and a cage comprising pockets for holding the plurality of balls, the cage having a spherical outer peripheral surface, which is fitted to the spherical inner peripheral surface of the outer joint member, and a spherical inner peripheral surface, which is fitted to the spherical outer peripheral surface of the inner joint member, wherein the plurality of track grooves of the outer joint member comprise: first track groove portions positioned on the interior side; and second track groove portions positioned on the opening side, wherein the first track groove portions each have an arc-shaped ball raceway center line having a curvature center that is prevented from being offset in the axial direction with respect to a joint center, wherein each of the first track groove portions has a plane comprising at least the arc-shaped ball raceway center line of the respective first track groove portion and the joint center that is inclined with respect to a joint axial line, and the planes of adjacent pairs of the first track groove portions in a peripheral direction of the outer joint member are inclined in opposite, wherein the second track groove portions each have an arc-shaped ball raceway center line having a curvature center that is offset to a radially outer side with respect to the arc-shaped ball raceway center line of a corresponding one of the first track groove portions, wherein an end portion of the arc-shaped ball raceway center line of each of the first track groove portions is positioned on the opening side with respect to the joint center, wherein a position of the end portion occupies at least 60% of an effective track length on the opening side with respect to the joint center, wherein the arc-shaped ball raceway center line of each of the second track groove portions is connected to the end portion of the arc-shaped ball raceway center line of the corresponding one of the first track groove portions, and wherein a ball raceway center line of each of the plurality of track grooves of the inner joint member is formed so as to be mirror-image symmetrical with a ball raceway center line of a corresponding one of the plurality of track grooves of the outer joint member with respect to another plane comprising the joint center at an operating angle of 0°. 2. The fixed type constant velocity universal joint according to claim 1 , wherein the track grooves of the outer joint member and the track grooves of the inner joint member are formed so that a wedge angle 2τ′ in two-dimensional cross section at a maximum operating angle of the fixed type constant velocity universal joint satisfies the following equation: (2τ′)cos δ+(2γ)sin δ≦43° where γ is an inclination angle between the plane of one of the track grooves of the outer joint member, including the ball raceway center line and the joint center, and the joint axial line, and between a plane of one of the track grooves of the inner joint member, including the ball raceway center line and the joint center, and the joint axial line, and where δ is a contact angle between, in a plane perpendicular to the ball raceway center line of the one of the track grooves of the outer joint member, a line passing through a center of one of the balls positioned between the one of the track grooves of the outer joint member and the one of the track grooves of the inner joint member and a bottom line of the one of the track grooves of the outer joint member and a line passing through the center of the one of the balls and a contact point between the one of the balls and the one of the track grooves of the outer joint member, and between, in a plane perpendicular to the ball raceway center line of the one of the track grooves of the inner joint member, a line passing through the center of the one of the balls and a bottom line of the one of the track grooves of the inner joint member and a line passing through the center of the one of the balls and a contact point between the one of the balls and the one of the track grooves of the inner joint member, the two-dimensional cross section is defined as a cross section including the center of the one of the balls, the joint center, the bottom line of the one of the track grooves of the outer joint member, wherein the one of the track grooves of the outer joint member is drawn so that the plane of the one of the track grooves of the outer joint member is turned to the inclination angle γ of 0° and the bottom line of the one of the track grooves of the inner joint member, wherein the one of the track grooves of the inner joint member is drawn so that the plane of the one of the track grooves of the inner joint member is turned to the inclination angle γ of 0°, the wedge angle 2τ′ at the maximum operating angle is defined, in the two-dimensional cross section including the center of the one of the balls positioned at a phase angle φ of 0° at which the one of the balls is at a furthest position to an open side of the outer joint member, as an angle between a tangent line of the bottom line of the one of the track grooves of the outer joint member at a first intersection point and a tangent line of the bottom line of the one of the track grooves of the inner joint member at a second intersection point, the first intersection point is a point at which a plane perpendicular to the ball raceway center line of the one of the track grooves of the outer joint member and including the center of the one of the balls and the contact point between the one of the balls and the one of the track grooves of the outer joint member intersects the bottom line of the one of the track grooves of the outer joint member, and the second intersection point is a point at which a plane perpendicular to the ball raceway center line of the one of the track grooves of the inner joint member and including the center of the one of the balls and the contact point between the one of the balls and the one of the track grooves of the inner joint member intersects the bottom line of the one of the track grooves of the inner joint member. 3. The fixed type constant velocity universal joint according to claim 1 , wherein, at a maximum operating angle of the fixed type constant velocity universal joint, an allowance amount is secured between the spherical outer peripheral surface of the cage and a contact point between one of the plurality of balls and a corresponding one of the pockets of the cage, the one of the plurality of balls being moved to an end of the radially outer side with respect to the corresponding one of the pockets. 4. The fixed type constant velocity universal joint according to claim 1 , wherein the curvature center of the arc-shaped ball raceway center line of each of the first track groove portions is arranged on the joint axial line. 5. The fixed type constant velocity universal joint according to claim 1 , wherein the curvature center of the arc-shaped ball raceway center line of each of the first track groove portions is offset in a radial direction

Assignees

Inventors

Classifications

  • having counter tracks, i.e. ball track surfaces which diverge in opposite directions · CPC title

  • F16D3/2233Primary

    where the track is made up of two curves with a point of inflexion in between, i.e. S-track joints · CPC title

  • F16D3/24Primary

    comprising balls, rollers, or the like between overlapping driving faces, e.g. cogs, on both coupling parts · CPC title

  • Torque transmitted via radially spaced balls · CPC title

  • the groove centre-lines in each coupling part lying on a sphere · CPC title

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What does patent US9464674B2 cover?
In a fixed type constant velocity universal joint, track grooves of an outer joint member include first track groove portions positioned on an interior side and second track groove portions positioned on an opening side. The first track groove portions each have an arc-shaped ball raceway center line having a curvature center that is prevented from being offset in an axial direction of the oute…
Who is the assignee on this patent?
Yamazaki Kisao, Yamazaki Kenta, Hirukawa Hiroyasu, and 1 more
What technology area does this patent fall under?
Primary CPC classification F16D3/2233. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Oct 11 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 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).