Vehicle brake having spindle/nut arrangement

US9732812B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9732812-B2
Application numberUS-201113580493-A
CountryUS
Kind codeB2
Filing dateFeb 23, 2011
Priority dateFeb 23, 2010
Publication dateAug 15, 2017
Grant dateAug 15, 2017

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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.

A hydraulic vehicle brake has a piston which acts upon a friction element and is displaceable by a rotationally drivable spindle/nut arrangement into an actuating position. A spindle of the spindle/nut arrangement is secured against rotation and movable by the spindle nut either into abutment against the piston or away from the piston. The spindle nut comprises a first part, which at least close to one end thereof is configured for screw-type engagement with the spindle, and a second part, configured for rotationally driving the first part and connected to the first part by a rotationally fixed connection. The first part at an other end thereof is provided with a support surface for the rotatable, axial mounting of the spindle/nut arrangement and the second part at the other end extends into the first part.

First claim

Opening claim text (preview).

The invention claimed is: 1. Vehicle brake, having a housing and a brake piston arranged therein, which brake piston acts upon a friction element and is displaceable by means of a rotationally drivable spindle/nut arrangement arranged coaxially with a central axis of the brake piston into an actuating position, in which the brake piston presses the friction element against a rotor of the vehicle brake, the spindle/nut arrangement comprising a spindle and a spindle nut, wherein the spindle is secured against rotation and is moved by means of a rotation of the spindle nut in a translatory manner along the central axis either into abutment against the brake piston or away from the brake piston in dependence upon a direction of rotation of the spindle nut, wherein the spindle nut comprises a one-piece first part and a second part, wherein the first part is in the form of a sleeve extending axially from one end to an other end, which at least close to the one end thereof is configured for and in direct threaded engagement with the spindle, and wherein the second part is configured for rotationally driving the first part and is connected to the first part by a rotationally fixed connection, wherein the first part at the other end thereof remote from the one end is provided with a support surface for the rotatable, axial mounting of the spindle/nut arrangement, wherein the second part at the other end extends into the first part, and wherein a recess extends from the support surface into the first part at the other end, which recess form-fittingly receives, in a circumferential direction, the second part of the spindle nut provided with a hollow stud formed complimentary to the recess, wherein the first part, at a surface of the first part facing the spindle, is, at least in sections, unthreaded. 2. Vehicle brake according to claim 1 , wherein the rotationally fixed connection is a polygonal connection, a compression connection or a toothed connection. 3. Vehicle brake according to claim 1 wherein the second part at a side thereof facing the first part is of a hollow-cylindrical configuration. 4. Vehicle brake according to claim 3 , wherein the second part at a side thereof remote from the first part has a connection for an external rotary drive. 5. Vehicle brake according to claim 1 , wherein the brake piston is hollow-cylindrical and the spindle has a mushroom-shaped spindle head that is guided axially in a twistproof manner in the brake piston. 6. Vehicle brake according to claim 5 , wherein the spindle head at a circumference thereof is provided with a plurality of radial projections, which engage into axial grooves that are formed in an inner circumferential surface of the hollow-cylindrical brake piston. 7. Vehicle brake having a housing and a brake piston arranged therein, which piston acts upon a friction element and is displaceable by means of a rotationally drivable spindle/nut arrangement arranged coaxially with a central axis of the brake piston into an actuating position, in which the brake piston presses the friction element against a rotor of the vehicle brake, wherein the spindle is secured against rotation and is moved by means of a rotation of a spindle nut in a translatory manner along the central axis either into abutment against the brake piston or away from the brake piston in dependence upon the direction of rotation, wherein the spindle nut comprises a one-piece first part, which at least close to one end thereof is configured for and in direct threaded engagement with the spindle, and a second part, which is configured for rotationally driving the first part and is connected to the first part by a rotationally fixed connection, wherein the first part at an other end thereof remote from the one end is provided with a support surface for the rotatable, axial mounting of the spindle/nut arrangement and the second part at the other end extends into the first part, wherein the brake piston is hollow-cylindrical and the spindle has a mushroom-shaped spindle head that is guided axially in a twistproof manner in the brake piston, wherein the spindle head at an underside thereof facing the spindle is provided with an indentation extending in circumferential direction, which has a front end face serving as a stop for a projection that is provided at a front end of the spindle nut facing the spindle head. 8. Vehicle brake according to claim 7 , wherein a depth of the indentation increases continuously in the direction of and up to the front end face thereof. 9. Vehicle brake according to claim 8 , wherein the projection has a shape that is complementary to the indentation. 10. Vehicle brake according to claim 1 , wherein the support surface is supported on an annular plain- or needle bearing, which is in turn supported against the housing and through which the second part of the spindle nut projects. 11. Vehicle brake according to claim 1 , wherein the brake piston is displaceable into the actuating position also by means of hydraulic pressure, which is introduced into a hydraulic chamber that interacts with the brake piston. 12. Vehicle brake according to claim 11 , wherein the spindle/nut arrangement is of a self-locking design in order mechanically to lock the brake piston in the actuating position. 13. Vehicle brake according to claim 5 , wherein the spindle head at an underside thereof facing the spindle is provided with an indentation extending in circumferential direction, which has a front end face serving as a stop for a projection that is provided at a front end of the spindle nut facing the spindle head. 14. Vehicle brake according to claim 7 , wherein a depth of the indentation increases continuously in the direction of and up to the front end face thereof. 15. Vehicle brake according to claim 8 , wherein the projection has a shape that is complementary to the indentation.

Assignees

Inventors

Classifications

  • Multiple operation forces · CPC title

  • Fluid pressure · CPC title

  • F16D65/14Primary

    Actuating mechanisms for brakes; Means for initiating operation at a predetermined position (brake control systems, parts thereof B60T) · CPC title

  • Mechanical · CPC title

  • Screw-and-nut · CPC title

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Frequently asked questions

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What does patent US9732812B2 cover?
A hydraulic vehicle brake has a piston which acts upon a friction element and is displaceable by a rotationally drivable spindle/nut arrangement into an actuating position. A spindle of the spindle/nut arrangement is secured against rotation and movable by the spindle nut either into abutment against the piston or away from the piston. The spindle nut comprises a first part, which at least clos…
Who is the assignee on this patent?
Giering Wilfried, Erben Ralf, Lucas Automotive Gmbh
What technology area does this patent fall under?
Primary CPC classification F16D65/14. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Aug 15 2017 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 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).