Spring return apparatus for an axial piston machine of swash plate design for elastically prestressing sliding pads against the swash plate, and axial piston machine having a spring return apparatus of this type

US9879533B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9879533-B2
Application numberUS-201414200105-A
CountryUS
Kind codeB2
Filing dateMar 7, 2014
Priority dateMar 12, 2013
Publication dateJan 30, 2018
Grant dateJan 30, 2018

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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 spring return apparatus for elastically prestressing sliding pads against a sliding bearing face of an axial piston machine. The sliding pads are positioned on working pistons mounted axially movably in cylinders of a cylinder barrel that drives a drive shaft including a spring plate and a supporting plate. The spring plate includes a ring region surrounding a central opening, and levers extending radially from the ring region. The levers are arranged spaced apart or distributed uniformly in the circumferential direction, and are elastically flexible and/or elastically pivotable in the axial direction. Every two adjacent levers delimit a receiving region for receiving a tapered section of a working piston or a sliding pad. The supporting plate has a circular ring-shaped supporting region configured to support radially outer end sections of the levers if the supporting plate is arranged concentrically with respect to and axially adjacently to the spring plate.

First claim

Opening claim text (preview).

What is claimed is: 1. A spring return apparatus configured to prestress a plurality of sliding pads against a sliding bearing face of a pivotably mounted pivot cradle of an axial piston machine, comprising: a drive shaft with a two-part element that includes: a spring plate having a central opening, a ring region surrounding the central opening, and a plurality of levers, brackets, or arms, each of which: extends radially to an outside, at least in sections, from the ring region; is positioned such that individual levers, brackets, or arms in the plurality of levers, brackets or arms are spaced apart or distributed uniformly in a circumferential direction; and is at least one of elastically flexible and elastically pivotable in an axial direction; and a supporting plate positioned concentric, axially adjacent, and axially offset with respect to the spring plate, the supporting plate including a supporting region, which supports end sections of the plurality of levers, brackets, or arms; wherein: the plurality of sliding pads are positioned on piston feet of working pistons mounted axially movably in cylinders of a cylinder barrel of the axial piston machine; and the cylinder barrel is fixedly connected to the drive shaft and thereby rotates with the drive shaft; and wherein prestressing the plurality of sliding pads against the sliding bearing face comprises a flow path of a force initiated by the cylinder barrel to the ring region of the spring plate, the spring plate then transfers the force radially outwardly through the levers, brackets, or arms of the spring plate, and to the supporting plate. 2. The spring return apparatus according to claim 1 , wherein: the plurality of levers, brackets, or arms includes a plurality of levers; each set of two adjacent levers of the plurality of levers delimits a respective receiving region in which a respective tapered section of one of the working pistons or a respective one of the plurality of sliding pads is received; the supporting region of the supporting plate has a circularly annular shape; and the end sections are radially outer end sections of the plurality of levers. 3. The spring return apparatus according to claim 2 , wherein: the respective receiving region is configured substantially in a “U” shape; and the set of the two adjacent levers corresponds to limbs of the “U” shape of the respective receiving region. 4. The spring return apparatus according to claim 2 , wherein: a radially outer end section of at least one lever of the plurality of levers has a first width measured in the circumferential direction; and the at least one lever comprises a tapered section with a second width, measured in the circumferential direction, that is smaller than the first width. 5. The spring return apparatus according to claim 1 , wherein: the supporting plate further comprises a plurality of drivers which extend radially inwardly from the supporting region; and each set of two circumferentially adjacent drivers of the plurality of drivers delimits a respective free region having a circular segment shape. 6. The spring return apparatus according to claim 5 , wherein the respective free region is configured such that: one of the plurality of sliding pads extends axially through the respective free region; and each of the plurality of drivers protrudes radially inwardly into an intermediate space between a respective set of two adjacent sliding pads in the plurality of sliding pads. 7. The spring return apparatus according to claim 1 , wherein the ring region defines a plane, and at least one of the levers, brackets, or arms comprises a bend out of & the plane of the ring region in an axial direction towards the supporting plate. 8. The spring return apparatus according to claim 1 , wherein the plurality of levers, brackets, or arms includes a plurality of levers, each lever including: a radially inner transition section at a transition to the ring region; and a punched bead which extends radially in the transition section. 9. The spring return apparatus according to claim 1 , wherein the plurality of levers, brackets, or arms includes a plurality of levers, each lever including: a radially inner transition section at a transition to the ring region, the transition section having a cross-sectional area shaped as an axially symmetrical circular ring section when viewed in a plane perpendicular with respect to a radial direction, wherein an inner circle section of the axially symmetrical circular ring section is arranged on a side of the spring plate which faces the supporting plate and an outer circle section is arranged on a side of the spring plate which faces away from the supporting plate. 10. The spring return apparatus according to claim 9 , wherein the ring region is bent away in the axial direction toward the supporting plate in radially outer edge regions of the ring region which are located in the circumferential direction between transition sections of the plurality of levers. 11. The spring return apparatus according to claim 1 , wherein the plurality of levers, brackets, or arms includes a plurality of brackets, each bracket including a through recess for a sliding pad. 12. The spring return apparatus according to claim 1 , wherein the plurality of levers, brackets, or arms includes a plurality of arms, each arm including: a main section which extends radially from an inside to the outside; and a bent-back section which extends radially from the outside to the inside. 13. The spring return apparatus according to claim 1 , wherein: a diameter of the spring plate is smaller than a diameter of the supporting plate; and a hold-down is positioned at an outer edge of the supporting plate and is fastened to a swash plate or to the pivot cradle. 14. The spring return apparatus according to claim 1 , wherein the spring plate is non-planar. 15. The spring return apparatus according to claim 1 , wherein the central opening defines a central axis of the spring plate, the ring region is located at least partially in a plane that is normal to the central axis, and the plurality of levers, brackets, or arms are located at least partially outside the plane. 16. A spring return apparatus configured to prestress a plurality of sliding pads against a sliding bearing face of a pivotably mounted pivot cradle of an axial piston machine, comprising: a drive shaft with a two-part element that includes: a spring plate having a central opening, a ring region surrounding the central opening, and a plurality of levers, brackets, or arms, each of which: extends radially to an outside, at least in sections, from the ring region; is positioned such that individual levers, brackets, or arms in the plurality of levers, brackets or arms are spaced apart or distributed uniformly in a circumferential direction; and is at least one of elastically flexible and elastically pivotable in an axial direction; and a supporting plate positioned concentric, axially adjacent, and axially offset with respect to the spring plate, the supporting plate including a supporting region, which supports end sections of the plurality of levers, brackets, or arms; wherein: the plurality of sliding pads are positioned on piston feet of working pistons mounted axially movably in cylinders of a cylinder barrel of the axial piston machine; the cylinder barrel is fixedly connected to the drive shaft and thereby rotates with the drive shaft; the supporting region further includes a plurality of grooves extending radially and distributed a

Assignees

Inventors

Classifications

  • F01B3/0082Primary

    Details · CPC title

  • swash plate bearing means or driving or driven axis bearing means · CPC title

  • F16F1/324Primary

    characterised by having tongues or arms directed in a generally radial direction, i.e. diaphragm-type springs · CPC title

  • characterised by shape or design of individual leaves (F16F1/22 takes precedence) · CPC title

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What does patent US9879533B2 cover?
A spring return apparatus for elastically prestressing sliding pads against a sliding bearing face of an axial piston machine. The sliding pads are positioned on working pistons mounted axially movably in cylinders of a cylinder barrel that drives a drive shaft including a spring plate and a supporting plate. The spring plate includes a ring region surrounding a central opening, and levers exte…
Who is the assignee on this patent?
Bosch Gmbh Robert
What technology area does this patent fall under?
Primary CPC classification F01B3/0082. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Jan 30 2018 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).