Piston-type positive displacement machine with a pressure-adaptive piston-cylinder interface

US11118681B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11118681-B2
Application numberUS-202016857099-A
CountryUS
Kind codeB2
Filing dateApr 23, 2020
Priority dateApr 24, 2019
Publication dateSep 14, 2021
Grant dateSep 14, 2021

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A piston and cylinder assembly of an axial piston machine is disclosed which includes a cylinder having a uniform internal diameter, a cylindrical bushing press-fit against the inner surface of the cylinder and extending at least partially therein, the bushing comprising at least one circumferential groove formed on an outer surface of the bushing against the inner surface of the cylinder, a piston reciprocably disposed within the cylindrical bushing, generating a piston-bushing-interface, the piston and the bushing defining a diametrical clearance therebetween, the diametrical clearance defining a lubrication gap and a fluid-dynamic seal between the piston and the cylindrical bushing.

First claim

Opening claim text (preview).

The invention claimed is: 1. A piston and cylinder assembly of a piston-type positive displacement machine, comprising: a cylinder having a uniform internal diameter; a cylindrical bushing press-fit against the inner surface of the cylinder and extending at least partially therein, the bushing comprising at least one circumferential groove formed on an outer surface of the bushing against the inner surface of the cylinder; a piston reciprocably disposed within the cylindrical bushing, generating a piston-bushing-cylinder interface, the piston and the bushing defining a diametrical clearance therebetween, the diametrical clearance defining a lubrication gap and a fluid-dynamic seal between the piston and the cylindrical bushing, creating fluid-dynamic buildup of pressure therebetween, the reciprocating action of the piston defines a cyclic motion including 1) a negative pressure phase wherein the piston is retracted from base of the cylinder thereby drawing in fluid from outside of the cylinder into the cylinder, and 2) a high-pressure phase in which the piston is pushed towards the base of the cylinder with fluid therein, a fluid channel between the at least one circumferential groove of the cylindrical bushing and a high pressure source. 2. The piston and cylinder assembly of an axial piston machine of claim 1 , wherein the high-pressure source is an external source to the piston-bushing-cylinder interface. 3. The piston and cylinder assembly of an axial piston machine of claim 2 , wherein the high-pressure source is adapted to selectively apply pressure to the at least one circumferential groove of the cylindrical bushing thereby selectively deflecting the cylindrical bushing. 4. The piston and cylinder assembly of an axial piston machine of claim 1 , wherein the high-pressure source is from the high-pressure phase in which the piston is pushed towards the base of the cylinder with fluid therein. 5. The piston and cylinder assembly of an axial piston machine of claim 1 , wherein the at least one circumferential groove of the cylindrical bushing is at least two. 6. The piston and cylinder assembly of an axial piston machine of claim 1 , wherein the at least one circumferential groove of the cylindrical bushing is positioned along a length of the bushing between a top end and a midpoint of the bushing, where the top end is in a low-pressure region of the piston-bushing-cylinder interface. 7. The piston and cylinder assembly of an axial piston machine of claim 6 , wherein the at least one circumferential groove of the cylindrical bushing is defined by a width w, a depth d, and a thickness of the bushing, wherein a critical ratio of CR = w 2 ⁢ P m ⁢ ⁢ ax tcE ⁢ l l f is between 0 and 1, where E is the young's modulus in N/mm 2 , P max is the maximum pressure that the at least one circumferential groove is adapted to sustain in MPa, w, t are dimensions of the at least one circumferential groove in m, l is location of the at least one circumferential groove from high-pressure side of the cylindrical bushing in m, l f is the length of the lubrication gap between the piston and the cylinder, and c is the total diametrical clearance between the piston and the cylinder. 8. The piston and cylinder assembly of an axial piston machine of claim 1 , wherein the at least one circumferential groove of the cylindrical bushing is extended circumferentially along the cylindrical bushing based on an angular disposition θ ranging from about 10° to 360°. 9. The piston and cylinder assembly of an axial piston machine of claim 1 , wherein the fluid channel between the at least one circumferential groove of the cylindrical bushing and the high pressure source is formed in the cylinder. 10. The piston and cylinder assembly of an axial piston machine of claim 1 , wherein the fluid channel between the at least one circumferential groove of the cylindrical bushing and the high pressure source is formed in the cylindrical bushing. 11. A piston and cylinder assembly of a piston-type positive displacement machine, comprising: a cylinder having a uniform internal diameter, the cylinder comprising at least one circumferential cavity formed therein; a piston reciprocably disposed within the cylinder, generating a piston-cylinder interface, the piston and the cylinder defining a diametrical clearance therebetween, the diametrical clearance defining a lubrication gap and a fluid-dynamic seal between the piston and the cylinder, creating fluid-dynamic buildup of pressure therebetween, the reciprocating action of the piston defines a cyclic motion including 1) a negative pressure phase wherein the piston is retracted from base of the cylinder thereby drawing in fluid from outside of the cylinder into the cylinder, and 2) a high-pressure phase in which the piston is pushed towards the base of the cylinder with fluid therein, a fluid channel between the at least one circumferential cavity of the cylinder and a high pressure source, wherein during the high pressure phase there is a substantial hydrostatic pressure differential between the piston-cylinder interface and the fluid channel. 12. The piston and cylinder assembly of an axial piston machine of claim 11 , wherein the high-pressure source is an external source to the piston-cylinder interface. 13. The piston and cylinder assembly of an axial piston machine of claim 12 , wherein the high-pressure source is adapted to selectively apply pressure to the at least one circumferential cavity of the cylinder thereby selectively deflecting the cylinder about the at least one circumferential cavity. 14. The piston and cylinder assembly of an axial piston machine of claim 11 , wherein the high-pressure source is from the high-pressure phase in which the piston is pushed towards the base of the cylinder with fluid therein. 15. The piston and cylinder assembly of an axial piston machine of claim 11 , wherein the at least one circumferential cavity of the cylinder is at least two. 16. The piston and cylinder assembly of an axial piston machine of claim 11 , wherein the at least one circumferential cavity of the cylinder is positioned along a length of the cylinder between a top end and a midpoint of the cylinder, where the top end is in a low-pressure region of the piston-cylinder interface. 17. The piston and cylinder assembly of an axial piston machine of claim 16 , wherein the at least one circumferential cavity of the cylindrical bushing is defined by a width w, a depth d, and a thickness, wherein a critical ratio defined by CR =

Assignees

Inventors

Classifications

  • F16J10/04Primary

    Running faces; Liners · CPC title

  • F16J1/02Primary

    Bearing surfaces · CPC title

  • cylinder barrel · CPC title

  • Cylinders designed to receive moving pistons or plungers · CPC title

  • Pistons · CPC title

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What does patent US11118681B2 cover?
A piston and cylinder assembly of an axial piston machine is disclosed which includes a cylinder having a uniform internal diameter, a cylindrical bushing press-fit against the inner surface of the cylinder and extending at least partially therein, the bushing comprising at least one circumferential groove formed on an outer surface of the bushing against the inner surface of the cylinder, a pi…
Who is the assignee on this patent?
Purdue Research Foundation
What technology area does this patent fall under?
Primary CPC classification F16J10/04. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Sep 14 2021 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 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).