Claims
- 1. A rotary fluid pressure device comprising:
a housing member defining a high pressure fluid inlet port, an exhaust fluid outlet port, a first flow passage and an internal bore; a manifold assembly having a first fluid passage, a second fluid passage, and an internal bore, one side of said manifold assembly adjoining said housing member; a gerotor set having an internally toothed stator member with at least one axial fluid path extending therethrough; and an externally toothed rotor member, eccentrically disposed within said stator member, said rotor member having an internal bore, a first axial end surface, and a second axial end surface having a recess circumferentially surrounding said internal bore, said rotor member including a plurality of axially extending through holes for fluid flow there through, said fluid flow being adapted for hydraulically axially balancing the axial end surfaces of said rotor member relative to said stator member, with another side of said gerotor set adjoining another side of said manifold assembly; a channeling plate having a first side, a second side, a first fluid passage extending therethrough, a second fluid passage extending therethrough, and a plurality of through holes, said first side being adjacent to the one side of said housing member; an end plate having a first side adjacent said second side of said channeling plate; a cavity between said channeling plate and said end plate for receiving high pressure fluid; and means for routing high pressure fluid from one of said housing member first and second flow passages, through the at least one axial fluid path within said stator member, through said rotor member internal bore, and through one of channeling plate first and second fluid passages, into and subsequently out of said cavity, through said plurality of through holes in said channeling plate, and into said recess in said second axial end surface of said rotor, with said high pressure fluid within said recess overbalancing said previously axially balanced rotor axially toward said manifold assembly.
- 2. The rotary fluid pressure device as in claim 1 wherein said recess is comprised of multiple convolutions.
- 3. The rotary fluid pressure device as in claim 1 wherein said recess is generally circular.
- 4. The rotary fluid pressure device as in claim 1 wherein said cavity is located within and concentric with said channeling plate.
- 5. The rotary fluid pressure device as in claim 1 wherein said cavity is located within and concentric with said end plate.
- 6. The rotary fluid pressure device as in claim 1 wherein the first fluid passage of said manifold assembly is axially aligned with said at least one axial fluid path in said stator member.
- 7. The rotary fluid pressure device as in claim 1 wherein the second fluid passage of said manifold assembly is axially aligned with said internal bore of said rotor member.
- 8. The rotary fluid pressure device as in claim 2 wherein at least one of said plurality of through holes in said channeling plate is axially aligned at all times with said recess during each complete 360° hypocycloidal movement of said rotor.
- 9. The rotary fluid pressure device as in claim 1 wherein said means for routing of the high pressure fluid includes a first check valve located within said channeling plate first fluid passage and a second check valve located within said channeling plate second fluid passage.
- 10. In a rotary pressure device for use in one of a hydraulic pump and motor application including:
a housing member including a first fluid path and a second fluid path, one of said first and second fluid paths adapted for conducting high pressure fluid; a manifold assembly having a first fluid passage fluidly connected to one of said housing member first and second fluid path, a second fluid passage fluidly connected to the other of said housing member first and second fluid paths, with one side of said manifold assembly adjoining said housing member; a gerotor set having an internally toothed stator member, and an externally toothed rotor member, eccentrically disposed within said stator member, said rotor member having an internal bore, a first axial end surface adjoining another side of said manifold assembly, and a second axial end surface, said rotor member being hydraulically balanced relative to said stator member; a channeling plate having a first side adjoining said gerotor second axial end surface and a second side; an end plate having a first side adjacent said channeling plate second side; and a cavity between said channeling plate and said end plate for receiving high pressure fluid, wherein the improvement comprises:
a. first passage means in said gerotor set and said channeling plate for operatively providing high pressure fluid from one of said first and second fluid paths to said cavity; b. second passage means in said channeling plate for operatively providing high pressure fluid from said cavity to a recess in said second axial end surface of said rotor; and said high pressure fluid within said recess being used as the means for overbalancing said rotor member and thereby biasing said rotor toward said manifold assembly.
- 11. The rotary pressure device as in claim 10 wherein said first passage means further includes a valve member for selectively connecting said one of said first and second fluid paths to said cavity.
- 12. A rotary fluid pressure device comprising:
a housing member defining a fluid inlet port and first flow passage for receiving one of a high pressure fluid and an exhaust fluid, a fluid outlet port and second flow passage for receiving the other of the high pressure fluid and the exhaust fluid, and an internal bore for receiving one of the high pressure fluid and the exhaust fluid; a manifold assembly having a first fluid passage, fluidly connected with said housing member first flow passage, for receiving one of the high pressure fluid and the exhaust fluid, a second fluid passage, fluidly connected with said housing member second flow passage, for receiving the other of the high pressure fluid and the exhaust fluid, and an internal bore, fluidly connected with said housing member internal bore, for receiving one of the high pressure fluid and the exhaust fluid; a gerotor set having an internally toothed stator member with at least one axial fluid path extending therethrough, fluidly connected with said manifold assembly first flow passage, for receiving one of the high pressure fluid and the exhaust fluid; and an externally toothed rotor member hydraulically balanced relative to said stator, said rotor member eccentrically disposed within said stator member, having an internal bore, fluidly connected with said manifold assembly second fluid passage, for receiving the other of the high pressure fluid and the exhaust fluid, said rotor member also including a first axial end surface, and a second axial end surface, said second axial end surface including therein a recess circumferentially surrounding said internal bore for receiving the high pressure fluid, said rotor member additionally including a plurality of axially extending through holes for receiving one of the high pressure fluid and the exhaust fluid, with one side of said gerotor set adjoining another side of said manifold assembly; a substantially rigid channeling plate having a first side, a second side, a first fluid passage, fluidly connected with said stator member at least one axial fluid path, said first fluid passage extending through said channeling plate for receiving one of the high pressure fluid and the exhaust fluid, said channeling plate also including a second fluid passage, fluidly connected with said rotor internal bore, said second fluid passage also extending through said channeling plate for receiving the other of the high pressure fluid and the exhaust fluid, said channeling plate additionally including a plurality of through holes, fluidly connected with said rotor second axial end surface recess, for receiving the high pressure fluid; an end plate having a first side adjacent said second side of said channeling plate; and a cavity, fluidly connected with said plurality of through holes in said channeling plate, located between said channeling plate and said end plate for receiving the high pressure fluid from one of either said channeling plate first and second fluid passages.
- 13. The rotary fluid pressure device as in claim 12 wherein said channeling plate includes a first check valve located within said first fluid passage and a second check valve located within said second fluid passage.
- 14. The rotary fluid pressure device as in claim 13 wherein one of said first and second check valves is opened for allowing high pressure flow to pass therethrough.
- 15. The rotary fluid pressure device as in claim 12 wherein said cavity is located within and concentric with one of said channeling plate and said end plate.
CROSS-REFERENCE TO RELATED CASES
[0001] The present application claims the benefit of the filing date of U. S. Provisional Application Serial No. 60/410,739 filed Sep. 13, 2002, the disclosure of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60410739 |
Sep 2002 |
US |