Claims
- 1. In a gerotor hydraulic pressure device having a housing, a rotor with two flat axial end surfaces, gerotor cells and two fluid connections, an improved fluid control comprising a pair of travel passageways, one of said pair of travel passageways extending on a straight line through the rotor from one surface to the other, the other of said pair of travel passageways being in the rotor, means to connect one of said pair of travel passageways to one of the fluid connections, means to connect the other of said pair of travel passageways to the other of the fluid connections and means within the housing to connect said pair of travel passageways to the gerotor cells selectively as the device is operated.
- 2. A rotary fluid pressure device as defined in claim 1, wherein the gerotor hydraulic pressure housing includes a manifold axially engaging against the gerotor and an end cap axially engaging said manifold on the side opposite the gerotor said means within the housing to connect said pair of travel passageways to the gerotor cells being manifold passageways in said manifold, means holding said end cap against said manifold, there being a pressure loading plate in a central recess in said end cap, said pressure loading plate forming a wall of said manifold passageways, an annular wave spring between said loading plate and said end cap, pressure fluid connections in said end cap communicating with the two fluid connections and check valves in said pressure fluid connections adjacent said pressure loading plate opening only toward said plate, whereby to exert a head force on said plate toward said manifold and the gerotor.
- 3. A rotary fluid pressure device as defined in claim 1, wherein the gerotor hydraulic pressure device includes a manifold axially engaging against said gerotor, the gerotor including a rotor having a concentric recess on the side toward said manifold, said recess having a larger diameter portion axially outermost and a smaller axially innermost portion, a flat radially extending shoulder joining said two portions, a commutator ring having larger and smaller diameter portions fitting snugly into said smaller diameter recess portion and spaced from said larger diameter recess portion and there providing a wall of one of said pair of travel passageways in the rotor, a seal between said smaller diameter of said commutator ring and said smaller diameter recessed portion in the rotor, an annular wave spring between said shoulder and the commutator ring, and a drive pin connection between said commutator ring and the rotor.
- 4. The structure of claim 1 characterized in that the other of said travel passageways extends through the rotor from one end surface to the other end surface.
- 5. In a gerotor hydraulic pressure device having a housing, a rotor with two flat axial end surfaces, gerotor cells, and two fluid connections, an improved fluid control comprising a pair of travel passageways, said pair of travel passageways being in the rotor, one of said pair of travel passageways extending through the rotor from one surface to the other, said one travel passageway being spaced from the axis of the rotor at both end surfaces of the rotor, said travel passageway surrounding said other travel passageway, means to connect one of said pair of travel passageways to one of the fluid connections, means to connect the other of said pair of travel passageways to the other of the fluid connections and manifold means within the housing to connect said pair of travel passageways to the gerotor cells selectively as the device is operated.
- 6. The structure of claim 1 or 5 characterized in that the other of said travel passageways is an opening in an end surface of the rotor.
- 7. In a gerotor hydraulic pressure device having a housing, a rotor with two flat axial end surfaces, a universal drive joint connected to the rotor, gerotor cells and two fluid connections, an improved fluid control comprising a pair of travel passageways, each of said pair of travel passageways extending through the rotor from one surface to the other, one of said pair of travel passageways surrounding the other of said pair of travel passageways, said one of said pair of travel passageways being spaced from the axis of the rotor at both end surfaces of the rotor, means to connect one of said pair of travel passageways to one of the fluid connections, means to connect the other of said pair of travel passageways to the other of the fluid connections and means within the housing to connect said pair of travel passageways to the gerotor cells selectively as the device is operated.
- 8. In a gerotor hydraulic pressure device having a housing, a rotor with two flat axial end surfaces, a universal drive joint connected to the rotor, gerotor cells and two fluid connections, an improved fluid control comprising a pair of travel passageways, one of said pair of travel passageways extending on a straight line through the rotor from one surface to the other, the other of said pair of travel passageways being in the rotor around the universal drive joint, means to connect one of said pair of travel passageways to one of the fluid connections, means to connect the other of said pair of travel passageways to the other of the fluid connections and means within the housing to connect said pair of travel passageways to the gerotor cells selectively as the device is operated.
- 9. In a gerotor hydraulic pressure device having a housing, a rotor with two flat axial end surfaces, gerotor cells and two fluid connections, an improved fluid control comprising a pair of travel passageways, each of said pair of travel passageways extending on a straight line through the rotor from one surface to the other, means to connect one of said pair of travel passageways to one of the fluid connections, means to connect the other of said pair of travel passageways to the other of the fluid connections and means within the housing to connect said pair of travel passageways to the gerotor cells selectively as the device is operated.
- 10. In a gerotor hydraulic pressure device having a housing, a stator, a rotor, the rotor having two flat axial end surfaces, a universal drive joint connected to the rotor, cells and two fluid connections, an improved control comprising a first set of travel passageways, said first set of travel passageways being located in the rotor, said first set of travel passageways extending from one surface to the other surface of the rotor, said first set of travel passageways being spaced from the axis of the rotor at both end surfaces of the rotor, means to connect said first set of travel passageways to one of the two fluid connections, a second set of travel passageways, said second set of travel passageways being located in the rotor, said second set of travel passageways extending from one surface to the other surface of the rotor, said second set of travel passageways being around the universal drive joint, said first set of travel passageways surrounding said second set of travel passageways, means to connect said second set of travel passageways to the other of the two fluid connections, a set of fluid passageways, said set of fluid passageways being located in the housing, each member of said set of fluid passageways having first and second end portions, said first end portion opening into the cells, and said second end portion opening in the zone swept by said travel passageways, said travel passageways selectively communicating with said second end portions as the device is operated.
- 11. The structure of claim 10 characterized in that said first set of travel passageways extends normal to the surfaces of the rotor and said second set of travel passageways extends normal to the surfaces of the rotor.
- 12. The structure of claim 10 characterized in that said first set of travel passageways comprises an annular channel, said annular channel being located on one end surface of the rotor, a second annular channel, said second annular channel being located on the other end surface of the rotor, a hole or set of holes, said hole or set of holes being located in the rotor and said hole or set of holes connecting said annular channel to said second annular channel.
- 13. The structure of claim 10 characterized in that the housing includes a rotor cavity surface and that said means to connect said first set of travel passageways to one of the two fluid connections comprises an annular transfer channel, said annular transfer channel being located on the surface of the rotor cavity, said annular transfer channel opening into the cavity and means to connect said annular transfer channel to one of the two fluid connections.
- 14. The structure of claim 10 characterized in that said set of fluid passageways are on a manifold in the housing with the manifold having two surfaces and that each comprises a first and a second channel, said first channel being located on one surface of the manifold, said first channel connected to said first end portion opening into the cells, said second channel being located on the other surface of the manifold, said second channel connected to said second end portion opening in the zone of said travel passageways, a hole, and said hole connecting said first channel to said second channel.
- 15. The structure of claim 14 characterized by the addition of an end plate, said end plate having a surface, said end plate being attached to said manifold and said surface of said end plate enclosing said second channel.
- 16. In a gerotor hydraulic pressure device having a housing, a stator, a rotor, the rotor having two flat axial end surfaces, cells, a rotor cavity, the rotor cavity having two flat end surfaces, a drive connection driving the rotor in a geared connection in a central bore extending through the rotor and two fluid connections, an improved fluid control comprising a distribution channel, said distribution channel being located in said housing, said distribution channel being connected to one of the two fluid connections, an annular transfer channel, said annular transfer channel being located on one of two surfaces of the rotor cavity, said annular transfer channel opening into the rotor cavity, a set of fluid travelways, said set of fluid travelways being located in the housing connecting said distribution channel to said annular transfer channel, means to connect the central bore of the rotor to the other of the two fluid connections, the housing having first and second sets of openings, said first set of openings being located on the other of the two surfaces of the rotor cavity, said first set of openings communicating into the cells, said second set of openings being located on the other of the two surfaces of the rotor cavity, said second set of openings, opening into the rotor cavity, a set of fluid passageways, said set of fluid passageways being located in said housing, said set of fluid passageways connecting said first set of openings with said second set of openings, respectively, an annular channel, said annular channel being located on one surface of the rotor, said annular channel communicating with said annular transfer channel, a second annular channel, said second annular channel being located on the other surface of the rotor, a hole or set of holes, said hole or set of holes being located in the rotor, said hole or set of holes connecting said annular channel with said second annular channel, a second set of holes, said second set of holes being the gaps and openings in the geared drive connection in the central through bore of the rotor, and said second annular channel and said central through bore of the rotor selectively communicating with said second set of openings as the device is operated to selectively connect the gerotor cells to the fluid connections.
- 17. The structure of claim 16 characterized in that each of said set of fluid travelways connecting said distribution channel to said annular transfer channel is of a larger diameter at its intersection with said distribution channel than at its intersection with said annular transfer channel.
- 18. The structure of claim 16 characterized in that said set of fluid passageways connecting said set of openings with said second set of openings are located on a housing manifold having two surfaces and each comprises a first and second channel, said first channel being located on one surface of the manifold, said first channel connected to one of said set of openings, said first channel opening into the cavity of the rotor, said second channel being located on the other surface of the manifold, said second channel being connected to one of said second set of openings, a hole and said hole connecting said first channel to said second channel.
- 19. The structure of claim 18 characterized by the addition of a manifold plate and an end plate and in that said first and second set of openings and said fluid passageway connecting them are on said manifold plate, said manifold plate having two surfaces, one of said surfaces being the other of the two surfaces of the rotor cavity, said first set of openings being equal in number to the cells, said first set of openings being located on one of the two surfaces of said manifold plate, said set of openings communicating into the cells one opening to one cell respectively, said second set of openings being equal in number to the cells, said second set of openings being located on one of the two surfaces of said manifold plate, said set of openings communicating into the rotor cavity near its central portion, said fluid passageways comprising a first and second set of channels, said first set of channels being equal in number to the cells, said first set of channels being located on one of the two surfaces of said manifold plate, said first set of channels opening into the rotor cavity, each of said first set of channels having two end portions, one end of each of said first set of channels communicating with one of said set of openings, a second set of channels, said second set of channels being equal in number to said cells, said second set of channels being located on the other of the two surfaces of said manifold plate, said end plate having a surface, said end plate being attached to said manifold, said second set of channels being enclosed by said end plate, one end of each of said second set of channels communicating with one of said second set of openings, said manifold plate having a set of holes, said set of holes being equal in number of said cells, said set of holes being located in said manifold and one of said set of holes connecting the other end of one of said set of channels to the other end of one of said second set of channels.
- 20. The structure of claim 19 characterized by the addition of a pressure plate and said pressure plate being located in said end plate.
- 21. The structure of claim 19 characterized by the addition of a commutator ring and said commutator ring being located in the rotor around the central through bore.
- 22. In a gerotor hydraulic pressure device having a housing, a stator, a rotor, the rotor having two flat axial end surfaces, a geared drive connection in a through bore at the center of the rotor, cells and two fluid connections an improved fluid control comprising a first set of travel passageways, said first set of travel passageways being located in the rotor, said first set of travel passageways extending from one surface to the other surface of the rotor, means to connect said first set of travel passageways to one of the two fluid connections, a second set of travel passageways, said second set of travel passageways extending fom one surface to the other surface of the rotor, said second set of travel passageways being the gaps and openings in the geared drive connection, means to connect said second set of travel passageways to the other of the two fluid connections, a set of fluid passageways, said set of fluid passageways being located in the housing, each member of said set of fluid passageways having first and second end portions, said first end portion opening into the cells and said second end portion opening in the zone of said travel passageways so as to selectively communicate with them as the device is operated.
- 23. The structure of claim 24 characterized in that said means to connect said first set of travel passageways to one of the two fluid connections comprises a distribution channel, said distribution channel being located in said housing, said distribution channel being connected to one of the two fluid connections, an annular transfer channel, said annular transfer channel being located on one of the two surfaces of the rotor cavity, said annular transfer channel opening into the rotor cavity, a set of fluid travelways, said set of fluid travelways being located in the housing connecting said distribution channel to said annular transfer channel, and said annular transfer channel communicating with said first set of travel passageways.
- 24. The structure of claim 22 characterized in that said set of fluid passageways each comprises a first and second channel, said first channel being located on one surface of the manifold, said first channel opening into the cavity of the rotor, said second channel being located on the other surface of the manifold, a hole and said hole connecting said channel to said second channel.
- 25. In a gerotor hydraulic pressure device having a housing, a stator, a rotor, the rotor having two flat axial end surfaces, a geared drive connection at the center of the rotor, gerotor cells, a set of manifold passageways in said housing communicating with the gerotor cells, and two fluid connections, an improved fluid control comprising a first travel passageway, said first travel passageway being a series of holes, said first travel passageway being located in the rotor, said first travel passageway extending from one surface to the other surface of the rotor, said first travel passageway being spaced from the axis of the rotor at both end surfaces of the rotor, commutation means to connect said first travel passageway to one of the two fluid connections, a second travel passageway, said second travel passageway being located in the rotor, said first travel passageway surrounding said second travel passageway, and means to connect said second travel passageway to the other of the two fluid connections, said travel passageways selectively communicating with the set of manifold passageways in the housing as the device is operated.
- 26. The gerotor hydraulic pressure device of claim 25 characterized in that said second travel passageway comprises the gaps and openings in the geared drive connection.
- 27. The gerotor hydraulic pressure device of claim 25 wherein the housing has a rotor facing surface and said commutation means to connect said first travel passageway to one of the two fluid connections includes a commutation ring channel, said commutation ring channel being on one of the rotor facing surface of the housing or the axial end surface of the rotor facing such rotor facing surface of the housing.
- 28. The gerotor hydraulic pressure device of claim 27 characterized by said commutation means also including a ring channel, said ring channel being on the other of the rotor facing surface of the housing or the axial end surface of the rotor facing such rotor facing surface of the housing, said commutation ring channel commuting with said ring channel.
- 29. The gerotor hydraulic pressure device of claim 25 characterized by the addition of a ring channel on one flat surface of the rotor and another ring channel on the other flat surface of the rotor, and said first travel passageway connecting said ring channel to said another ring channel.
- 30. The gerotor hydraulic pressure device of claim 29 wherein the housing has a rotor facing surface and characterized by the further addition of said commutation means to connect said first travel passageway to one of the two fluid connections including a commutation ring channel, said commutation ring channel being on the rotor facing surface of the housing, said commutation ring channel commuting with said ring channel.
- 31. The gerotor hydraulic pressure device of claim 29 characterized in that said ring channels being of substantially similar surface area.
- 32. The structure of claim 25 or 28 characterized in that said second travel passageway extends from one end surface to the other end surface of the rotor.
- 33. The structure of claim 25 or 28 characterized in that said second travel passageway is an opening in an end surface of the rotor.
- 34. A gerotor hydraulic pressure device having a housing, a stator, a rotor, the rotor having two flat axial end surfaces, a geared drive connection at the center of the rotor, gerotor cells, a set of manifold passageways in said housing communicating with the gerotor cells and two fluid connections, an improved fluid control comprising an annular channel, said annular channel being in one flat surface of the rotor, said annular channel being spaced from the axis of the rotor, a second annular channel, said second annular channel being in the other flat surface of the rotor, said second annular channel being spaced from the axis of the rotor, at least one hole through the rotor connecting said annular channel to said second annular channel, commutation means to connect said annular channel to one of the two fluid connections, a travel passageway being located in the rotor, one of said annular channel or said second annular channel surrounding said travel passageway, and means to connect said travel passageway to the second of the two fluid connections, said second annular channel and said travel passageways selectively communicating with the set of manifold passageways in said housing as the device is operated.
- 35. In a gerotor hydraulic pressure device having a housing, a stator, a rotor, the rotor having two flat axial end surfaces, a universal drive joint connected to the rotor, gerotor cells, a set of manifold passages in the housing communicating with the cells and two fluid connections, an improved control comprising a first set of travel passageways, said first set of travel passageways extending from one end surface to the other end surface of the rotor, said first set of travel passageways being spaced from the axis of the rotor at both end surfaces of the rotor, means to connect said first set of travel passageways to one of the two fluid connections, a second travel passageway, said second travel passageway being an opening in a flat surface of the rotor, said first set of travel passageways surrounding said second travel passageway, and means to connect said second travel passageway to the other of the two fluid connections, said travel passageways selectively communicating with the set of manifold passageways as the device is operated.
- 36. The gerotor hydraulic pressure device of claim 35 characterized in that first set of travel passageways comprises an annular channel, said annular channel being located on one flat surface of the rotor, a second annular channel, said second annular channel being located on the other flat surface of the rotor, and at least one hole through the rotor connecting said annular channel to said second annular channel.
- 37. In a gerotor hydraulic pressure device having a housing, the housing having two rotor facing flat surfaces, a stator, a rotor, the rotor having two flat axial end surfaces, a geared drive connection at the center of the rotor, gerotor cells, a set of manifold passages in the housing communicating with the gerotor cells and two fluid connections, an improved fluid control comprising a first travel passageway, said first travel passageway being a series of holes, said first travel passageway being located in the rotor, said first travel passageway extending from one end surface to the other end surface of the rotor, said first travel passageway being spaced from the axis of the rotor at both end surfaces of the rotor, first commutation means to connect said first travel passageway to one of the two fluid connections, a second travel passageway, said second travel passageway being located in the rotor, said second travel passageway being an opening in a surface of the rotor, said first travel passageway surrounding said second travel passageway, and second commutation means to connect said second travel passageway to the second of the two fluid connections, said travel passageways selectively communicating with the set of manifold passageways as the device is operated.
- 38. The structure of claim 37 characterized in that said second commutation means is on the opposite side of the rotor from said first commutation means.
- 39. The gerotor hydraulic pressure device of claim 37 wherein the opening of said second travel passageway has a surface area and characterized by the addition of a balancing ring channel, said balancing ring channel being in the surface of the rotor on the opposite side of the rotor from said opening, said balancing ring channel having a surface area substantially equal to said surface area of said opening, and means through the rotor to connect said opening with said balancing ring channel, said balancing ring channel equalizing the pressures on the opposing sides of the rotor.
- 40. The gerotor hydraulic pressure device of claim 37 wherein the housing has a rotor facing piece and said second communication means to connect said second travel passageway to the second of the two fluid connections includes a hole, said hole being through the rotor facing piece of the housing.
- 41. The gerotor hydraulic pressure device of claim 37 wherein the housing has a rotor facing surface and said first commutation means to connect said first travel passageway to one of the two fluid connections includes a commutation ring channel, said commutation ring channel being on one of the rotor facing surface of the housing or the axial end surface of the rotor facing such rotor facing surface of the housing.
- 42. The gerotor hydraulic pressure device of claim 41 characterized by said first commutation means also including a ring channel, said ring channel being on the other of the rotor facing surface of the housing or the axial end surface of the rotor facing such rotor facing surface of the housing, said first commutation means commuting with said ring channel.
- 43. The gerotor hydraulic pressure device of claim 37 characterized by said first travel passageway being at least one hole and by the addition of an annular channel on one flat surface of the rotor and a second annular channel on the other flat surface of the rotor, one of said annular channels surrounding said opening, and said first travel passageway connecting said annular channel to said second annular channel.
- 44. The gerotor hydraulic pressure device of claim 43 characterized in that said ring channels are of substantially similar surface area.
- 45. The gerotor hydraulic pressure device of claim 43 wherein the housing has a rotor facing surface and characterized by the further addition of said first commutation means to connect said first travel passageway to one of the two fluid connections includes a commutation ring channel, said first commutation ring channel being on the rotor facing surface of the housing, said first commutation ring channel commuting with said annular channel.
- 46. In a gerotor hydraulic pressure device having a housing having two rotor facing walls, a stator, a rotor, the rotor having two flat axial end surfaces, a geared drive connection at a partial through bore in the center of a flat end surface of the rotor, gerotor cells, a set of manifold passages in the housing communicating with the gerotor cells and two fluid connections, an improved fluid control comprising an annular channel, said annular channel being in one end surface of the rotor, said annular channel being spaced from the axis of the rotor, a hole or series of holes, said hole or series of holes extending from said annular channel to the other end surface of the rotor, said hole or series of holes joining the other end surface of the rotor substantially at the intersection of the other end surface of the rotor and the partial through bore therein, said hole or series of holes being spaced from the axis of the rotor at said intersection, commutation means in one rotor facing wall of the housing to connect said hole or series of holes to one of the two fluid connections, an opening, said opening being in said one end surface of the rotor, said annular channel surrounding said opening, second commutation means in the other rotor facing wall of the housing to connect said opening to the other of the two fluid connections, said annular channel and said opening selectively communicating with the set of manifold passageways as the device is operated.
- 47. The gerotor hydraulic pressure device of claim 46 characterized in that said hole or series of holes extend linearly through the rotor.
- 48. The gerotor hydraulics pressure device of claim 46 wherein said opening has a surface area and characterized by the addition of a balancing opening, said balancing opening being in the other end surface of the rotor on the opposite side of the rotor from said opening, said balancing opening having a surface area substantially equal to said surface area of said opening and a hole or series of holes through the rotor to connect said opening with said balancing opening, said balancing opening equalizing the pressures on opposing sides of the rotor.
- 49. The gerotor hydraulic pressure device of claim 48 wherein said balancing opening is a ring channel and said ring channel surrounding said partial through bore.
Parent Case Info
This is a continuation of application Ser. No. 910,075, filed May 26, 1978, now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2354573 |
May 1975 |
DEX |
Continuations (1)
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Number |
Date |
Country |
Parent |
910075 |
May 1978 |
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