Claims
- 1. A clutch system having a power input member and a power output member, comprising:
a clutch member being coaxially disposed about the power input member, the clutch member being in physical cooperation with the power input member and the power output member, the clutch member being capable of rotating in either a first or a second direction in response to a torque force from the power input member; an inner race member being coaxially disposed about the clutch member, the inner race member being in physical cooperation with the clutch member, the inner race member being capable of rotating in either a first or a second direction in response to a torque force from the power input member; an outer race member being coaxially disposed about the inner race member, the outer race member being in physical cooperation with the inner race member, the outer race member being capable of rotating in either a first or a second direction in response to a torque force from the power input member; and a roller member disposed between the inner and outer race members; wherein the roller member is selectively operable so as to physically engage at least a portion of a surface of the outer and inner race members so as to cause the clutch member to physically disengage from the power output member in response to a torque force being applied to the power output member in either a first or a second direction.
- 2. The invention according to claim 1, wherein the clutch system is in operable cooperation with a power assisted steering system for a vehicle, wherein the power assisted steering system includes a power steering motor, wherein the power output member is capable of rotating in either a first or second direction in response to a torque force, the power input member being in physical cooperation with the power steering motor.
- 3. The invention according to claim 1, wherein inner race member includes at least one cammed surface.
- 4. The invention according to claim 1, wherein inner race member includes three cammed surfaces.
- 5. The invention according to claim 1, wherein the inner race member is substantially cylindrical.
- 6. The invention according to claim 1, wherein the roller member is substantially disposed within the at least one cammed surface of the inner race member.
- 7. The invention according to claim 1, wherein the outer race member is substantially cylindrical.
- 8. The invention according to claim 1, wherein outer race member includes at least one cammed surface.
- 9. The invention according to claim 1, wherein outer race member includes three cammed surfaces.
- 10. The invention according to claim 1, further comprising a torque limitation system, wherein the torque limitation system comprises:
a housing member; the power output member being capable of rotating relative to the housing member; and at least one other clutch member in physical cooperation with the housing member and the power output member, the at least one other clutch member having a compressive force applied thereto so as to establish a preset torque level between the housing member and the power output member; wherein the at least one other clutch member is selectively operable so as to slip in response to the application of a torque force in excess of the preset torque level.
- 11. The invention according to claim 10, wherein the at least one other clutch member includes a splined surface.
- 12. The invention according to claim 11, wherein the preset torque level is about 10N-m.
- 13. The invention according to claim 10, further comprising a retainer member for retaining the roller member between the inner race member and the outer race member.
- 14. The invention according to claim 13, further comprising a friction member disposed between retainer member and the housing.
- 15. The invention according to claim 1, further comprising a spring member in physical cooperation with the inner race.
- 16. A clutch system for use in conjunction with a power assisted steering system for a vehicle, wherein the power assisted steering system includes a power steering motor, a power input member capable of rotating in either a first or a second direction in response to a torque force, and a power output member, the power input member being in physical cooperation with the power steering motor, comprising:
a clutch member being coaxially disposed about the power input member, the clutch member being in physical cooperation with the power input member and the power output member, the clutch member being capable of rotating in either a first or a second direction in response to a torque force from the power input member; an inner race member being coaxially disposed about the clutch member, the inner race member being in physical cooperation with the clutch member, the inner race member being capable of rotating in either a first or a second direction in response to a torque force from the power input member; an outer race member being coaxially disposed about the inner race member, the outer race member being in physical cooperation with the inner race member, the outer race member being capable of rotating in either a first or a second direction in response to a torque force from the power input member; and a roller member disposed between the inner and outer race members; wherein the roller member is selectively operable so as to physically engage at least a portion of a surface of the outer and inner race members so as to cause the clutch member to physically disengage from the power output member in response to a torque force being applied to the power output member in either a first or a second direction.
- 17. The invention according to claim 16, wherein inner race member includes at least one cammed surface.
- 18. The invention according to claim 17, wherein the roller member is substantially disposed within the at least one cammed surface of the inner race member.
- 19. The invention according to claim 16, wherein the outer race member is substantially cylindrical.
- 20. The invention according to claim 16, further comprising a torque limitation system, wherein the torque limitation system comprises:
a housing member; the power output member being capable of rotating relative to the housing member; and at least one other clutch member in physical cooperation with the housing member and the power output member, the at least one other clutch member having a compressive force applied thereto so as to establish a preset torque level between the housing member and the power output member; wherein the at least one other clutch member is selectively operable so as to slip in response to the application of a torque force in excess of the preset torque level.
- 21. The invention according to claim 20, wherein the at least one other clutch member includes a splined surface.
- 22. The invention according to claim 20, wherein the preset torque level is about up to 10N-m.
- 23. The invention according to claim 16, further comprising a retainer member for retaining the roller member between the inner race member and the outer race member.
- 24. A power assisted steering system for a vehicle, comprising:
a power steering motor; a power output member capable of rotating in either a first or a second direction in response to a torque force, the power output member being in physical cooperation with the power steering motor; and a clutch system disposed between the power steering motor and the power output member, the clutch system member being coaxially disposed about the power output member, the clutch system being in physical cooperation with the power output member; wherein the clutch system is selectively operable to physically disengage from the power output member in response to a torque force being applied to the power output member in either a first or a second direction.
- 25. The invention according to claim 24, wherein the clutch system comprises:
a clutch member being coaxially disposed about the power input member, the clutch member being in physical cooperation with the power input member, the clutch member being capable of rotating in either a first or a second direction in response to a torque force from the power input member; an inner race member being coaxially disposed about the clutch member, the inner race member being in physical cooperation with the clutch member, the inner race member being capable of rotating in either a first or a second direction in response to a torque force from the power input member; an outer race member being coaxially disposed about the inner race member, the outer race member being in physical cooperation with the inner race member, the outer race member being capable of rotating in either a first or a second direction in response to a torque force from the power input member; and a roller member disposed between the inner and outer race members; wherein the roller member is selectively operable so as to physically engage at least a portion of a surface of the outer and inner race members so as to cause the clutch member to physically disengage from the power output member in response to a torque force being applied to the power output member in either a first or a second direction.
- 26. The invention according to claim 24, wherein inner race member includes at least one cammed surface.
- 27. The invention according to claim 24, wherein the roller member is substantially disposed within the at least one cammed surface of the inner race member.
- 28. The invention according to claim 25, wherein the outer race member is substantially cylindrical.
- 29. The invention according to claim 24, further comprising a torque limitation system, wherein the torque limitation system comprises:
a housing member; the power output member being capable of rotating relative to the housing member; and at least one other clutch member in physical cooperation with the housing member and the power output member, the at least one other clutch member having a compressive force applied thereto so as to establish a preset torque level between the housing member and the power output member; wherein the at least one other clutch member is selectively operable so as to slip in response to the application of a torque force in excess of the preset torque level.
- 30. The invention according to claim 29, wherein the at least one other clutch member includes a splined surface.
- 31. The invention according to claim 29, wherein the preset torque level is about 10N-m.
- 32. The invention according to claim 24, further comprising a retainer member for retaining the roller member between the inner race member and the outer race member.
- 33. A power assisted steering system for a vehicle, comprising:
a power steering motor; a power input member capable of rotating either in a first or a second direction in response to a torque force, the power input member being in physical cooperation with the power steering motor; a clutch system disposed between the power steering motor and a power output member, the clutch system member being coaxially disposed about the power output member, the clutch system being in physical cooperation with the power output member, wherein the clutch system comprises:
a clutch member being coaxially disposed about the power input member, the clutch member being in physical cooperation with the power input member, the clutch member being capable of rotating in either a first or a second direction in response to a torque force from the power input member; an inner race member being coaxially disposed about the clutch member, the inner race member being in physical cooperation with the clutch member, the inner race member being capable of rotating in either a first or a second direction in response to a torque force from the power input member; an outer race member being coaxially disposed about the inner race member, the outer race member being in physical cooperation with the inner race member, the outer race member being capable of rotating in either a first or a second direction in response to a torque force from the power output member; and a roller member disposed between the inner and outer race members; wherein the roller member is selectively operable so as to physically engage at least a portion of a surface of the outer and inner race members so as to cause the clutch member to physically disengage from the power output member in response to a torque force being applied to the power output member in either a first or a second direction.
- 34. The invention according to claim 33, wherein inner race member includes at least one cammed surface.
- 35. The invention according to claim 33, wherein the roller member is substantially disposed within the at least one cammed surface of the inner race member.
- 36. The invention according to claim 33, wherein the outer race member is substantially cylindrical.
- 37. The invention according to claim 33, further comprising a torque limitation system, wherein the torque limitation system comprises:
a housing member; the power output member being capable of rotating relative to the housing member; and at least one other clutch member in physical cooperation with the housing member and the power output m ember, the at least one other clutch member having a compressive force applied thereto so as to establish a preset torque level between the housing member and the power output member; wherein the at least one other clutch member is selectively operable so as to slip in response to the application of a torque force in excess of the preset torque level.
- 38. The invention according to claim 37, wherein the at least one other clutch member includes a splined surface.
- 39. The invention according to claim 37, wherein the preset torque level is about up to 10N-m.
- 40. The invention according to claim 33, further comprising a retainer member for retaining the roller member between the inner race member and the outer race member.
- 41. A torque limitation system, comprising:
a housing member; a power output member capable of rotation in response to a torque force, the power output member being capable of rotating relative to the housing member; and at least one clutch member in physical cooperation with the housing member and the power output member, the clutch member having a compressive force applied thereto so as to establish a preset torque level between the housing member and the power output member; wherein the at least one clutch member is selectively operable so as to slip in response to the application of a torque force in excess of the preset torque level.
- 42. The invention according to claim 41, wherein the torque limitation system is in operable cooperation with a power assisted steering system for a vehicle.
- 43. The invention according to claim 41, wherein the at least one clutch member includes a splined surface.
- 44. The invention according to claim 43, wherein the preset torque level is about 10N-m.
- 45. A torque limitation system for use in conjunction with a power assisted steering system for a vehicle, comprising:
a housing member; a power output member capable of rotation in response to a torque force, the power output member being capable of rotating relative to the housing member; and at least one clutch member in physical cooperation with the housing member and the power output member, the clutch member having a compressive force applied thereto so as to establish a preset torque level between the housing member and the power output member; wherein the at least one clutch member is selectively operable so as to slip in response to the application of a torque force in excess of the preset torque level.
- 46. The invention according to claim 45, wherein the at least one clutch member includes a splined surface.
- 47. The invention according to claim 45, wherein the preset torque level is about 10N-m.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present invention claims priority to U.S. Provisional Patent Application Serial No. 60/308,022 filed Jul. 26, 2001, the entire specification of which is expressly incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60308022 |
Jul 2001 |
US |