Claims
- 1. A rotary valve, comprising:
a rigid hollow stator comprising an inner bearing surface and one or more flow ports; a rotor disposed within said stator, said rotor comprising a rigid core and a compliant lining injection molded onto said rigid core, wherein said compliant lining is sealingly engaged with said inner bearing surface of said stator and comprises one or more surface channels that can be placed into fluid communication with said one or more ports.
- 2. The rotary valve of claim 1, wherein said rigid core comprises one or more through channels.
- 3. The rotary valve of claim 2, wherein said one or more surface channels intersect said one or more through channels.
- 4. The rotary valve of claim 1, wherein said one or more surface channels comprises one or more arcuate surface channels.
- 5. The rotary valve of claim 1, wherein said one or more surface channels comprises one or more longitudinal surface channels.
- 6. The rotary valve of claim 1, wherein said one or more surface channels comprises a plurality of arcuate surface channels.
- 7. The rotary valve of claim 1, wherein said rigid core is composed of polycarbonate.
- 8. The rotary valve of claim 1, wherein said compliant lining is composed of polyurethane.
- 9. A rotor for a rotary valve, comprising:
a rigid core; and a compliant lining injection molded onto said rigid core, wherein said compliant lining comprises one or more surface channels.
- 10. The rotor of claim 9, wherein said rigid core comprises one or more through channels.
- 11. The rotor of claim 10, wherein said one or more surface channels intersect said one or more through channels.
- 12. The rotor of claim 9, wherein said one or more surface channels comprises one or more arcuate surface channels.
- 13. The rotor of claim 9, wherein said one or more surface channels comprises one or more longitudinal surface channels.
- 14. The rotor of claim 9, wherein said one or more surface channels comprises a plurality of arcuate surface channels.
- 15. The rotor of claim 9, wherein said rigid core is composed of polycarbonate.
- 16. The rotor of claim 9, wherein said compliant lining is composed of polyurethane.
- 17. A rotary valve, comprising:
a rigid hollow stator comprising an inner bearing surface and a flow port; a rotor disposed within said stator, said rotor comprising a rigid core including a ridge, said rotor further comprising a compliant lining injection molded onto said ridge to form a surface channel, wherein said compliant lining is sealingly engaged with said inner bearing surface of said stator and said surface channel can be placed into fluid communication with said flow port.
- 18. The rotary valve of claim 17, wherein said ridge has a pair of opposing lateral surfaces and an adjacent circumferential surface, and said compliant lining is injection molded onto said opposing lateral surfaces of said ridge, while leaving said circumferential surface of said ridge exposed, to form said surface channel.
- 19. The rotary valve of claim 17, wherein said compliant lining comprises a surface channels stop.
- 20. The rotary valve of claim 18, wherein said compliant lining comprises a surface channel stop, said ridge has another pair of opposing lateral surfaces and another adjacent circumferential surface, and said compliant lining is injection molded onto said other opposing lateral surfaces and said other circumferential surface of said ridge to form said surface channel stop.
- 21. The rotary valve of claim 17, wherein said stator comprises a plurality of flow ports, said rigid core includes a plurality of arcuate ridges, said compliant lining is injection molded onto said plurality of arcuate ridges to form a plurality of arcuate surface channels that can be placed into fluid communication with said plurality of flow ports.
- 22. The rotary valve of claim 21, wherein said plurality of arcuate ridges are equidistant.
- 23. The rotary valve of claim 17, wherein said ridge comprises a longitudinal ridge.
- 24. The rotary valve of claim 21, wherein said stator comprises another flow port, said rigid core includes a longitudinal ridge that intersects said plurality of arcuate ridges, and said compliant lining is injection molded onto said longitudinal ridge to form a longitudinal surface channel that can be placed into fluid communication with said another flow port.
- 25. The rotary valve of claim 21, wherein said stator comprises a rectilinear plurality of flow ports, said rigid core includes a longitudinal ridge that intersects said plurality of arcuate ridges, and said compliant lining is injection molded onto said longitudinal ridge to form a plurality of longitudinal surface channels that can be placed into fluid communication with said another plurality of flow ports.
- 26. The rotary valve of claim 17, wherein said rigid core comprises a through channel.
- 27. The rotary valve of claim 24, wherein said rigid core comprises a through channel at an intersection between one of said plurality of arcuate ridges and said longitudinal ridge.
- 28. The rotary valve of claim 17, wherein said rigid core is composed of polycarbonate.
- 29. The rotary valve of claim 17, wherein said compliant lining is composed of polyurethane.
- 30. A rotor for a rotary valve, comprising:
a rigid core including a ridge; and a compliant lining injection molded onto said ridge to form a surface channel.
- 31. The rotor of claim 30, wherein said ridge has a pair of opposing lateral surfaces and an adjacent circumferential surface, and said compliant lining is injection molded onto said opposing lateral surfaces of said ridge, while leaving said circumferential surface of said ridge exposed, to form said surface channel.
- 32. The rotor of claim 30, wherein said compliant lining comprises a surface channels stop.
- 33. The rotor of claim 31, wherein said compliant lining comprises a surface channel stop, said ridge has another pair of opposing lateral surfaces and another adjacent circumferential surface, and said compliant lining is injection molded onto said another opposing lateral surfaces and another circumferential surface of said ridge to form said surface channel stop.
- 34. The rotor of claim 30, wherein said rigid core includes a plurality of arcuate ridges, and said compliant lining is injection molded onto said plurality of arcuate ridges to form a plurality of arcuate surface channels.
- 35. The rotor of claim 34, wherein said plurality of arcuate ridges are equidistant.
- 36. The rotor of claim 30, wherein said ridge comprises a longitudinal ridge.
- 37. The rotor of claim 34, wherein said rigid core includes a longitudinal ridge that intersects said plurality of arcuate ridges, and said compliant lining is injection molded onto said longitudinal ridge to form a longitudinal surface channel.
- 38. The rotor of claim 37, wherein said compliant lining is injection molded onto said longitudinal ridge to form a plurality of longitudinal surface channels.
- 39. The rotor of claim 30, wherein said rigid core comprises a through channel.
- 40. The rotor of claim 37, wherein said rigid core comprises a through channel at an intersection between one of said plurality of arcuate ridges and said longitudinal ridge.
- 41. The rotor of claim 30, wherein said rigid core is composed of polycarbonate.
- 42. The rotor of claim 30, wherein said compliant lining is composed of polyurethane.
RELATED APPLICATIONS
[0001] The present application claims priority under 35 U.S.C. 119(e) to U.S. Provisional Application No. 60/336,596 filed Dec. 4, 2001, which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60336596 |
Dec 2001 |
US |