Claims
- 1. A valve having reduced seal wear and reduced friction comprising:
a valve body having an inlet and an outlet forming a passage in the valve body; a valve stem extending into the valve body; a disc rotatable by the valve shaft to open and close the passage, the disc having a perimeter; and a valve seal that does not substantially contact the disc perimeter until the disc substantially closes the passage.
- 2. The valve as in claim 1, wherein the valve seal does not provide a pressure contact with the disc until the disc substantially closes the passage.
- 3. The valve as in claim 1, wherein the valve seal is a ductile material.
- 4. The valve as in claim 1 wherein the valve seal is a deformable metallic material.
- 5. The valve as in claim 1, further comprising a valve seal retainer to secure the valve seal in an elliptical shape.
- 6. The valve as in claim 1, wherein the valve seal cooperates with a garter spring.
- 7. The valve as in claim 1, wherein the valve seal includes an integral spring.
- 8. The valve as in claim 7, wherein the integral spring is formed along an external surface of the valve seal.
- 9. The valve as in claim 7, wherein the integral spring is encapsulated by the valve seal
- 10. The valve as in claim 1, wherein the valve seal is a two-piece assembly including an outer surface in press-fit engagement with the valve body.
- 11. The valve as in claim 10, wherein the valve seal further comprises a retention ring cooperating with a retention groove formed into the valve body.
- 12. The valve as in claim 1, wherein the valve seal is a one-piece seal including an outer surface in press-fit engagement with the valve body.
- 13. The valve as in claim 12, wherein the valve seal further comprises a retention ring cooperating with a retention groove formed into the valve body.
- 14. The valve of claim 12, wherein the one-piece seal is a deformable metal having a flexible arm.
- 15. The valve as in claim 1, wherein the disc has an elliptical shape and the valve seal has an elliptical shape and the valve seal is retained in a more elliptical shape than the disc.
- 16. The valve as in claim 1, wherein the valve seal has an outer circumference which is substantially round and an inner circumference which is substantially elliptical.
- 17. The valve as in claim 1, wherein the valve shaft is coupled to an actuator.
- 18. The valve as in claim 1, wherein the valve is used for throttling fluid flow.
- 19. The valve as in claim 1, wherein the disc is generally planar.
- 20. A valve having reduced seal wear comprising:
a valve body having an inlet and an outlet forming a passage in the valve body; a valve stem having an axis and extending into the valve body: a disc rotatable about the valve stem axis to open and close the passage, the disc having a sealable surface, said disc having a perimeter area; a valve seal having an elliptical shape when the passage is not substantially closed and upon substantial closure of the passage by the disc, the disc perimeter area deforms the valve seal to conform to the disc sealable surface.
- 21. The valve as in claim 20, wherein during closure of the passage, an interference engagement of the disc sealable surface with a portion of the valve seal elongates the valve seal minor axis wherein elongating the valve seal in a minor axis and contracts the seal in a major axis reducing the valve seal major axis dimension and forces contract between the valve seal proximate to the valve seal major axis and the disc sealable surface proximate to the disc minor axis to substantially seal the passage.
- 22. The valve as in claim 20, wherein the valve seal does not wear on the disc minor axis until the disc provides substantial closure.
- 23. A valve having reduced seal wear comprising:
a valve body having an inlet and an outlet forming a passage in the valve body; a valve stem having an axis and extending into the valve body: a disc rotatable by the valve stem to open and close the passage, the disc having a minor access parallel to the valve stem axis and a major axis perpendicular to the valve stem axis; and an elliptical valve seal having a major axis and a minor axis, the elliptical valve seal major axis aligned with and larger than the disc minor axis when the passage is open, and when the disc major axis engage, the elliptical valve seal minor axis during closure of the passage the portion of the elliptical valve seal proximate to the valve seal minor axis engages the disc sealable surface proximate to the disc major axis, wherein the seal perimeter deforms to substantially match the disc perimeter and elliptical valve seal have minimum wear during operation.
- 24. The valve as in claim 23, wherein the disc minor axis has minimal interference with the seal major axis when the passage is not substantially closed.
- 25. The valve as in claim 23, further comprising a valve seal retainer to retain the valve seal in an elliptical position.
- 26. The valve as in claim 23, wherein the disc has an elliptical shape and the valve seal has an elliptical shape and the valve seal minor axis is smaller than the disc minor axis.
- 27. The valve as in claim 23, wherein the disc minor axis is the same dimension as the disc major axis.
- 28. The valve as in claim 23, wherein the disc includes a hemispherical seating surface.
- 29. A method for minimizing valve seal wear while controlling flow t)of fluids comprising:
placing a substantially circular disc in a substantially circular valve body passage to control fluid flow, the disc having a rotational axis, a disc diameter perpendicular to the rotational axis and a circumference; forming an elliptical valve seal in the valve body such that the valve seal does not engage the disk at the rotational axis when the passageway is open and the elliptical valve seal interferes with the disc diameter upon substantial closure of the passage; and deforming the elliptical valve seal during closure of the passage such that the elliptical valve seal engages the disc tangential to the rotational axis when the disc substantially closes the passageway thereby providing control of flowing fluids with minimum valve seal wear.
- 30. The method as in claim 32, further comprising throttling fluid flow with the substantially circular disc.
- 31. The method as in claim 32, retaining the valve seal with a valve seal retainer.
- 32. The method as in claim 32, further including forming a valve body with an elliptical seal grove.
- 33. The method as in claim 32, further including forming a valve body with a round seal grove therein.
- 34. The method as in claim 32, further including installing a valve seal into the valve body.
- 35. The method as in claim 32 further including installing the valve body into a process control loop.
- 36. A valve having reduced seal wear and reduced friction comprising:
a valve body having an inlet and an outlet forming a passage in the valve body; a disc rotatable by the valve shaft to open and close the passage, the disc having a sealing periphery; and a valve seal in press-fit engagement with the valve body.
- 37. The valve as in claim 36, wherein the valve body further comprises:
an elliptical valve seat sized to accept the valve seal.
- 38. The valve as in claim 37, wherein the elliptical valve seat is formed in a reverse flow side of the valve body.
- 39. The valve as in claim 36, wherein the valve seal further comprises:
an annular retaining ring; a deformable sealing ring secured between the retaining ring and the valve body.
- 40. The valve as in claim 39, wherein the deformable sealing ring is a nonmetallic material.
- 41. The valve as in claim 40, wherein the deformable sealing ring cooperates with a garter spring.
- 42. The valve as in claim 40, wherein the deformable sealing ring includes an integral spring.
- 43. The valve as in claim 42, wherein the integral spring is formed along an external surface of the deformable sealing ring.
- 44. The valve as in claim 42, wherein the integral spring is encapsulated by the deformable sealing ring.
- 45. The valve as in claim 36, wherein the valve seal further comprises a retention ring cooperating with a retention groove formed into the valve body.
- 46. The valve as in claim 36, wherein the valve seal is a two-piece assembly.
- 47. The valve as in claim 36, wherein the valve seal is a one-piece seal.
- 48. The valve seal as in claim 47, wherein the valve seal is a deformable metallic material having a flexible arm.
- 49. The valve as in claim 47, wherein the valve seal further comprises a retention ring cooperating with a retention groove formed into the valve body.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to co-pending U.S. application Ser. No. 09/675,684 filed Sep. 29, 2000 and co-pending U.S. application Ser. No. 10/005,543 filed on Nov. 8, 2001, which is a divisional of U.S. application Ser. No. 09/772,782 filed on Jan. 30, 2001, which is a divisional of U.S. application Ser. No. 09/441,394 filed Nov. 16, 1999, now U.S. Pat. No. 6,213,141 B1.
Divisions (2)
|
Number |
Date |
Country |
Parent |
09772782 |
Jan 2001 |
US |
Child |
10005534 |
Nov 2001 |
US |
Parent |
09441394 |
Nov 1999 |
US |
Child |
09772782 |
Jan 2001 |
US |
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
09675584 |
Sep 2000 |
US |
Child |
10230656 |
Aug 2002 |
US |
Parent |
10005534 |
Nov 2001 |
US |
Child |
10230656 |
Aug 2002 |
US |