Claims
- 1. A booster pilot valve, comprising:
a body defining a fluid chamber; and a hydraulic member disposed in the fluid chamber and movable by a pressurized flow between a first and a second position; wherein the hydraulic member in the first position permits a cylinder port to communicate with a first ancillary port, and wherein the hydraulic member in the second position permits the pressurized flow to communicate with the cylinder port.
- 2. The booster pilot valve of claim 1, further comprising a secondary device operable to direct the pressurized flow.
- 3. The booster pilot valve of claim 2, wherein the hydraulic member defines a fluid passageway extending from a first surface to a second surface and communicating a main port with an outlet port defined in the body, the main port communicating with the pressurized flow and the outlet port communicating with the secondary device.
- 4. The booster pilot valve of claim 3, wherein the body comprises a stem having the outlet port and partially disposed within the fluid passageway of the hydraulic member.
- 5. The booster pilot valve of claim 4, wherein the secondary device directs the pressurized flow to the second surface and urges the hydraulic member to the first position.
- 6. The booster pilot valve of claim 5, wherein the secondary device directs the pressurized flow to the first surface and urges the hydraulic member to the second position.
- 7. A booster pilot valve, comprising:
a body defining a fluid chamber having a main port and an outlet port; and a spool disposed within the fluid chamber and movable by a pressurized flow between a closed and an opened position; wherein the spool in the closed position permits a secondary flow form a cylinder port to communicate with a first ancillary port, and wherein the spool in the opened position permits the pressurized flow from the main port to communication with the cylinder port.
- 8. The booster pilot valve of claim 7, further comprising a secondary valve communicating with the outlet port of the body and operable to direct the pressurized flow entering the main port to move the spool to the closed or opened position.
- 9. The booster pilot valve of claim 8, wherein the secondary valve comprises a three-way valve.
- 10. The booster pilot valve of claim 8, wherein the secondary valve comprises a piezotronic valve.
- 11. The booster pilot valve of claim 10, wherein the piezotronic valve comprises a Bus operator to accept signals from a network Bus.
- 12. The booster pilot valve of claim 10, wherein the piezotronic valve operates using a current supply of approximately 1.5 mA to 10 mA.
- 13. The booster pilot valve of claim 12, wherein the piezotronic valve operates using a power supply of approximately 100 mW.
- 14. The booster pilot valve of claim 7, wherein the spool is engaged with the fluid chamber of the body with a plurality of seals.
- 15. The booster pilot valve of claim 7, wherein the spool defines a fluid passageway extending from a first surface to a second surface and communicating the main port to the outlet port.
- 16. The booster pilot valve of claim 15, wherein the body comprises a protrusion having the outlet port and partially disposed in the fluid passageway of the spool at the second surface.
- 17. The booster pilot valve of claim 16, wherein the pressurized flow concentrated on the second surface moves the spool to the closed position.
- 18. The booster pilot valve of claim 17, wherein the pressurized flow concentrated on the first surface moves the spool to the opened position.
- 19. A booster pilot valve, comprising:
a body defining a fluid chamber, comprising:
a main port defined in a first end of the fluid chamber, and a stem protruding into the fluid chamber from a second end, the stem defining an outlet port aligned with the main port; and a hydraulic member disposed in the fluid chamber and movable between an opened and a closed position within the fluid chamber, comprising:
a first surface adjacent to the first end of the fluid chamber; a second surface adjacent to the second end of the fluid chamber, and a fluid passageway defined in the hydraulic member and extending from the first surface to the second surface, the stem partially disposed within the fluid passageway so that the fluid passageway communicates the main port with the outlet port; wherein the hydraulic member in the opened position permits fluid communication of the main port with a cylinder port, and wherein the hydraulic member in the closed position permits fluid communication between the cylinder port and a first ancillary port.
- 20. The booster pilot valve of claim 19, further comprising a three-way valve in fluid communication with the fluid chamber via the outlet port.
- 21. The booster pilot valve of claim 20, wherein the three-way valve comprises a piezotronic valve.
- 22. The booster pilot valve of claim 20, wherein the three-way valve is operable to concentrate a pressurized flow from the main port to a first plenum defined between the first surface and the first end to move the hydraulic member to the opened position.
- 23. The booster pilot valve of claim 20, wherein the three-way valve is operable to concentrate the pressurized flow from the main port to a second plenum defined between the second surface and the second end to move the hydraulic member to the closed position.
- 24. The booster pilot of claim 23, wherein a passageway in the body communicates the three-way valve with the second plenum for applying the pressurized flow to the second surface.
- 25. The booster pilot of claim 24, wherein a second ancillary port in the body communicates with the three-way valve for venting the pressurized flow from the second plenum.
- 26. The booster pilot valve of claim 19, wherein the hydraulic member is engaged with the fluid chamber with a plurality of seals.
- 27. The booster pilot valve of claim 26, wherein a first seal seals the main port from the cylinder port when the hydraulic member is in the closed position.
- 28. The booster pilot valve of claim 27, wherein a second seal seals the cylinder port from the first ancillary port when the hydraulic member is in the opened position.
- 29. A method of operating a valve element with a hydraulic device, comprising:
supplying a pressurized flow into the hydraulic device; directing the pressurized flow to the valve element by selectively concentrating the pressurized flow to move the hydraulic device to an opened position; and directing a secondary flow from the valve element to an ancillary port in the hydraulic device by selectively concentrating the pressurized flow to move the hydraulic device to a closed position.
- 30. The method of claim 29, wherein selectively concentrating the pressurized flow to move the hydraulic device to the opened or closed position comprises operating a three-way valve communicating the pressurized fluid with the hydraulic device.
- 31. The method of claim 30, wherein moving the hydraulic device to the opened or closed position comprises applying the pressurized flow to a first or a second surface of the hydraulic device.
- 32. The method of claim 30, wherein directing the pressurized flow to the valve element comprises sealing the secondary flow from communicating with the ancillary port.
- 33. The method of claim 30, wherein directing the secondary flow to the ancillary port comprises sealing the pressurized flow from communicating with the valve element.
RELATION TO COPENDING APPLICATIONS
[0001] This Non-provisional Application claims the benefit of the Provisional Application No. 60/192,119 filed Mar. 24, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60192119 |
Mar 2000 |
US |