Claims
- 1. An fluid valve comprising:
a housing having at least one inlet, an outlet, and a fluid flow passageway from the at least one inlet to the outlet; a piston positioned in fluid communication with the fluid flow passageway for controlling fluid flow through the passageway; a rotatable threaded shaft in the passageway to control fluid flow; and a joining member connected to the piston and the shaft, wherein rotation of the shaft affects the joining member for moving the piston to control fluid flow through the fluid flow passageway.
- 2. The fluid valve of claim 1 wherein the joining member is a tapped portion formed within the piston to threadably engage the shaft, wherein rotation of the shaft threadably translates the piston along the shaft to control fluid flow through the fluid flow passageway.
- 3. The fluid valve of claim 1 wherein the piston further comprises an anti-rotation element, wherein the anti-rotation element prevents the piston from rotating relative to rotation of the shaft to permit the piston to translate along the shaft with rotation of the shaft to control fluid flow through the fluid flow passageway.
- 4. The fluid valve of claim 3 wherein the fluid flow passageway is generally cylindrical and includes a channel recessed relative to the generally cylindrical passageway, and wherein the anti-rotation element is a protuberance extending beyond a generally cylindrical portion of the piston and configured to engage the channel to prevent rotation of the piston relative to the channel such that the piston translates along the shaft with rotation of the shaft to control fluid flow through the fluid flow passageway.
- 5. The fluid valve of claim 3 wherein the fluid flow passageway is generally cylindrical and includes a protuberance extending relative to the generally cylindrical passageway, and wherein the anti-rotation element is a channel recessed relative to a generally cylindrical portion of the piston to engage the protuberance to prevent rotation of the piston relative to the protuberance such that the piston translates along the shaft with rotation of the shaft to control fluid flow through the fluid flow passageway.
- 6. The fluid valve of claim 1 wherein at least one of the at least one inlets includes a sealing portion have an opening sufficiently sized relative to the piston such that the piston can completely cover and seal off the inlet having the sealing portion to prevent fluid flow from the sealed inlet to the outlet.
- 7. The fluid valve of claim 1 wherein the joining member is a linkage connected to a first portion of the piston and to the threaded shaft, wherein the piston further comprises a second portion connected to the fluid flow passageway such that rotation of the shaft threadably translates the linkage along the shaft to flap the piston relative to the second portion of the piston connected to the passageway to control fluid flow through the fluid flow passageway.
- 8. The fluid valve of claim 1 wherein the joining member is permanently connected to the piston and a first end of the threaded shaft, and wherein the valve further comprises a motor having a threaded rotor to engage a second end of the shaft such that the rotor turns to threadably translate the shaft along the rotor to move the piston connected to the first end of the shaft to control fluid flow through the fluid passageway.
- 9. The fluid valve of claim 1 further comprising a bellow encasing the threaded shaft, wherein the bellow is sealed at a first end to the joining member and sealed at a second end to the fluid flow passageway to protect the threads from contamination and debris.
- 10. A fluid valve for use with an engine to control coolant flow to the engine from a bypass and a radiator, the fluid valve comprising:
a housing having a first inlet to receive coolant from the bypass, a second inlet to receive coolant from the radiator, an outlet to direct the received coolant to the engine, and a fluid flow passageway connecting the inlets to the outlet; a piston positioned in fluid communication with the fluid flow passageway for proportioning coolant flow from the bypass and the radiator to the engine, wherein the piston is positionable within the fluid flow passageway to: (i) proportion coolant flow from both the bypass and the radiator to the engine, (ii) permit coolant flow from only the radiator to the engine, and (iii) permit coolant flow from only the bypass to the engine; a rotatable threaded shaft for moving the piston in the fluid flow passageway to control coolant flow to the engine; and a joining member connected to the piston and the threaded shaft, wherein rotation of the shaft affects the joining member for moving the piston to control coolant flow through the fluid flow passageway.
- 11. The fluid valve of claim 10 wherein the joining member is a tapped portion formed within the piston to threadably engage the shaft, wherein rotation of the shaft threadably translates the piston along the shaft to control coolant flow through the fluid flow passageway.
- 12. The fluid valve of claim 10 wherein the piston further comprises an anti-rotation element, wherein the anti-rotation element prevents the piston from rotating relative to rotation of the shaft to permit the piston to translate along the shaft with rotation of the shaft to control fluid flow through the fluid flow passageway.
- 13. The fluid valve of claim 12 wherein the fluid flow passageway is generally cylindrical and includes a channel recessed relative to the generally cylindrical passageway, and wherein the anti-rotation element is a protuberance extending beyond a generally cylindrical portion of the piston to engage the channel to prevent rotation of the piston relative to the channel such that the piston translates along the shaft with rotation of the shaft to control fluid flow through the fluid flow passageway.
- 14. The fluid valve of claim 12 wherein the fluid flow passageway is generally cylindrical and includes a protuberance extending relative to the generally cylindrical passageway, and wherein the anti-rotation element is a channel recessed relative to a generally cylindrical portion of the piston to engage the protuberance to prevent rotation of the piston relative to the protuberance such that the piston translates along the shaft with rotation of the shaft to control fluid flow through the fluid flow passageway.
- 15. The fluid valve of claim 10 wherein the second inlet receiving coolant flow from the radiator includes a sealing portion have an opening sufficiently sized relative to the piston such that the piston can completely cover and seal off coolant flow from the radiator.
- 16. The fluid valve of claim 10 wherein the joining member is a linkage connected to a first portion of the piston and to the threaded shaft, wherein the piston further comprises a second portion connected to the fluid flow passageway such that rotation of the shaft threadably translates the linkage along the shaft to flap the piston relative to the second portion of the piston connected to the passageway to control coolant flow through the fluid flow passageway.
- 17. The fluid valve of claim 10 wherein the joining member is permanently connected to the piston and a first end of the threaded shaft, and wherein the valve further comprises a motor having a threaded rotor to engage a second end of the shaft such that the rotor turns to threadably translate the shaft along the rotor to move the piston connected to the first end of the shaft to control coolant flow through the fluid passageway.
- 18. The fluid valve of claim 10 further comprising a bellow encasing the threaded shaft, wherein the bellow is sealed at a first end to the joining member and sealed at a second end to the fluid flow passageway to protect the threads from the coolant.
- 19. An electronic fluid valve for proportioning and/or mixing fluid, the electronic fluid valve comprising:
a housing having more than one inlet path and one outlet path for proportioning and/or mixing a fluid entering from one or more inlet paths into the outlet path; a piston located in a mixing portion of an internal passageway of the housing to direct the fluid from the inlet paths to the outlet path, the piston being secured to a threaded shaft nut, the piston includes at least one flat surface or similar feature on an outer perimeter to prevent rotation, yet still allow linear translation within the housing; a motor shaft threadably engaged with the threaded shaft nut and rotatable for actuating movement of the threaded shaft nut along the motor shaft, whereby the piston is slidably positioned between the inlet paths to proportion and/or mix the fluid entering from one or more inlet paths into the outlet path; and an electronic motor positioned within the housing and responsive to electronic control signals for supporting and rotating the motor shaft.
- 20. An electronic fluid valve for proportioning and/or mixing fluid, the electronic fluid valve comprising:
a housing having one inlet path and more than one outlet path for proportioning and/or mixing a fluid entering from the inlet path into one or more of the outlet paths; a piston located in a mixing portion of an internal passageway to direct the fluid from the inlet path to one or more of the outlet paths, the piston being secured to a threaded shaft nut; the piston includes at least one flat surface or similar feature on an outer perimeter to prevent rotation, yet still allow linear translation within the housing; a motor shaft threadably engaged with the threaded shaft nut and rotatable for actuating movement of the threaded shaft nut along the motor shaft, whereby the piston is slidably positioned between the outlet paths to proportion and/or mix the fluid entering from the inlet path into one or more outlet paths; and an electronic motor positioned within the housing and responsive to electronic control signals for supporting and rotating the motor shaft.
- 21. An electronic fluid valve for proportioning and/or mixing fluid, the electronic fluid valve comprising:
a housing having more than one inlet path and one outlet path for proportioning and/or mixing a fluid entering from one or more of the inlet paths into the outlet paths; a piston located in a mixing portion of an internal passageway of the housing to direct the fluid from one or more of the inlet paths into the outlet path, the piston being secured at one end to a pivot of the housing and pivotally secured at another end to a linkage connected to a threaded shaft nut; a motor shaft threadably engaged with the threaded shaft nut and rotatable for positioning the threaded shaft nut along the motor shaft, whereby the linkage pivotally actuates the gage about the pivot and between the inlet paths to mix the fluid entering from one or more of the inlet paths into the outlet path; and an electronic motor positioned within the housing and responsive to electronic control signals for supporting and rotating the motor shaft.
- 22. An electronic fluid proportioning valve for proportioning fluid, the electronic fluid proportioning valve comprising:
a housing having one inlet path and one outlet path for proportioning a fluid entering from the inlet path into the outlet path; a piston located in a proportioning portion of an internal passageway of the housing to direct the fluid from the inlet path to the outlet path, the piston being secured to a threaded shaft nut; the piston includes at least one flat surface or similar feature on an outer perimeter to prevent rotation, yet still allow linear translation within the housing; a motor shaft threadably engaged with the shaft nut and rotatable for actuating movement of the threaded shaft nut along the motor shaft, whereby the piston is slidably positioned between the inlet path and the outlet path to proportion the fluid entering from the inlet path into the outlet path; and an electronic motor positioned within the housing and responsive to electronic control signals for supporting and rotating the motor shaft.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. provisional application Serial No. 60/360,751, filed Mar. 1, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60360751 |
Mar 2002 |
US |