Claims
- 1. An integrable valve and position control system for a clamp having a main housing, a hollow cylinder having a first end and a second end mounted within said main housing, a piston movable between a first end position and a second end position within said hollow cylinder, a rod connected to said piston and protruding from said second end of said hollow cylinder defining a full bore area and an annulus area on opposite sides of said piston within said hollow cylinder, a linkage assembly coupled to said rod and mounted within said main housing, a shaft rotatably connected to said linkage assembly, a clamp arm fixedly mounted on said shaft outside of said main housing, means for sensing the position of said clamp arm, means for sensing the air pressure within said hollow cylinder, said integrable valve and position control system comprising:a complementary housing integrable with said main housing of said clamp, said complementary housing having an air supply port, an exhaust port, and an electronic interface port; a first direction control valve having three ports and two positions, said first direction control valve capable of selectively and pneumatically connecting said full bore area of said hollow cylinder to one of said air supply port and said exhaust port, said first direction control valve mounted within said complementary housing; a second direction control valve having three ports and two positions, said second direction control valve capable of selectively and pneumatically connecting said annulus area of said hollow cylinder to one of said air supply port and said exhaust port, said second direction control valve mounted within said complementary housing; first means for pneumatically piloting said first direction control valve, said first pneumatic piloting means mounted within said complementary housing; second means for pneumatically piloting said second direction control valve, said second pneumatic piloting means mounted within said complementary housing; and an electronic control circuit mounted within said complementary housing, said electronic control circuit electrically connected to said first pneumatic piloting means, said second pneumatic piloting means, and said electronic interface port, said electronic control circuit electrically connectible to said clamp arm position sensing means and to said air pressure sensing means.
- 2. The integrable valve and position control system according to claim 1, said integrable valve and position control system further comprising a silencer fitted within said exhaust port of said complementary housing.
- 3. The integrable valve and position control system according to claim 1, wherein said first pneumatic piloting means comprises a first solenoid direction control valve having three ports and two positions, said first solenoid direction control valve selectively and pneumatically connecting said first direction control valve to one of said air supply port and said exhaust port to pilot said first direction control valve.
- 4. The integrable valve and position control system according to claim 3, wherein said second pneumatic piloting means comprises a second solenoid direction control valve having three ports and two positions, said second solenoid direction control valve selectively and pneumatically connecting said second direction control valve to one of said air supply port and said exhaust port to pilot said second direction control valve.
- 5. The integrable valve and position control system according to claim 1, said integrable valve and position control system further comprising means for metering out air from said hollow cylinder, wherein said metering out means is mounted within said complementary housing.
- 6. The integrable valve and position control system according to claim 5, wherein said metering out means comprises:first means for metering out air from said full bore area of said hollow cylinder and into said first direction control valve; and second means for metering out air from said annulus area of said hollow cylinder and into said second direction control valve.
- 7. The integrable valve and position control system according to claim 6, wherein said first metering out means comprises a first flow control valve and a first non-return check valve pneumatically connected in parallel, and wherein said second metering out means comprises a second flow control valve and a second non-return check valve pneumatically connected in parallel.
- 8. The integrable valve and position control system according to claim 1, said integrable valve and position control system further comprising:a first exhaust restrictor pneumatically connected between said first direction control valve and said exhaust port; and a second exhaust restrictor pneumatically connected between said second direction control valve and said exhaust port.
- 9. The integrable valve and position control system according to claim 1, said integrable valve and position control system further comprising:first means for manually overriding the position of said first direction control valve; and second means for manually overriding the position of said second direction control valve.
- 10. The integrable valve and position control system according to claim 1, wherein said complementary housing comprises a plurality of compartments.
- 11. The integrable valve and position control system according to claim 10, wherein said electronic control circuit is situated in one of said plurality of compartments, and wherein said first directional control valve and said second directional control valve are situated in another of said plurality of compartments.
- 12. The integrable valve and position control system according to claim 10, wherein at least some of said plurality of compartments are detachable from at least one of said main housing and said complementary housing.
- 13. A valve system for controlling an actuator including a piston movable within a housing and defining first and second chambers, the valve system comprising:first means for selectively controlling a flow of a first fluid stream relative to the first chamber; second means for selectively controlling a flow of a second fluid stream relative to the second chamber, the first and second controlling means operable to control the first and second fluid streams independent of one another; a clamp member movable along a path between a clamped position and a released position in response to movement of the piston; a first sensor for sensing at least one position of the member along the path; and an electronic control circuit operably associated with the actuator for controlling a speed of movement of the clamp member along the path with the first and second controlling means.
- 14. The valve system according to claim 13 wherein the first controlling means further comprises:a three-way valve in fluid communication with the first chamber moveable between a first position and a second position to expand and contract the first chamber respectively.
- 15. The valve system according to claim 14 wherein first controlling means further comprises:means for biasing the three-way valve toward the second position.
- 16. The valve system according to claim 19 wherein first controlling means further comprises:a check valve positionable between the three-way valve and the first chamber for preventing contraction of the first chamber; and a flow valve positionable between the three-way valve and the first chamber for selectively controlling a rate of expansion and contraction of the first chamber.
- 17. The valve system according to claim 14 wherein first controlling means further comprises:fluid restricting means positionable between the three-way valve and an exhaust manifold for limiting a rate of contraction of the first chamber.
- 18. The valve system according to claim 14 wherein first control means further comprises:means for biasing the three-way valve toward the second position; and drive means for moving the three-way valve to the first position against the urging of the biasing means.
- 19. The valve system according to claim 18 wherein moving means further comprises:a pilot valve operably associated with the three-way valve movable between a first position corresponding to the first position of the three-way valve and a second position corresponding to the second position of the three-way valve.
- 20. The valve system according to claim 19 further comprising:means for biasing the pilot valve to the second position of the pilot valve.
- 21. The valve system according to claim 13 further comprising:a housing mountable with respect to the actuator for enclosing the first and second controlling means.
- 22. The valve system according to claim 21 further comprising:a silencer mountable with respect to the housing and operably associated with first and second controlling means for receiving the first and second fluid streams when the first and second chambers are contracted.
- 23. The valve system according to claim 13 further comprising:a second sensor for sensing a fluid pressure in at least one of the first and second chambers.
- 24. The valve system of claim 13 further comprising:the electronic control means for selectively setting one of a starting position and an ending position of movement of the piston within the housing with the first and second controlling means.
- 25. The valve system of claim 13 further comprising:the electronic control means for sensing a fluid pressure internal with respect to at least one of the first and second chambers with a second sensor.
- 26. A method for controlling an actuator including a piston moveable within a housing and defining first and second chambers, the method comprising the steps of:selectively controlling a flow of a first fluid stream relative to the first chamber with first controlling means; selectively controlling a flow of a second fluid stream relative to the second chamber with second controlling means, the first and second controlling means operable to control the first and second fluid streams independent of one another; moving a member along a path in response to movement of the piston; sensing a position of the member along the path with a first sensor; and controlling a speed of movement of the member along the path with the first and second controlling means.
- 27. The method according to claim 26 further comprising the step of:sensing a fluid pressure internal with respect to at least one of the first and second chambers with a second sensor.
- 28. The method according to claim 26 further comprising the step of:enclosing the first and second controlling means in a housing; and engaging the housing with respect to the actuator.
- 29. A method for controlling an actuator including a piston moveable within a housing and defining first and second chambers, the method comprising the steps of:selectively controlling a flow of a first fluid stream relative to the first chamber with first controlling means; selectively controlling a flow of a second fluid stream relative to the second chamber with second controlling means, the first and second controlling means operable to control the first and second fluid streams independent of one another; moving a member along a path in response to movement of the piston; sensing a position of the member along the path with a first sensor; and selectively setting one of a starting position and an ending position of movement of the member along the path with the first and second controlling means.
- 30. A valve system for controlling an actuator including a piston movable within a housing and defining first and second chambers, the valve system comprising:first means for selectively controlling a flow of a first fluid stream relative to the first chamber, first controlling means having a three-way valve in fluid communication with the first chamber movable between a first position and a second position to expand and contract the first chamber respectively; second means for selectively controlling a flow of a second fluid stream relative to the second chamber, second controlling means having a second three-way valve in fluid communication the second chamber movable between a third position and a fourth position to expand and contract the second chamber respectively, the first and second controlling means operable to control the first and second fluid streams independent of one another; a clamp member movable along a path between a clamped position and a released position in response to movement of the piston; and an electronic control circuit operably associated with the actuator for sensing at least one position of the clamp member along the path with a first sensor, and for sensing a fluid pressure internal with respect to at least one of the first and second chambers with a second sensor.
- 31. The valve system according to claim 30 further comprising:a housing mountable with respect to the actuator for enclosing the first and second controlling means.
- 32. The valve system according to claim 30 further comprising:a pilot valve operably associated with the three-way valve moveable between a first position corresponding to the first position of the three-way valve and a second position corresponding to the second position of the three-way valve.
- 33. The valve system of claim 30 further comprising:the electronic control means for selectively setting one of a starting position and an ending position of the piston within the housing with the first and second control means.
- 34. The valve system of claim 30 further comprising:the electronic control means for controlling the speed of movement of the piston within the housing with the first and second control means.
- 35. A method for controlling an actuator including a piston moveable within a housing and defining first and second chambers, the method comprising the steps of:selectively controlling a flow of a first fluid stream relative to the first chamber with first controlling means including a three-way valve in fluid communication with the first chamber moveable between a first position and a second position to expand and contract the first chamber respectively; and selectively controlling a flow of a second fluid stream relative to the second chamber with second controlling means including a second three-way valve in fluid communication the second chamber moveable between a third position and a fourth position to expand and contract the second chamber respectively, the first and second controlling means operable to control the first and second fluid streams independent of one another; moving a member along a path in response to movement of the piston; sensing a position of the member along the path with a first sensor; and sensing a fluid pressure internal with respect to at least one of the first and second chambers with a second sensor;
- 36. The method according to claim 35 further comprising the steps of:controlling a speed of movement of the member along the path with the first and second control means in response to at least one of the sensed position and the sensed pressure; and selectively setting one of a starting position and an ending position of the member along the path with the first and second control means.
- 37. A valve system for controlling an actuator including a piston movable within a housing and defining first and second chambers, the valve system comprising:at least one flow controlling means for selectively controlling flow of a fluid stream relative to at least one of the first and second chambers; an electronic control circuit operably associated with actuator for controlling movement of the piston within the housing with the at least one flow controlling means; and position sensor means for sensing a position of the piston within the housing.
- 38. The valve system of claim 37 further comprising:the electronic control circuit for selectively controlling speed of the piston as the piston moves between first and second end limits of travel within the housing.
- 39. The valve system of claim 37 further comprising:the electronic control circuit for selectively setting at least one of a start position and a stop position corresponding to a position of the piston located between first and second end limits of travel of the piston within the housing.
- 40. The valve system of claim 37 further comprising:the electronic control circuit for selectively controlling speed of the piston as the piston approaches at least one of first and second end limits of travel within the housing to provide a soft touch action.
- 41. The valve system of claim 37 further comprising:the electronic control circuit for connecting to an electronic interface port for integration into a computerized control network.
- 42. The valve system of claim 37 further comprising:the electronic control circuit for calculating the speed of the piston moving within the housing.
- 43. The valve system of claim 37 further comprising:the electronic control circuit for selectively adjusting pressurized fluid within the first and second chambers independently of one another.
- 44. The valve system of claim 37 further comprising:a plurality of clamps, each clamp having separate electronic control circuits and at least one separate flow controlling means, each electronic control circuit interconnected with respect to one another through a common central computerized control network.
- 45. The valve system of claim 37 further comprising:an enclosure; each of the flow controlling means mounted within the enclosure; and the electronic control circuit mounted within the enclosure.
- 46. The valve system of claim 45 further comprising:the enclosure complementary with respect to the housing of the piston and mountable to the housing.
- 47. The valve system of claim 45 further comprising:the enclosure formed integral with the housing of the piston.
- 48. The valve system of claim 45 further comprising;fluid pressure sensor means mounted within the enclosure for sensing the fluid pressure in at least one of the first and second chambers.
- 49. The valve system of claim 45 further comprising:position sensor means mounted within the enclosure for sensing a position of the piston within the housing.
- 50. The valve system of claim 37 further comprising:fluid pressure sensor means for sensing the fluid pressure in at least one of the first and second chambers.
- 51. The valve control system of claim 37 further comprising:a clamp having at least one clamp arm moveable between a clamped position and a released position in response to movement of the piston between first and second end limits of travel within the housing; and the electronic control circuit for selectively setting at least one of the clamped position and the released position at a position of the piston between the first and second end limits of travel of the piston within the housing.
- 52. The valve system of claim 51 further comprising:means for sensing a position of at least one of the clamp arm and the piston.
- 53. The valve system of claim 53, wherein the sensing means further comprises a rotary position sensor.
- 54. The valve system of claim 52, wherein the sensing means further comprises an absolute linear position sensor.
- 55. The valve system of claim 37, wherein the flow controlling means further comprises:a source of pressurized fluid; and at least one control valve for selectively communicating one of the first and second chambers with the source of pressurized fluid and for selectively exhausting pressurized fluid from the other of the first and second chambers.
- 56. The valve system of claim 37, wherein the flow controlling means further comprises:a first 3-way valve having a first port connected to the first chamber, a second port connected to pressurized fluid, and a third port connected to an exhaust port; and a second 3-way valve having a first port connected to the second chamber, a second port connected to pressurized fluid, and a third port connected to an exhaust port.
CROSS-REFERENCES TO RELATED APPLICATIONS
This application claims the benefit of U.S. Provisional Application No. 60/144,322, filed Jul. 16, 1999.
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Provisional Applications (1)
|
Number |
Date |
Country |
|
60/144322 |
Jul 1999 |
US |