Claims
- 1. Fluidic repeater to be connected to a source of pressurized fluid and to reservoir means for storing fluid at a pressure lower than that of such source, the fluidic repeater comprising:
- first and second conduit means for conveying pressurized fluid supplied by such source, each said conduit means including a fluid passage, source connection means for connecting the passage to such source, and source restrictor means for restricting fluid flow through the source connection means to the passage;
- transmitter means for creating a fluid pressure differential between said first and second conduit means passages, said transmitter means including transmitter first venting means for variably venting fluid from said first conduit means passage to such reservoir means, and transmitter second venting means for variably venting fluid from said second conduit means passage to the same reservoir to which said first venting means vents, said transmitter being positionable over a range of positions including a first position of maximum venting and a second position of minimum venting and various positions between said first and second positions to produce different amounts of movement of the responder means for each transmitter position within said range of positions;
- responder means for providing mechanical displacement in response to fluid pressure differential between said first and second conduit means passages, said responder means including (a) a primary cylinder connected at one end to said first conduit means passage and at the other end to said second conduit means passage, and (b) a primary piston disposed in said primary cylinder and axially-movable between said ends of said primary cylinder; and
- feedback means for eliminating fluid pressure differential between said first and second conduit means passages so as to stop the mechanical displacement provided by said responder means, said feedback means including feedback first venting means for variably venting fluid from said first conduit means passage to such reservoir means, and feedback second venting means for variably venting fluid from said second conduit means passage to such reservoir means, the extent of venting by said feedback first and second venting means varying according to the position of said primary piston relative to said primary cylinder and varying such that as the venting by said feedback first venting means increases, the venting by said feedback second venting means decreases in proportion thereto, and such that as the venting by said feedback second venting means increases, the venting by said feedback first venting means decreases in proportion thereto.
- 2. Fluidic repeater according to claim 1 wherein said feedback first and second venting means include variable cross section surface passages on said primary piston, openings in said primary cylinder, and feedback reservoir connection means for connecting said openings to such reservoir means, said surface passages cooperating with said openings.
- 3. Fluidic repeater according to claim 2 wherein said surface passages are sloping grooves.
- 4. Fluidic repeater according to claim 3 wherein said grooves are of rectangular cross section.
- 5. Fluidic repeater according to claim 3 wherein said grooves are of V-shaped cross section.
- 6. Fluidic repeater according to claim 2 wherein said surface passages include a sloping groove extending from near one end to near the other end of the piston.
- 7. Fluidic repeater according to claim 2 wherein said surface passages include annular grooves around said primary piston near the ends thereof communicating with the extreme ends of said primary piston through radial and axial flow passages in the piston.
- 8. Fluidic repeater according to claim 7 wherein said surface passages further include sloping grooves in said primary piston communicating with the annular grooves.
- 9. Fluidic repeater according to claim 2 wherein said responder means includes a load cylinder, a load piston axially movably disposed within said load cylinder, and third conduit means for delivering pressurized fluid to and draining pressurized fluid from either end of said load cylinder so as to cause axial movement of said load piston relative to said load cylinder, the flow of fluid through said third conduit means varying according to the position of said primary piston relative to said primary cylinder.
- 10. Fluidic repeater according to claim 9 wherein said feedback means includes valve means carried by a rod common to said load piston and said valve means and moving in a cylindrical valve body cavity coaxial with said load cylinder.
- 11. Fluidic repeater according to claim 9 wherein said feedback means includes valve means mechanically linked to an element of said load piston and said load cylinder.
- 12. Fluidic repeater according to claim 11 including spring means biasing said lead piston and cylinder means to a midposition between the limits of axial travel of the piston means relative to the cylinder means.
- 13. Fluidic repeater according to claim 9 wherein said feedback means further includes feedback third venting means for variably venting fluid from said first conduit means passage to such reservoir means, and fourth feedback means for venting fluid from said second conduit means to such reservoir means, the extent of venting by said feedback third and fourth venting means varying according to the position of said load piston relative to said load cylinder.
- 14. Fluidic repeater according to claim 1 wherein said transmitter first venting means includes a first transmitter opening in said first conduit means passage and first transmitter obstructor means for variably obstructing flow of fluid through said first transmitter opening, and said transmitter second venting means includes a second transmitter in said second conduit means passage and second transmitter obstructor means for variably obstructing flow through said second transmitter opening.
- 15. Fluidic repeater according to claim 14 wherein said first transmitter obstructor means is connected to said second transmitter obstructor means for movement in unison.
- 16. Fluidic repeater according to claim 15 wherein said first and second transmitter openings are coaxial cylindrical ports and said first and second transmitter obstructor means are opposite ends of a generally cylindrical plug, said ends of said plug being axially movably disposed in said ports and being provided with surface recess means of variable cross section increasing in area progressing toward the extreme ends of said plug.
- 17. Fluidic repeater according to claim 15 in which the feedback means is correlated with the transmitter means to produce axial motion of the primary piston proportional to the displacement of said first and second transmitter obstructor means relative to said first and second transmitter openings.
- 18. Fluidic repeater according to claim 15 wherein said first and second transmitter openings are coaxial nozzles aimed toward each other and said first and second transmitter obstructor means are opposite sides of a body disposed between said nozzles, said body being mounted for movement toward and away from said nozzles.
- 19. Fluidic repeater according to claim 1 wherein said primary piston and said primary cylinder together are a fluid amplifier.
- 20. Fluidic repeater comprising:
- transmitter means adapted for connection to a source of pressure fluid having an output adapted to deliver pressure fluid at variable pressure according to the setting of the transmitter, said transmitter comprising a pair of fluid passages each adapted at a certain location for connection to a source of pressure fluid having a drooping pressure versus load characteristic, and venting means for said fluid passages comprising an opening in each passage downstream from said location relative to said source adapted for connection to a fluid reservoir of lower pressure than said source and obstructor means for varying the degree of venting of said fluid passages through said openings, said transmitter being positionable over a range of positions including a first position of maximum venting and a second position of minimum venting and various positions between said first and second positions to produce different amounts of movement of the responder means for each transmitter position within said range of positions.
- said output of the transmitter being provided by said fluid passages;
- responder means comprising piston and cylinder means connected to the output of the transmitter for relative axial movement of the piston and cylinder in response to variation in the pressure of the transmitter output, said axial movement of the piston being in response to pressure difference in said fluid passages; and
- feedback means actuated by said responder means for variably venting the output of said transmitter to negate pressure change created by change of setting of the transmitter, said feedback means comprising variable cross section surface passages on said piston cooperating with cylinder openings communicating with passage means adapted for connection to a fluid reservoir,
- said surface passage means including annular grooves around the piston near the ends thereof communicating with the ends of the piston through radial and axial flow passages in the piston.
- 21. Fluidic repeater according to claim 20 wherein said surface passage means further includes sloping grooves in the piston communicating with said annular grooves.
- 22. Fluidic repeater to be connected to a source of pressurized fluid and to reservoir means for storing fluid at a pressure lower than such source, the fluid repeater comprising:
- conduit means for conveying pressurized fluid supplied by such source;
- source connection means for connecting said conduit means to such source;
- source restrictor means for restricting fluid flow from said source connection means to said conduit means;
- transmitter means for varying the pressure of fluid within said conduit means, said transmitter means including venting means for variably venting fluid from said conduit means to such reservoir means, said transmitter being positionable over a range of positions including a first position of maximum venting and a second position of minimum venting and various positions between said first and second positions to produce different amounts of movement of the responder means for each transmitter position within said range of positions.
- responder means for providing mechanical displacement in response to variations in the presence of fluid within said conduit means, said responder means including a primary cylinder and a primary piston axially movably disposed within said primary cylinder, said primary cylinder being connected to said conduit means such that said primary piston moves axially relative to said primary cylinder in response to variations in the pressure of fluid within said conduit means; and
- feedback means for negating the variations in the pressure of fluid within said conduit means and to stop the mechanical displacement provided by said responder means, said feedback means including feedback first venting means for variably venting fluid from said conduit means to such reservoir means according to the position of said primary piston relative to said primary cylinder, said feedbck first venting means including variable cross section surface passage means for conveying fluid, said passage means being on the surface of said primary piston, opening means in said primary cylinder for cooperating with said surface passage means such that as said primary piston moves axially relative to said primary cylinder, flow through said passage means is variably restricted, and feedback reservoir passage means for connecting said opening means to such reservoir means.
- 23. Fluidic repeater according to claim 22 wherein said surface passage means includes a sloping groove.
- 24. Fluidic repeater according to claim 23 wherein the cross section of said groove is rectangular.
- 25. Fluidic repeater according to claim 23 wherein the cross section of said groove is V-shaped.
- 26. Fluidic repeater according to claim 22 wherein said passage means includes a spiral helical groove.
- 27. Fluidic repeater according to claim 22 wherein said surface passage means includes conical annular groove means around said piston.
- 28. Fluidic repeater according to claim 22 wherein said primary piston and primary cylinder means together are an amplifier.
- 29. Fluidic repeater according to claim 22 in which the feedback means is correlated with the transmitter means to produce axial motion of the primary piston of the responder means proportional to the setting of the transmitter measured as a mechanical displacement of a portion thereof.
- 30. Fluidic repeater according to claim 22 wherein said surface passage means includes an annular groove around said primary piston near an end thereof, said annular groove communicating with the adjacent extreme end of said primary piston through radial and axial flow passages in said primary piston.
- 31. Fluidic repeater according to claim 30 wherein said surface passages includes spiral helical grooves.
- 32. Fluidic repeater according to claim 30 wherein said surface passage means includes conical annular grooves around said piston.
- 33. Fluidic repeater according to claim 30 wherein said surface passage means further includes a sloping groove in said primary piston communicating with said annular groove means.
- 34. Fluidic repeater according to claim 22 wherein said responder means includes a load cylinder, a load piston axially movably disposed within said load cylinder, and load conduit means for delivering pressurized fluid to and draining pressurized fluid from either end of said load cylinder so as to cause axial movement of said load piston relative to said load cylinder, the flow of fluid through said load conduit means varying according to the position of said primary piston relative to said primary cylinder, and said feedback means further includes feedback second venting means for variably venting fluid from said first conduit means pasage to such reservoir means according to the position of said load piston relative to said load cylinder.
- 35. Fluidic repeater according to claim 234 wherein said feedback second venting means includes valve means carried by a rod connected to said load piston and moving in a cylindrical valve body cavity coaxial with said load cylinder.
- 36. Fluidic repeater according to claim 34 wherein said feedback second venting means includes valve means mechanically linked to said load piston.
- 37. Fluidic repeater according to claim 36 including spring means biasing said load piston to a midposition between the limits of axial travel of the load piston relative to the load cylinder.
- 38. Fluidic repeater comprising:
- transmitter means adapted for connection to a source of pressure fluid and having an output adapted to deliver pressure fluid at variable pressure accordin to the setting of the transmitter; said transmitter being positionable over a range of positions including a first position of maximum pressure output and a second position of minimum pressure output and various positions between said first and second positions to produce different amounts of movement of the responder means for each transmitter position within said range of positions;
- responder means comprising piston and cylinder means connected to the output of the transmitter for relative axial movement of the piston and cylinder in response to variation in the pressure of the transmitter output;
- feedback means actuated by said responder means for variably venting the output of said transmitter to negate pressure change created by change of setting of the transmitter, said feedback means comprising variable cross section surface passage means on said piston cooperating with cylinder opening means communicating with passage means adapted for connection to a fluid reservoir,
- said surface passage means including an annular groove around the piston near an end thereof communicating with said end of the piston through radial and axial flow passages in the piston.
- 39. Fluidic repeater according to claim 38 wherein said surface passage means further includes a sloping groove in the piston communicating with said annular groove means.
- 40. Fluidic repeater comprising
- a fluid supply passage having an inlet and an outlet with a restriction therebetween whereby when said inlet is connected to a source of pressure fluid said outlet will provide a fluid supply having a drooping pressure versus rate of flow characteristic,
- responder means for producing mechanical movement and including a piston in cylinder connected to said fluid supply outlet for relative axial movement of the piston and cylinder in response to variation in the pressure at said fluid supply outlet,
- transmitter means venting said fluid supply outlet to a reservoir of fluid at a lower pressure than said source, in accordance with the position of the transmitter means, said transmitter being positionable over a range of positions including a first position of maximum venting and a second position of minimum venting and various positions in between said first and second positions to produce different amounts of movement of the responder means for each of the several positions of the transmitter means within said range of positions,
- said transmitter means including a fluid path from said fluid supply outlet to the said reservoir, and including a first opening forming part of said fluid path and first obstructor means for varying the fluid flow through said opening, and
- feedback means responsive to the magnitude of the movement of said responder means, without the necessity for the magnitude to be changing with time and independent of the previous duration of such movement, for venting the same said fluid supply outlet to such reservoir,
- said feedback means including a fluid path from said fluid supply outlet to such reservoir and including a second opening forming part of said fluid path and second obstructor means for varying the fluid flow through said opening,
- said fluid path of said feedback means and said fluid path of said transmitter means being separate paths at least to the extent that fluid flow through said second opening of the feedback means is in parallel with fluid flow through said first opening of the transmitter means with none of the fluid flowing through said first opening flowing through said second opening on its way to such reservoir and none of the fluid flowing through said second opening flowing through said first opening on its way to such reservoir,
- venting of said fluid supply outlet by said transmitter means being at a rate dependent upon position of first obstructor means without regard to the position of said second obstructor means and venting of said fluid supply outlet by said feedback means being at a rate dependent upon the position of said second obstructor means without regard to the position of said first obstructor means.
- 41. Fluidic repeater according to claim 40, said responder means including valve means actuated by relative movement of said piston and cylinder to control flow of fluid to and from a load, said fluid path of said feedback means from said fluid supply outlet to such reservoir bypassing said valve means.
- 42. Fluidic repeater according to claim 40, said responder means including variable cross section surface passage means providing said opening of said fluid path of said feedback means.
- 43. Apparatus according to claim 42 wherein said surface passage means includes a sloping groove.
- 44. Apparatus according to claim 43 wherein the cross section of said groove is rectangular.
- 45. Apparatus according to claim 43 wherein the cross section of said groove is V-shaped.
- 46. Apparatus according to claim 42 wherein said surface passage means includes a spiral helical groove.
- 47. Apparatus according to claim 42 wherein said surface passage means includes an annular groove around the piston near an end thereof communicating with said end of the piston through radial and axial flow passages in the piston.
- 48. Apparatus according to claim 47 wherein said surface passage means further includes a sloping groove in the piston communicating with said annular groove means.
- 49. Apparatus for use in a fluidic repeater and to be connected to the output of transmitter means for delivering fluid at variable pressure, said transmitter being positionable over a range of positions including a first position of maximum venting and a second position of minimum venting and various positions between said first and second positions to produce different amounts of movement of the responder means for each transmitter position within said range of positions, the apparatus comprising:
- responder means for providing mechanical displacement in response to variations in the pressure of the fluid delivered by such transmitter means, said responder means including a primary cylinder, means for connecting said primary cylinder to the output of such transmitter, and a primary piston disposed within said primary cylinder for relative axial movement of said primary cylinder and piston in response to variations in the pressure of the fluid delivered at the output of such transmitter means; and
- feedback means for negating the variations in the pressure of the fluid delivered by such transmitter means so as to stop the mechanical displacement provided by said responder means, said feedback means including first venting means for variably venting the output of such transmitter means to a reservoir means for storing fluid, the venting by said first feedback means varying according to the position of said primary piston relative to said primary cylinder,
- said first venting means including variable cross section surface passage means for conveying fluid, said passage means being on the surface of said primary piston, opening means in said primary cylinder for cooperating with said surface passage means such that as said primary piston moves axially relative to said primary cylinder, flow through said passage means is variably restricted, and feedback reservoir passage means for connecting said opening means to such reservoir means.
- 50. Fluidic repeater according to claim 49 wherein said responder means includes a load cylinder, a load piston axially movably disposed within said load cylinder, and conduit means for delivering pressurized fluid to and draining pressurized fluid from either end of said load cylinder so as to cause axial movement of said load piston relative to said load cylinder, the flow of fluid through said conduit means varying according to the position of said primary piston relative to said primary cylinder, and said feedback means further includes load venting means for variably venting fluid from the output of such transmitter means to the reservoir means, the extent of venting by said load venting means varying according to the position of said load piston relative to said load cylinder.
- 51. Apparatus according to claim 50 wherein said load venting means includes valve means carried by a rod connected to said load piston and moving in a cylindrical valve body cavity coaxial with said said load cylinder.
- 52. Fluidic repeater to be connected to a source of pressurized fluid and to reservoir means for storing fluid at a pressure lower than that of such source, the fluidic repeater comprising:
- first and second conduit means for conveying pressurized fluid supplied by such source, each said conduit means including a fluid passage, source connection means for connecting the passage to such source, and source restrictor means for restricting fluid flow through the source connection means to the passage;
- transmitter means for creating a fluid pressure differential between said first and second conduit means passages, said transmitter means including transmitter first venting means for variably venting fluid from said first conduit means passage to such reservoir means, and transmitter second venting means for variably venting fluid from said conduit means passage to the same reservoir to which said first venting means vents, said transmitter being positionable over a range of positions including a first position of maximum venting and a second position of minimum venting and various positions between said first and second positions to produce different amounts of movement of the responder means for each transmitter position within said range of positions;
- responder means for providing mechanical displacement in response to fluid pressure differential between said first and second conduit means passages, said responder means including (a) a primary cylinder connected at one end to said first conduit means passage and at the other end to said second conduit means passage, and (b) a primary piston disposed in said primary cylinder and axially-movable between said ends of said primary cylinder; and
- feedback means for eliminating fluid pressure differential between said first and second conduit means passages so as to arrest the mechanical displacement provided by said responder means, said feedback means including feedback first venting means for variably venting fluid from said first conduit means passage to such reservoir means, and feedback second venting means for variably venting fluid from said second conduit means passage to such reservoir means, the extent of venting by said feedback first and second venting means varying in response to movement of the responder means and varying such that as the venting by said feedback first venting means increase, the venting by said feedback second venting means decreases, and such that as the venting by said feedback second venting means increases, the venting by said feedback first venting means decreases, both of said feedback venting means being effective to vent not only when said responder means is at rest but when it is moving.
- 53. Fluidic repeater according to claim 52,
- said responder means further including a load cylinder, a load piston axially movably disposed within said load cylinder, and further conduit means for delivering pressurized fluid and draining pressurized fluid from said load cylinder so as to cause axial movement of said load piston relative to said load cylinder, the flow of fluid through said further conduit means varying in response to relative movement of said primary piston and primary cylinder.
- 54. Fluidic repeater according to claim 53 wherein said movement of the responder means in response to which the feedback first and second venting means vary is said relative movement of said load piston and said load cylinder.
- 55. Fluidic repeater according to claim 53 wherein said movement of the responder means in response to which the feedback first and second venting means vary is relative movement of said primary piston and said primary cylinder.
- 56. Fluidic repeater according to claim 55 wherein said feedback means further includes feedback third venting means for variably venting fluid from said first conduit means passage to such reservoir means, and fourth feedback means for venting fluid from said second conduit means to such reservoir means, the extent of venting of said feedback third and fourth venting means varying according to the relative position of said load piston and load cylinder.
Parent Case Info
This is a division of application Ser. No. 489,829, filed on July 18, 1974, now U.S. Pat. No. 3,988,966.
US Referenced Citations (11)
Foreign Referenced Citations (1)
| Number |
Date |
Country |
| 1142014 |
Feb 1969 |
GBX |
Divisions (1)
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Number |
Date |
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| Parent |
489829 |
Jul 1974 |
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