Claims
- 1. A hydraulically-assisted engine valve actuator for assisting in the actuation of an engine valve, comprising:a drive piston operably coupled to the engine valve for actuation of the engine valve and being translatable by a force acting thereon, the force being generated by a fluid under pressure; and a translatable needle valve, the needle valve being in fluid communication with a source of fluid under pressure and further being in fluid communication with the drive piston, the needle valve effecting the metering of the fluid under pressure to generate force on the drive piston, the needle valve being structurally decoupled from the engine valve.
- 2. The hydraulically-assisted engine valve actuator of claim 1 further including a main piston, the main piston being in fluid communication with the needle valve and being operably fluidly coupled to the engine valve and structurally decoupled from the engine valve.
- 3. The hydraulically-assisted engine valve actuator of claim 2 wherein the main piston is translatable for effectively magnifying an actuating stroke of the needle valve to effect a magnified stroke of the engine valve.
- 4. The hydraulically-assisted engine valve actuator of claim 3 wherein a rate of translation of the drive piston is related to a rate of translation of the needle valve to effect a desired opening and closing profile of the engine valve.
- 5. The hydraulically-assisted engine valve actuator of claim 3 wherein the main piston and the needle valve each have a single dependency for lenient concentricity requirements.
- 6. The hydraulically-assisted engine valve actuator of claim 1 wherein engine valve lash is automatically accommodated.
- 7. The hydraulically-assisted engine valve actuator of claim 6 further including a secondary piston, the secondary piston being operably fluidly coupled to the main piston such that a motion of the secondary piston produces a corresponding and opposite related motion of the main piston.
- 8. The hydraulically-assisted engine valve actuator of claim 7 wherein the secondary piston is operably fluidly coupled to the main piston by means of a control chamber.
- 9. The hydraulically-assisted engine valve actuator of claim 8 wherein the control chamber is operably coupleable to a source of fluid under pressure, a check valve being disposed between the control chamber and the source of fluid, the check valve opening responsive to a certain pressure in the control chamber to admit filling fluid to the control chamber.
- 10. The hydraulically-assisted engine valve actuator of claim 9 wherein a selected fluid leakage in the control chamber results in the main piston being seated in retraction prior to the secondary valve being seated in retraction to ensure seating of the main piston on each retraction event.
- 11. The hydraulically-assisted engine valve actuator of claim 10 wherein seating of the main piston causes a drop in pressure in the control chamber, the drop in pressure acting to cause the opening of the check valve.
- 12. The hydraulically-assisted engine valve actuator of claim 11 wherein the volume of the control chamber is variable as a function of valve lash.
- 13. The hydraulically-assisted engine valve actuator of claim 3 wherein the actuating stroke of the needle valve is magnified by a factor related to the ratio of the secondary piston to the main piston.
- 14. The hydraulically-assisted engine valve actuator of claim 13 wherein the ratio of the secondary piston to the main piston is selectively variable between greater than 1:1 and less than 6:1.
- 15. The hydraulically-assisted engine valve actuator of claim 1 wherein a controller is operably coupled to the needle valve, the controller including a needle positioning mechanism.
- 16. The hydraulically-assisted engine valve actuator of claim 15 wherein the needle positioning mechanism is a solenoid.
- 17. A hydraulically-assisted engine valve actuator for assisting in the actuation of an engine valve, comprising:a servo piston being operably coupled to the engine valve; a translatable pilot valve being in fluid communication with the servo piston and a power piston and being operably coupled to and controlled by a pilot valve positioning system, the pilot valve positioning system controlling a translational stroke of the pilot valve to meter hydraulic fluid under pressure to and from the servo piston; and a stroke magnifier for magnifying a stroke of the pilot valve positioning system.
- 18. The hydraulically-assisted engine valve actuator of claim 17 wherein the stroke magnifier includes a main piston, the main piston being in fluid communication with the pilot valve and being operably fluidly coupled to the engine valve and structurally decoupled from the engine valve.
- 19. The hydraulically-assisted engine valve actuator of claim 18 wherein the main piston is translatable for effectively magnifying an actuating stroke of the pilot valve to effect a magnified stroke of the engine valve.
- 20. The hydraulically-assisted engine valve actuator of claim 19 wherein a rate of translation of the servo piston is related to a rate of translation of the pilot valve to effect a desired opening and closing profile of the engine valve.
- 21. The hydraulically-assisted engine valve actuator of claim 20 wherein the main piston and the pilot valve have a single dependency for lenient concentricity requirements.
- 22. The hydraulically-assisted engine valve actuator of claim 21 wherein engine valve lash is automatically accommodated.
- 23. The hydraulically-assisted engine valve actuator of claim 22 the stroke magnifier further including a secondary piston, the secondary piston being operably fluidly coupled to the main piston such that a motion of the secondary piston produces a corresponding and opposite motion of the main piston.
- 24. The hydraulically-assisted engine valve actuator of claim 23 wherein the secondary piston is operably fluidly coupled to the main piston by means of a control chamber.
- 25. The hydraulically-assisted engine valve actuator of claim 24 wherein the control chamber is operably coupleable to a source of fluid under pressure, a check valve being disposed between the control chamber and the source of fluid, the check valve opening responsive to a certain pressure in the control chamber to admit filling fluid to the control chamber.
- 26. The hydraulically-assisted engine valve actuator of claim 17 wherein the pilot valve positioning system includes a solenoid.
- 27. The hydraulically-assisted engine valve actuator of claim 26 wherein the solenoid has a linear stroke of less than substantially 6mm.
- 28. The hydraulically-assisted engine valve actuator of claim 25 wherein a selected fluid leakage in the control chamber results in the main piston being seated during retraction prior to the secondary valve being seated during retraction to ensure seating of the main piston on each retraction event.
- 29. The hydraulically-assisted engine valve actuator of claim 28 wherein seating of the main piston causes a drop in pressure in the control chamber, the drop in pressure acting to cause the opening of the check valve.
- 30. The hydraulically-assisted engine valve actuator of claim 29 wherein the volume of the control chamber is variable as a function of engine valve lash.
- 31. The hydraulically-assisted engine valve actuator of claim 30 wherein the actuating stroke of the needle valve is magnified by a factor related to the ratio of the secondary piston to the main piston.
- 32. The hydraulically-assisted engine valve actuator of claim 31 wherein the ratio of the secondary piston to the main piston is selectively variable between greater than 1:1 and less than 6:1.
- 33. A method of actuation of an engine valve, comprising the steps of:operably coupling a servo piston to the engine valve; translating a pilot valve responsive to control inputs by a pilot valve positioning system for metering hydraulic fluid by means of translation of the pilot valve relative to the servo piston to affect the servo piston and a main piston; magnifying a translational stroke of the pilot valve positioning system; and translating the engine valve by means of translating the servo piston by means of a force exerted on the servo piston by the hydraulic fluid under pressure, the hydraulic fluid under pressure causing the servo piston to closely follow the translation of the pilot valve to effect a desired profile of translational opening and closing motion of the engine valve, a stroke of the engine valve being substantially equal to the magnified stroke of the pilot valve positioning system.
- 34. The method of claim 33 further including the step of accommodating engine valve lash.
- 35. The method of claim 34 further including the step of magnifying the stroke of the pilot valve positioning system by means of a main piston.
- 36. The method of claim 35 of ensuring the seating of the main piston on each main piston retraction event.
- 37. A valve actuator assembly for disposition on a valve head of a bank of engine cylinders, the bank of cylinders including at least two cylinders, each cylinder having at least two valves, each valve being cylclable between an open disposition and a closed disposition, comprising:a plurality of valve actuator modules operably coupled to the valve head, a valve actuator module being paired to each cylinder in the bank of cylinders and actuating each of the valves of the cylinder; and an oil rail assembly being operably coupled to each of the plurality of valve actuator modules, the oil rail assembly conveying a low pressure actuating fluid and a high pressure actuating fluid, the low pressure actuating fluid and the high pressure actuating fluid being in communication with each of the plurality of valve actuator modules.
- 38. The valve actuator assembly of claim 37 further including an adapter plate, each of the plurality of valve actuator modules being operably coupled to the adapter plate, the adapter plate being operably couplable to the valve head.
- 39. The valve actuator assembly of claim 37 wherein the low pressure actuating fluid is in communication with a control chamber, the control chamber being replenishable by low pressure actuating fluid at each valve opening and closing cycle.
- 40. The valve actuator assembly of claim 39 wherein the high pressure actuating fluid is in communication with a drive piston, the drive piston being operably couplable to a valve, the high pressure actuating fluid acting on the drive piston to open the valve.
- 41. The valve actuator assembly of claim 40 further including a secondary piston defining in part the volume of the control chamber.
- 42. The valve actuator assembly of claim 41 wherein the secondary piston is spaced apart from the drive piston and being shiftable along an axis that is substantially parallel to an axis of translation of the drive piston.
- 43. The valve actuator assembly of claim 42 wherein the secondary piston is operably coupled to a valve rotator, the valve rotator acting to shift the secondary piston during the cycle of the valve.
- 44. The valve actuator assembly of claim 43 further including a needle, the needle being actuatable by a controller and being disposed concentrically in a main piston, the main piston acting to magnify a stroke of the needle as the stroke of the needle affects the stroke of the valve.
- 45. The valve actuator assembly of claim 44 wherein the main piston is in communication with the control chamber and is shiftable by a force generated by a fluid in the control chamber acting on the main piston.
- 46. The valve actuator assembly of claim 45 wherein the needle and the main piston act cooperatively to port the high pressure actuating fluid to and from the drive piston for actuation of the valve operably coupled to the drive piston.
- 47. The valve actuator assembly of claim 39 wherein replenishing the actuating fluid in the control chamber acts to accommodate valve lash.
- 48. A valve actuator module for disposition on an engine cylinder, the cylinder having at least two valves, each valve being strokable between an open disposition and a closed disposition, comprising:a drive piston operably coupled to the valve and being in selective communication with a low pressure actuating fluid and a high pressure actuating fluid, the high pressure actuating fluid acting on the drive piston to stroke the valve open; and a magnifier being in fluid communication with the drive piston the magnifier acting to magnify an actuating stroke commanded by a controller to proportionally increase the valve stroke.
- 49. The valve actuator assembly of claim 48 wherein the low pressure actuating fluid is in communication with a control chamber, the control chamber being replenishable by low pressure actuating fluid at each valve closing stroke.
- 50. The valve actuator assembly of claim 49 further including a secondary piston defining in part a volume of a control chamber.
- 51. The valve actuator module of claim 50 wherein the secondary piston is spaced apart from the drive piston and being shiftable along an axis that is substantially parallel to an axis of translation of the drive piston.
- 52. The valve actuator module of claim 51 wherein the secondary piston is operably coupled to a valve rotator, the valve rotator acting to shift the secondary piston during the closing stroke of the valve.
- 53. The valve actuator module of claim 52 further including a needle, the needle being actuatable by the controller and being disposed concentrically in a main piston, the main piston comprising in part the magnifier and acting to magnify a stroke of the needle as the stroke of the needle affects the stroke of the valve.
- 54. The valve actuator module of claim 53 wherein the main piston is in communication with the control chamber and is shiftable by a force generated by a fluid in the control chamber acting on the main piston.
- 55. The valve actuator module of claim 54 wherein the needle and the main piston act cooperatively to port the high pressure actuating fluid to and from the drive piston for actuation of the valve operably coupled to the drive piston.
- 56. The valve actuator module of claim 49 wherein replenishing the actuating fluid in the control chamber acts in part to accommodate valve lash.
- 57. The valve actuator module of claim 49 wherein a volume of the control chamber is automatically variable to accommodate valve lash.
RELATED APPLICATIONS
The present application is a continuation-in-part application of U.S. patent application Ser. No. 09/152,497, filed Sep. 9, 1998, now U.S. Pat. No. 6,044,815,. The present application further claims the benefit of U.S. Provisional Application No. 60/172,984, filed Dec. 20 ,1999, and incorporated herein in its entirety by reference.
US Referenced Citations (32)
Provisional Applications (1)
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60/172984 |
Dec 1999 |
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Continuation in Parts (1)
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Number |
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09/152497 |
Sep 1998 |
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09/517144 |
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