Claims
- 1. An actuating system for operating at least one valve of an engine during a plurality of engine operating modes, said system comprising:
energy means for supplying energy to operate the at least one valve during the plurality of engine operating modes; valve actuation means for actuating the at least one valve during said the plurality of engine operating modes; energy transfer means for transferring energy from said energy means to said valve actuation means; and control means for controlling the amount of energy transferred from said energy means to said valve actuation means to control the actuation of the at least one valve during the plurality of engine operating modes.
- 2. The actuating system according to claim 1, wherein said valve actuation means, said energy transfer means and said control means cooperate to provide lost motion valve actuation of the at least one valve.
- 3. The actuating system according to claim 1, wherein said energy transfer means transfers all of the energy derived from said energy supply means during one operating mode.
- 4. The actuating system according to claim 3, wherein said one operating mode is an auxiliary operating mode.
- 5. The actuating system according to claim 3, wherein said energy transfer means transfers a portion of the energy derived from said energy supply means during a second operating mode.
- 6. The actuating system according to claim 1, wherein said valve actuation means includes an accumulator piston slidably disposed in a slave piston.
- 7. The actuating system according to claim 1, wherein said valve actuation means includes a selectively actuatable accumulator.
- 8. The actuating system according to claim 7, wherein said valve actuation means, said energy transfer means and said control means cooperate to provide lost motion valve actuation of the at least one engine valve.
- 9. The actuating system according to claim 7, wherein said selectively actuatable accumulator is in a locked position during one operating mode such that substantially all of the energy from the energy means is transferred to said valve actuation means.
- 10. The actuating system according to claim 9, wherein said selectively actuatable accumulator has a fixed volume.
- 11. The actuating system according to claim 6, wherein said accumulator piston includes a piston head and a piston stem.
- 12. The actuating system according to claim 8, wherein said selectively actuatable accumulator is in an unlocked position during one operating mode such that only a portion of the energy from the energy means is transferred to said valve actuation means.
- 13. The actuating system according to claim 6, further comprising a bleed passage extending through the accumulator piston.
- 14. The actuating system according to claim 7, wherein said control means includes supply means for supplying a fluid to said selectively actuatable accumulator.
- 15. The actuating system according to claim 7, wherein said control means further includes venting means for venting the fluid from said selectively actuatable accumulator at a predetermined time.
- 16. The actuating system according to claim 7 wherein said selectively actable accumulator is incorporated into a piston assembly.
- 17. The actuating system according to claim 7, wherein said selectively actable accumulator is incorporated into a piston assembly, and wherein said control means further includes venting means for venting the fluid from said selectively actuatable accumulator at a predetermined position of said piston assembly.
- 18. The actuating system according to claim 16, wherein said selectively actuatable accumulator has a fixed volume.
- 19. The actuating system according to claim 14, wherein said supply means supplies fluid to said selectively actuatable accumulator to maintain said accumulator in a locked position in one operating mode.
- 20. The actuating system according to claim 1, wherein said valve actuation means includes a disk-shaped accumulator piston slidably disposed in a slave piston.
- 21. The actuating system according to claim 1, wherein said control means comprises a spool valve.
- 22. The actuating system according to claim 21, wherein said spool valve includes an internal check valve.
- 23. The actuating system according to claim 21, further comprising a spring biasing said spool valve into a position for positive power engine valve operation.
- 24. The actuating system according to claim 21, wherein said control means further comprises a check valve located externally of said spool valve.
- 25. The actuating system according to claim 21, wherein said control means further includes selectively operable fluid supply means for selectively supplying fluid to said supply means.
- 26. The actuating system according to claim 23, wherein said control means further comprises an hydraulic vent, and wherein said biasing spring is isolated from hydraulic fluid flow through said vent.
- 27. The actuating system according to claim 21, wherein said control means further includes a solenoid operated valve for selectively controlling fluid supply to said spool valve.
- 28. The actuating system according to claim 21, wherein said valve actuation means includes an accumulator piston slidably disposed in a slave piston.
- 29. The actuating system according to claim 28, wherein said accumulator piston comprises a piston head and a piston stem.
- 30. The actuating system according to claim 29, further comprising at least one spring disposed between said accumulator piston and said slave piston.
- 31. The actuating system according to claim 29, further comprising a bleed passage extending through the accumulator piston.
- 32. The actuating system according to claim 21, wherein said control means further includes venting means for venting a predetermined amount of fluid from said valve actuation means at predetermined times during the plurality of engine operating conditions.
- 33. The actuating system according to claim 32, wherein said valve actuation means comprises a piston assembly disposed in a bore, a selectively actuatable accumulator disposed in the piston assembly, and wherein said venting means vents the fluid from said selectively actuatable accumulator at a predetermined position of said piston assembly in the bore.
- 34. The actuating system according to claim 1, wherein said energy transfer means comprises an hydraulic link between a master piston and a slave piston.
- 35. The actuating system according to claim 1, wherein said energy transfer means comprises a rocker arm and said valve actuation means comprises the combination of a slave piston and stem-shaped accumulator piston.
- 36. The actuating system according to claim 32, further comprising a fluid recovery system, and wherein said venting means vents said fluid to the fluid recovery system.
- 37. The actuating system according to claim 36, wherein said fluid recovery system is connected to an additional accumulator assembly.
- 38. The actuating system according to claim 36, wherein said fluid recovery system is connected to said supply means.
- 39. The actuating system according to claim 36, wherein said fluid recovery system is connected to a reservoir.
- 40. The actuating system according to claim 36, wherein said fluid recovery system is connected to a supplemental fluid supply.
- 41. The actuating system according to claim 21, wherein said energy transfer means comprises a rocker arm, and wherein said spool valve is disposed within said rocker arm and wherein said spool valve incorporates a check valve.
- 42. The actuating system according to claim 41, further comprising a spring positioned to bias said spool valve into an open position.
- 43. The actuating system according to claim 41, wherein said control means further comprises a check valve disposed within said rocker arm and located externally of said spool valve.
- 44. The actuating system according to claim 41, further comprising a spring biasing said spool valve into a position for positive power engine valve operation.
- 45. The actuating system according to claim 41, wherein said control means further includes selectively operable fluid supply means for selectively supplying fluid to said supply means.
- 46. The actuating system according to claim 44, wherein said control means further comprises an hydraulic vent, and wherein said biasing spring is isolated from hydraulic fluid flow through said vent.
- 47. The actuating system according to claim 41, wherein said control means further includes a solenoid operated valve for selectively controlling fluid supply to said spool valve.
- 48. The actuating system according to claim 41, wherein said valve actuation means includes an accumulator piston slidably disposed in a slave piston.
- 49. The actuating system according to claim 48, wherein said accumulator piston comprises a piston head and a piston stem.
- 50. The actuating system according to claim 49, further comprising at least one spring disposed between said accumulator piston and said slave piston.
- 51. The actuating system according to claim 49, further comprising a bleed passage extending through the accumulator piston.
- 52. The actuating system according to claim 41, wherein said control means further includes venting means for venting a predetermined amount of fluid from said valve actuation means at predetermined times during the plurality of engine operating conditions.
- 53. The actuating system according to claim 52, wherein said valve actuation means comprises a piston assembly disposed in a bore, a selectively actuatable accumulator disposed in the piston assembly, and wherein said venting means vents the fluid from said selectively actuatable accumulator at a predetermined position of said piston assembly in the bore.
- 54. The actuating system according to claim 41, wherein said valve actuation means comprises a selectively actuatable accumulator.
- 55. The actuating system according to claim 1, wherein said energy supply means comprises a cam assembly.
- 56. The actuating system according to claim 55, wherein said energy transfer means includes a piston assembly, wherein said control means includes a selectively actuatable accumulator, said actuatable accumulator being located within said piston assembly.
- 57. The actuating system according to claim 56, wherein said valve actuation means, said energy transfer means and said control means cooperate to provide lost motion valve actuation of the at least one valve.
- 58. The actuating system according to claim 57, wherein said selectively actuatable accumulator is in a locked position during one operating mode.
- 59. The actuating system according to claim 58, wherein said one operating mode is one of a primary operating mode and an auxiliary operating mode.
- 60. The actuating system according to claim 1, wherein said valve actuation means includes a piston assembly and said energy transfer means includes a hydraulic circuit, wherein said control means includes a selectively actuatable accumulator, said actuatable accumulator being located within said slave piston assembly.
- 61. The actuating system according to claim 60, wherein said valve actuation means, said energy transfer means and said control means cooperate to provide lost motion valve actuation of the at least one valve.
- 62. The actuating system according to claim 60, wherein said selectively actuatable accumulator is in a locked position during one operating mode.
- 63. The actuating system according to claim 60, wherein said one operating mode is one of a primary operating mode and an auxiliary operating mode.
- 64. The actuating system according to claim 1, wherein said energy transfer means includes a first piston assembly and a hydraulic fluid circuit, and said valve actuation means includes a second piston assembly, wherein said control means includes a selectively actuatable accumulator, said actuatable accumulator being located within said hydraulic fluid circuit between said first piston assembly and said second piston assembly.
- 65. The actuating system according to claim 1, wherein said energy transfer means comprises a rocker arm and an hydraulic fluid circuit integrated therein, and said valve actuation means includes a piston assembly integrated into said rocker arm, said piston assembly including a stem-shaped piston.
- 66. The actuating system according to claim 64, wherein said selectively actuatable accumulator is in a locked position during one operating mode.
- 67. The actuating system according to claim 65, wherein said stem-shaped piston is in a locked position during one operating mode.
- 68. The actuating system according to claim 1, wherein said energy transfer means is connected to said valve actuation means, said energy transfer means having a first piston assembly located therein, and said valve actuation assembly having a second piston assembly located therein.
- 69. The actuating system according to claim 68, wherein said valve actuation means, said energy transfer means and said control means cooperate to provide lost motion valve actuation of the at least one valve.
- 70. The actuating system according to claim 68, wherein at least a portion of said control means is located within said energy transfer means between said first and second pistons.
- 71. The actuating system according to claim 70, wherein said control means includes a third piston assembly, wherein said third piston assembly is located intermediate of said first and second piston
- 72. The actuating system according to claim 68, further comprising:
clipping means for clipping movement of one of said first and second pistons.
- 73. The actuating system according to claim 1, wherein said valve actuation means, said energy transfer means and said control means are positioned within a rocker arm assembly.
- 74. The actuating system according to claim 73, wherein said valve actuation means, said energy transfer means and said control means cooperate to provide lost motion valve actuation of the at least one valve.
- 75. The actuating system according to claim 74, wherein said control means includes a selectively actuatable accumulator for controlling the amount of energy transferred to said valve actuation means during the plurality of engine operating conditions.
- 76. The actuating system according to claim 75, wherein said control means includes supply means for supplying a fluid to said selectively actuatable accumulator.
- 77. The actuating system according to claim 76, wherein said control means further includes venting means for venting the fluid from said selectively actuatable accumulator at a predetermined time.
- 78. The actuating system according to claim 77, wherein said venting means vents said fluid to a fluid recovery system.
- 79. The actuating system according to claim 78, wherein said fluid recovery system is connected to an additional accumulator assembly.
- 80. The actuating system according to claim 78, wherein said fluid recovery system is connected to said supply means.
- 81. The actuating system according to claim 78, wherein said fluid recovery system is connected to a reservoir.
- 82. The actuating system according to claim 78, wherein said fluid recovery system is connected to a supplemental fluid supply.
- 83. The actuating system according to claim 82, wherein said supply means further includes supply control means for controlling the supply of fluid to said selectively actuatable accumulator.
- 84. The actuating system according to claim 83, wherein said supply control means includes a valve assembly to control the supply of fluid to said selectively actuatable accumulator.
- 85. The actuating system according to claim 84, wherein said supplemental fluid supply is s electively operable to control said valve assembly.
- 86. The actuating system according to claim 1, wherein said valve actuation means, said energy transfer means and said control means are positioned within a hydraulic overhead assembly.
- 87. The actuating system according to claim 86, wherein said valve actuation means, said energy transfer means and said control means cooperate to provide lost motion valve actuation of the at least one valve.
- 88. The actuating system according to claim 87, wherein said control means includes a selectively actuatable accumulator for controlling the amount of energy transferred to said valve actuation means during the plurality of engine operating modes.
- 89. The actuating system according to claim 88, wherein said control means includes supply means for supplying a fluid to said selectively actuatable accumulator.
- 90. The actuating system according to claim 89, wherein said control means further includes venting means for venting the fluid from said selectively actuatable accumulator at a predetermined time.
- 91. The actuating system according to claim 90, wherein said venting means vents said fluid to a fluid recovery system.
- 92. The actuating system according to claim 91, wherein said fluid recovery system is connected to an additional accumulator assembly.
- 93. The actuating system according to claim 91, wherein said fluid recovery system is connected to said supply means.
- 94. The actuating system according to claim 91, wherein said fluid recovery system is connected to a reservoir.
- 95. The actuating system according to claim 91, wherein said fluid recovery system is connected to a supplemental fluid supply.
- 96. The actuating system according to claim 95, wherein said supply means further includes supply control means for controlling the supply of fluid to said selectively actuatable accumulator.
- 97. The actuating system according to claim 96, wherein said supply control means includes a valve assembly to control the supply of fluid to said selectively actuatable accumulator.
- 98. The actuating system according to claim 97, wherein said supplemental fluid supply is selectively operable to control said valve assembly.
- 99. The actuating system according to claim 1, wherein said valve actuation means includes a means for automatically taking up lash.
- 100. In an hydraulic valve actuation system for operating at least one valve of an engine during a plurality of engine operating conditions, wherein the valve actuation system includes a cam assembly having a plurality of lobes formed thereon for supplying motion to operate the at least one valve during the plurality of engine operating conditions, a valve actuating assembly having a first piston assembly for actuating the at least one valve, and a motion transfer assembly having a second piston assembly and a hydraulic circuit for transferring the motion from said cam assembly to said first piston assembly, the improvement comprising:
control means for controlling the amount of motion transferred from said motion transfer assembly to said first piston assembly to control the actuation of the at least one valve during the plurality of engine operating conditions.
- 101. The valve actuation system according to claim 100, wherein said control means includes a selectively actuatable accumulator for controlling the amount of motion transferred to said first piston assembly during the plurality of engine operating conditions.
- 102. The valve actuation system according to claim 101, wherein said selectively actuatable accumulator is in a locked position during one operating mode such that all of the motion from said cam assembly is transferred to said slave piston assembly.
- 103. The valve actuation system according to claim 102, wherein said selectively actuatable accumulator has a fixed volume.
- 104. The valve actuation system according to claim 102, wherein said selectively actuatable accumulator is in an unlocked position during another operating mode such that only a portion of the motion from said cam assembly is transferred to said first piston assembly.
- 105. The valve actuation system according to claim 104, wherein said control means includes supply means for supplying a fluid to said selectively actuatable accumulator.
- 106. The valve actuation system according to claim 105, wherein said control means further includes venting means for venting a predetermined amount of fluid from said selectively actuatable accumulator at a predetermined time.
- 107. The valve actuation system according to claim 105,wherein said control means further includes venting means for venting a predetermined amount of fluid from said selectively actuatable accumulator at a predetermined position of said first piston assembly.
- 108. The valve actuation system according to claim 105,wherein said control means further includes venting means for venting a predetermined amount of fluid from said selectively actuatable accumulator at a predetermined position of said second piston assembly.
- 109. The valve actuation system according to claim 105, wherein said supply means supplies fluid to said selectively actuatable accumulator to maintain said accumulator in a locked position in one operating mode.
- 110. The valve actuation system according to claim 109, wherein said supply means further includes supply control means for controlling the supply of fluid to said selectively actuatable accumulator.
- 111. The valve actuation system according to claim 110, wherein said control means further includes selectively operable fluid supply means for selectively supplying fluid to said supply means.
- 112. The valve actuation system according to claim 111, wherein said selectively operable fluid supply means selectively operates said supply control means.
- 113. The valve actuation system according to claim 111, wherein said control means further includes selectively operable fluid supply means for selectively operating said supply control means.
- 114. The valve actuation system according to claim 113, wherein said selectively operable fluid supply means selectively supplies fluid to operate said supply control means.
- 115. The valve actuation system according to claim 114, wherein said control means further includes venting means for venting a predetermined amount of fluid from said selectively actuatable accumulator at one of a predetermined time, a predetermined position of said master piston assembly and a predetermined position of said first piston assembly.
- 116. The valve actuation system according to claim 115, wherein said supply control means includes a valve assembly to control the supply of fluid to said selectively actuatable accumulator and said venting means.
- 117. The valve actuation system according to claim 115, wherein said venting means vents a predetermined amount of fluid from said supply means to release said selectively actuatable accumulator from said locked position.
- 118. The valve actuation system according to claim 117, wherein said venting means vents a predetermined amount of fluid to the atmosphere during one operating mode.
- 119. The valve actuation system according to claim 118, wherein said venting means vents a predetermined amount of fluid to a recovery system during one operating mode.
- 120. The valve actuation system according to claim 118, wherein said venting means vents a predetermined amount of fluid to an additional accumulator assembly during one operating mode.
- 121. The valve actuation system according to claim 100, wherein said control means includes a selectively actuatable accumulator, said actuatable accumulator being located within said second piston assembly.
- 122. The valve actuation system according to claim 121, wherein said selectively actuatable accumulator is in a locked position during one operating mode.
- 123. The valve actuation system according to claim 100, wherein said control means includes a selectively actuatable accumulator, said actuatable accumulator being located within said first piston assembly.
- 124. The valve actuation system according to claim 123, wherein said selectively actuatable accumulator is in a locked position during one operating mode.
- 125. The valve actuation system according to claim 100, wherein said control means includes a selectively actuatable accumulator, said actuatable accumulator being located within said hydraulic fluid circuit between said second piston assembly and said first piston assembly.
- 126. The valve actuation system according to claim 125, wherein said selectively actuatable accumulator is in a locked position during one operating mode.
- 127. The valve actuation system according to claim 100, wherein said valve actuating assembly, said motion transfer assembly and said control means cooperate to provide lost motion valve actuation of the at least one valve.
- 128. The valve actuation system according to claim 100, wherein said valve actuation system provides for lashless valve actuation.
- 129. In an hydraulic valve actuation system, a method of controlling the amount of lost motion between an actuating assembly for actuating at least one valve and the at least one valve during a plurality of engine operating conditions, wherein the actuating assembly includes a cam assembly for providing motion to actuate at least one valve, a first piston assembly in communication with the cam assembly, a second piston assembly selectively in communication with the at least one valve for operating the at least one valve, and a hydraulic circuit communicating between the second piston assembly and the first piston assembly, said method comprising the steps of:
providing a selectively actuatable accumulator with the actuating assembly; and supplying fluid to said selectively actuatable accumulator to establish a predetermined volume of fluid with said selectively actuatable accumulator.
- 130. A method for actuating at least one valve of an engine during a plurality of engine operating conditions, said method comprising the steps of:
supplying energy from an energy supply to operate the at least one valve during the plurality of engine operating conditions; transferring energy from the energy supply to a valve actuation assembly to actuate the at least one valve; and controlling the amount of energy transferred from the energy supply to the valve actuation assembly to control the actuation of the at least one valve during the plurality of engine operating conditions.
- 131. The method according to claim 130, wherein said step of controlling the amount of energy transferred from the energy supply to the valve actuation assembly includes the step of selectively actuating an accumulator for controlling the amount of energy transferred to the valve actuation assembly.
- 132. The method according to claim 131, further comprising the step of locking the accumulator during one operating mode such that all of the energy from the energy supply is transferred to the valve actuation assembly.
- 133. The method according to claim 131, further comprising the step of unlocking the accumulator during one operating mode such that only a portion of the energy from the energy supply is transferred to the valve actuation assembly.
- 134. The method according to claim 131, further comprising the step of controlling the supply of fluid to the accumulator.
- 135. The method according to claim 131, further comprising the step of supplying a fluid to the accumulator to control the amount of energy transferred to the valve actuation assembly.
- 136. The method according to claim 135, further comprising the step of venting the fluid from the accumulator at a predetermined time.
- 137. The method according to claim 136, wherein the valve actuation assembly includes a piston assembly, and wherein said step of venting the fluid occurs at a predetermined position of the piston assembly.
- 138. The method according to claim 135, wherein said step of transferring energy includes the step of providing an energy transfer assembly having a piston assembly and a hydraulic circuit for transferring energy from the energy supply to the valve actuation assembly, wherein said step of venting the fluid occurs at a predetermined position of the piston assembly.
- 139. The method according to claim 135, wherein said step of venting includes the step of venting a predetermined amount of fluid to release the accumulator at predetermined engine operating conditions.
Parent Case Info
[0001] CROSS REFERENCE To RELATED APPLICATIONS
[0002] The present application relates to and claims priority on U.S. Provisional Patent Application No. 60/154,473, filed Sep. 17, 1999.
Provisional Applications (1)
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Number |
Date |
Country |
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60154473 |
Sep 1999 |
US |
Divisions (1)
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Number |
Date |
Country |
Parent |
09663414 |
Sep 2000 |
US |
Child |
10144708 |
May 2002 |
US |