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    • 3. 发明公开
    • CONTINUOUSLY VARIABLE TRANSMISSION
    • 无级变速器
    • EP2767728A1
    • 2014-08-20
    • EP11856623.1
    • 2011-09-22
    • Toyota Jidosha Kabushiki Kaisha
    • TOMOMATSU, DaisukeMURAKAMI, AkiraOGAWA, HiroyukiARATSU, Yuki
    • F16H15/52
    • F16H15/40F16H15/52
    • A continuously variable transmission includes plural planetary balls (40) sandwiched between first and second rotating members (10, 20) on a shaft (50), a carrier (60) for tiltably holding the respective planetary balls (40), a sun roller (20) for disposing the respective planetary balls (40) on an outer circumferential surface, an input shaft (11) of torque subjected to a reaction force of a pressure force directed from the first rotating member (10) to the respective planetary balls (40), an output shaft (21) of torque subjected to a reaction force of a pressure force directed from the second rotating member (20) to the respective planetary balls (40), and thrust bearings (TB) sandwiched between respective holding surfaces (13, 23) of the input shaft (11) and the output shaft (21), wherein the holding surface (13) at a time of rest is formed such that a space between the holding surface (13) and a race (91) on one side of the thrust bearing (TB) becomes wider on an outside in a radial direction than on an inside in the radial direction, and the holding surface (23) at the time of rest is formed such that a space between the holding surface (23) and a race (92) on the other side of the thrust bearing (TB) becomes wider on the outside in the radial direction than on the inside in the radial direction.
    • 无级变速器包括夹在轴(50)上的第一和第二旋转构件(10,20)之间的多个行星球(40),用于可倾斜地保持各个行星球(40)的托架(60),太阳辊 将来自第一旋转部件10的压力的反作用力施加到各行星滚珠40上的转矩的输入轴11, ),承受来自第二旋转部件(20)的朝向各行星球(40)的压力的反作用力的转矩的输出轴(21)以及夹在各保持面(13)之间的推力轴承(TB) (13)与所述输出轴(21)之间的空间形成为在所述输入轴(11)和所述输出轴(21)之间的空间形成为所述保持面(13)与所述输出轴 推力轴承(TB)的一侧在放射线的外侧变宽 (23)与止推轴承(23)的另一侧的座圈(92)之间的空间形成在静止时的保持面(23)上, (TB)在径向外侧比径向内侧宽。
    • 4. 发明公开
    • VARIATOR SWITCHING VALVE SCHEME FOR A TORROIDAL TRACTION DRIVE TRANSMISSION
    • VARIATOR-SCHALTVENTILSCHEMAFÜREINRINGFÖRMIGESZUGANTRIEBSGETRIEBE
    • EP2655938A2
    • 2013-10-30
    • EP11848755.2
    • 2011-12-14
    • Allison Transmission, Inc.
    • LONG, Charles, F.WEBER, Darren, J.FULLER, John, William, Edward
    • F16H61/664
    • F16H15/40F16H61/0265F16H61/664F16H61/6648
    • An apparatus for controlling a variator having at least one roller between two torroidal disks may include at least one actuator responsive to fluid pressure at separate high side and low side fluid inlets thereof to control torque applied by the at least one roller to the disks. First and second variator switching valves may each receive a first fluid at a first pressure and a second fluid at a second lesser pressure. The first and second variator switching valves supply the first fluid to the high side fluid inlet and the second fluid to the low side fluid inlet during two of four different operational states together defined by the variator switching valves, and supply the second fluid to the high side fluid inlet and the first fluid to the low side fluid inlet during each of the remaining two of the four different operational states.
    • 用于控制在两个环形盘之间具有至少一个辊的变换器的装置可以包括至少一个致动器,其响应于分离的高侧和低侧流体入口处的流体压力,以控制由至少一个辊施加到盘的扭矩。 第一和第二变换器切换阀可以各自以第一压力接收第一流体,而在第二较小压力下接收第二流体。 第一和第二变换器切换阀在由变换器切换阀一起限定的四个不同操作状态期间的两个期间将第一流体供应到高侧流体入口和第二流体到低侧流体入口,并将第二流体供应到高 侧流体入口和第一流体到四个不同操作状态中的剩余两个中的每一个中的低侧流体入口。
    • 8. 发明公开
    • CONTINUOUSLY VARIABLE TRANSMISSION MECHANISM
    • EP3358220A1
    • 2018-08-08
    • EP18151029.8
    • 2018-01-10
    • Motive Power Industry Co., Ltd.
    • CHENG, Hsin-LinTENG, Ching-Chung
    • F16H15/28F16H15/52
    • F16H15/40F16H15/28F16H15/52
    • A continuously variable transmission mechanism includes a speed-changing frame having innermost annularly-arranged guide-slots, outermost annularly-arranged cruciform-guide-slots, and intermediate annularly-arranged receiving-holes communicating with the guide-slots and cruciform-guide-slots; speed-changing units having speed-changing spheres movably-received in and exposed from the receiving-holes, speed-changing rods movably, penetratingly disposed at the speed-changing spheres, and speed-changing slide-bars perpendicularly connected to exposed ends of the speed-changing rods, wherein the speed-changing slide-bars and rods are exposed from end-portions of the speed-changing spheres and slide within the cruciform-guide-slots, whereas the speed-changing rods are exposed from other end-portions of the speed-changing spheres and slide within the guide-slots; two oblique support-units having oblique support-rings with outward-tilted support-annular-surfaces for supporting the speed-changing spheres and inward-tilted clamping-annular-surfaces, oblique supporters having outward-tilted clamping-annular-surfaces, and truncated-conical ball-rings clamped between the inward-tilted and outward-tilted clamping-annular-surfaces; power-input and power-output rotators with power-input and power-output inward-tilted clamping-annular-surfaces for clamping the speed-changing spheres from the receiving-holes, respectively.