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    • 1. 发明申请
    • TRANSMISSION DEVICE AND CONTROLLING METHOD THEREOF
    • 传输设备及其控制方法
    • US20120115680A1
    • 2012-05-10
    • US13287711
    • 2011-11-02
    • Shigekazu HASENobuhiro IWAIHiroshi TSUTSUI
    • Shigekazu HASENobuhiro IWAIHiroshi TSUTSUI
    • F16H61/02B60W10/10B60W10/02
    • F16H61/061F16H61/686F16H2059/363F16H2061/062
    • A transmission configured with a speed change control unit which, when upshifting the speed in an accelerator on condition, executes an engagement control including a torque phase control after executing a filling control, which controls the hydraulic control unit in such a way that a hydraulic servo of the engagement side frictional engagement element is filled with hydraulic oil, and a standby control, which controls the hydraulic control unit in such a way that hydraulic pressure for the hydraulic servo is maintained at a preset standby pressure. A correction unit is configured to correct at least one of an execution time of the filling control and the standby pressure to an increment side when a fluctuation in a rotational acceleration of the input shaft exceeding a preset determination reference is detected after the standby control.
    • 一种变速器,其配置有变速控制部,该变速控制部在进行加速器的转速时,在执行填充控制之后,执行包括转矩相位控制的接合控制,所述控制单元以液压伺服机构 接合侧摩擦接合元件填充有液压油,以及备用控制器,其以使液压伺服机构的液压保持在预设待机压力的方式控制液压控制单元。 校正单元被配置为当在待机控制之后检测到超过预设的确定基准的输入轴的旋转加速度的波动时,将填充控制的执行时间和待机压力中的至少一个校正到增量侧。
    • 5. 发明申请
    • SHIFT CONTROL APPARATUS FOR AUTOMATIC TRANSMISSION
    • 自动变速箱换档控制装置
    • US20090171543A1
    • 2009-07-02
    • US12251817
    • 2008-10-15
    • Haruki SATONobuhiro IWAIShoichiro ARAKIHiroshi TSUTSUI
    • Haruki SATONobuhiro IWAIShoichiro ARAKIHiroshi TSUTSUI
    • B60W10/10G06F17/00
    • F16H61/061F16H61/686F16H2061/0444F16H2306/14F16H2306/44F16H2306/52
    • A shift controller controls a downshift to a low shift speed, spaced apart from a high shift speed by two or more steps, through an intermediate shift speed, by first releasing first and second shift release elements, then engaging a first shift engagement element, and finally engaging a second shift engagement element, while controlling the torque capacity of the second shift release element by feedback control. As a result of releasing the first and second shift release elements before engaging the first shift engagement element, it is possible to rev up an input rotation at maximum performance of an engine to reduce the time for shifting. As a result of the feedback control of the torque capacity of the second shift release element after engaging the first shift engagement element, a torque fluctuation at the intermediate shift speed can be reduced to avoid occurrence of an uncomfortable shift shock.
    • 变速控制器通过首先释放第一和第二换档释放元件,然后接合第一换档接合元件,并将第一换档接合元件接合,并将第一换档释放元件与第一换挡接合元件接合, 最后接合第二换档接合元件,同时通过反馈控制来控制第二换档释放元件的扭矩容量。 由于在接合第一变速接合元件之前释放第一和第二变速释放元件的结果,可以在发动机的最高性能下加速输入旋转以减少换档时间。 由于第二换档释放元件在接合第一换挡接合元件之后的扭矩容量的反馈控制的结果,可以减小中间换档速度下的转矩波动,以避免发生不舒适的换档冲击。
    • 7. 发明申请
    • CONTROL DEVICE OF AUTOMATIC TRANSMISSION
    • 自动变速器控制装置
    • US20110257856A1
    • 2011-10-20
    • US13076230
    • 2011-03-30
    • Hiroshi TSUTSUIYutaka TERAOKAMasatake ICHIKAWAShoji OMITSU
    • Hiroshi TSUTSUIYutaka TERAOKAMasatake ICHIKAWAShoji OMITSU
    • F16D43/286F16D7/00
    • F16H61/686B60Y2300/18025F16H61/0437F16H61/143F16H61/20F16H2061/0488F16H2061/207F16H2312/02
    • A control apparatus of an automatic transmission including a start intended operation detecting unit detecting a vehicle starting operation; and a clutch control unit engaging the clutch from the clutch disengaged state and the automatic speed change mechanism is placed in a neutral state, when the vehicle starting operation is detected. The clutch control unit includes an initial engagement control unit performing initial engagement control that starts frictional contact of the clutch by supplying hydraulic pressure to a hydraulic servo of the clutch, and a slip start control unit establishing a speed ratio of the automatic speed change mechanism at the start by slip-controlling the clutch after the initial engagement control is terminated, thereby increasing output shaft rotational speed of the automatic speed change mechanism without reducing the input shaft rotational speed of the automatic speed change mechanism to less than the input shaft rotational speed at the end of initial engagement control.
    • 一种自动变速器的控制装置,包括检测车辆起动操作的起动目标操作检测单元; 并且当检测到车辆起动操作时,将离合器从离合器分离状态接合的离合器控制单元和自动变速机构置于中立状态。 离合器控制单元包括初始接合控制单元,其执行初始接合控制,其通过向离合器的液压伺服机构提供液压来启动离合器的摩擦接触;以及滑差启动控制单元,其建立自动变速机构的速比 在初始接合控制终止之后通过滑动控制离合器的开始,从而增加自动变速机构的输出轴转速,而不将自动变速机构的输入轴转速降低到低于输入轴转速 初始接合控制结束。
    • 9. 发明申请
    • ACCELERATOR AND CYCLOTRON
    • 加速器和循环
    • US20110291484A1
    • 2011-12-01
    • US13113456
    • 2011-05-23
    • Hiroshi TSUTSUI
    • Hiroshi TSUTSUI
    • H02J9/00H02J7/00
    • H05H13/00H05H7/08Y10T307/625
    • An accelerator includes an inflector through which a beam entering from an ion source passes and which introduces the beam to an acceleration orbit. The inflector includes a beam convergence unit that converges the beam passing through the inflector. A cyclotron, which accelerates a beam in a convoluted acceleration orbit, includes magnetic poles, D-electrodes, and an inflector. The magnetic poles generate a magnetic field in a direction perpendicular to the acceleration orbit. The D-electrodes generate a potential difference, which accelerates the beam, in the acceleration orbit. A beam, which enters in an incident direction perpendicular to the acceleration orbit, passes through the inflector, and the inflector bends the beam so as to introduce the beam to the acceleration orbit. The inflector includes a beam convergence unit that converges the beam passing through the inflector.
    • 加速器包括一个偏转器,通过该偏转器从离子源进入的光束通过,并将光束引入加速度轨道。 偏转器包括会聚穿过折射器的光束的光束会聚单元。 回旋加速器加速轨道中的波束,包括磁极,D电极和反射器。 磁极在垂直于加速轨道的方向上产生磁场。 D电极在加速度轨道中产生电位差,从而加速光束。 沿与垂直于加速度轨道的入射方向入射的光束通过偏转器,并且偏转器弯曲光束,以将光束引入加速度轨道。 偏转器包括会聚穿过折射器的光束的光束会聚单元。
    • 10. 发明申请
    • CONTROL APPARATUS OF AUTOMATIC TRANSMISSION
    • 自动变速箱控制装置
    • US20110246036A1
    • 2011-10-06
    • US13023593
    • 2011-02-09
    • Hiroshi TSUTSUIYutaka TeraokaMasatake IchikawaShoji Omitsu
    • Hiroshi TSUTSUIYutaka TeraokaMasatake IchikawaShoji Omitsu
    • F16D48/06
    • F16H61/143F16H61/686F16H2312/022
    • A control apparatus of an automatic transmission having an automatic speed change mechanism for changing a driving source speed of rotation and a clutch engaged at a start, a fluid transmission apparatus between the driving source and the automatic speed change mechanism, and a lock-up clutch for locking up the fluid transmission apparatus. The control apparatus includes a range unit that determines a shift range including a drive range, a vehicle stop unit that determines a stop of a vehicle, a start intended operation unit that detects an intended start vehicle operation, a clutch control unit that controls the clutch to be disengaged to place the automatic speed change mechanism in a neutral state while the shift range is determined to be the drive range and the vehicle is determined to be stopped, and performs engagement control of the clutch to control the start of the vehicle when the operation intended for starting the vehicle is detected, and a lock-up clutch control unit that controls the lock-up clutch to be engaged while the shift range is determined to be the drive range and the vehicle is determined to be stopped, and controls the lock-up clutch so that the lock-up clutch is at least engaged in a slip region in which a predetermined torque capacity is obtained, when the operation intended for starting the vehicle is detected.
    • 一种自动变速器的控制装置,具有用于改变驱动源旋转速度的自动变速机构和起动时接合的离合器,驱动源与自动变速机构之间的流体传动装置,以及锁止离合器 用于锁定流体传动装置。 控制装置包括:范围单元,其确定包括驱动范围的移动范围;确定车辆停止的车辆停止单元;检测预期起动车辆操作的起动目标操作单元;控制离合器的离合器控制单元 在将变速范围确定为驱动范围并且车辆被确定为停止的同时将自动变速机构置于中立状态,并且当所述离合器的接合控制 检测用于启动车辆的操作,以及锁定离合器控制单元,其在移动范围被确定为驱动范围并且车辆被确定为停止时控制锁止离合器接合,并且控制 锁止离合器,使得锁定离合器至少接合在获得预定扭矩容量的滑动区域中,当用于启动车辆的操作 检测到icle。