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    • 3. 发明授权
    • Hydraulic servo mechanism of automatic transmission for vehicle
    • 车辆自动变速器液压伺服机构
    • US4748809A
    • 1988-06-07
    • US852663
    • 1986-03-26
    • Koji SumiyaYoshikazu SakaguchiYutaka TagaSeitoku KuboShuzo Moroto
    • Koji SumiyaYoshikazu SakaguchiYutaka TagaSeitoku KuboShuzo Moroto
    • F16H59/50F16H61/06F15B1/02
    • F16H61/065F16H61/061F16H59/50Y10T477/69377
    • In an automatic transmission, friction elements are engaged and disengaged by a hydraulic servo connected alternately to a pressure source or to a drain through a selector valve, and an accumulator is connected to the line between the selector valve and the servo. The resistance against the oil discharged from the accumulator, the resistance against the oil discharged from the servo, and the return biasing forces in the accumulator and servo are adjusted so that the hydraulic pressure at the servo is lower than the hydraulic pressure of the accumulator for a predetermined time when the selector valve connects the servo with the drain. In one embodiment, a relief valve responsive to a vehicle running condition, controls the discharge rate of working oil through the drain. In another embodiment, a pressure regulator varies the level of the pressure of the working oil discharged from the accumulator in response to variations in a vehicle running condition.
    • PCT No.PCT / JP85 / 00434 Sec。 371日期:1986年5月27日 102(e)日期1985年5月27日PCT申请日1985年7月31日。在自动变速器中,摩擦元件通过液压伺服机构接合和分离,液压伺服系统通过选择阀交替地连接到压力源或排水管,并且蓄能器 连接到选择阀和伺服之间的管路。 对蓄能器排出的油的抵抗力,对伺服伺服的油排出的阻力以及蓄能器和伺服中的返回偏压力进行调整,使得伺服液压低于蓄能器的液压压力 选择阀将伺服与排水管连接的预定时间。 在一个实施例中,响应于车辆行驶状态的安全阀控制工作油通过排水管的排放速率。 在另一个实施例中,压力调节器响应于车辆行驶状态的变化而改变从蓄能器排出的工作油的压力水平。
    • 4. 发明授权
    • Electronically controlled automatic transmission control system
    • 电控自动变速器控制系统
    • US4631982A
    • 1986-12-30
    • US798726
    • 1985-11-18
    • Nobuaki MikiYoshikazu SakaguchiKozo MandokoroSeitoku Kubo
    • Nobuaki MikiYoshikazu SakaguchiKozo MandokoroSeitoku Kubo
    • F16H61/04B60K41/06
    • F16H61/0437F16H2061/0488Y10T477/6895Y10T477/69365
    • An electronically controlled automatic transmission control system for controlling an automatic transmission for a vehicle, comprising an electronic controller which receives functions on the basis of input signals corresponding to the running conditions of the vehicle to control a hydraulic controller including a fluid pressure source, shift control valves for changing over the connection of the fluid pressure source to the respective hydraulic servomotors of frictional engaging mechanisms which controls the operation of the components of a gear train included in the automatic transmission, solenoid valves adapted to be controlled by the electronic controller to change input signal pressures to the shift control valves and a manual selector valve having a spool capable of moving through predetermined set positions corresponding to the shift positions of the manual shift lever of the vehicle, in which the input signal pressure is supplied to one of the shift control valves, namely, 1-2 shift control valve, when the spool of the manual selector valve is shifted to a position corresponding to the neutral position, in order to improve the delayed operation of the automatic transmission in shifting the automatic transmission from the neutral or the parking position to the drive position.
    • 一种用于控制车辆自动变速器的电子控制自动变速器控制系统,包括:电子控制器,其基于与车辆的运行状况对应的输入信号接收功能,以控制包括流体压力源的液压控制器,换档控制 用于将流体压力源连接到摩擦接合机构的各个液压伺服电动机的阀,用于控制包括在自动变速器中的齿轮系的部件的操作,电磁阀适于由电子控制器控制以改变输入 对换档控制阀的信号压力以及具有能够移动到与车辆的手动变速杆的换档位置对应的预定设定位置的阀芯的手动换向阀,其中输入信号压力被提供给变速控制 阀门,即1-2 换档控制阀,当手动换向阀的阀芯移动到对应于中立位置的位置时,为了改善自动变速器在将空档或停车位置移动到驱动位置时的延迟操作 。
    • 6. 发明授权
    • Multi-disk brake for automatic transmission
    • 用于自动变速器的多盘式制动器
    • US5009290A
    • 1991-04-23
    • US389590
    • 1989-08-04
    • Kyouji HaradaEiji KatoYoshikazu SakaguchiKazuaki WatanabeAkira Hoshino
    • Kyouji HaradaEiji KatoYoshikazu SakaguchiKazuaki WatanabeAkira Hoshino
    • F16H3/44F16D25/0638F16D55/40F16F15/06F16H57/10F16H63/30
    • F16H57/10
    • A multi-disk brake for an automatic transmission having a plurality of annular outer lamellae having a larger diameter and a plurality of annular inner lamellae having a smaller diameter, the outer and inner lamellae being alternately arranged and interleaved in the axial direction. The outer lamellae are splined to the transmission case while the inner lamellae are rotatably supported on the case. The multi-disk brake has an engagement/disengagement mechanism capable of pressing the outer and inner lamellae so as to bring the same into frictional engagement and capable of disengaging and releasing the outer and inner lamellae from each other. A support member is inserted into the lowermost portion of an annular gap formed between outer the peripheral surfaces of the outer lamellae and the inner peripheral surface of the case, the support member supporting the outer lamellae biases them upward, thereby preventing any rotational drag motion of the outer lamellae.
    • 一种用于自动变速器的多盘式制动器,其具有多个具有较大直径的环形外薄片和具有较小直径的多个环形内薄片,所述外薄片和内薄片在轴向上交替布置和交错。 外薄片花键连接到变速箱上,而内薄片可旋转地支撑在壳体上。 多盘式制动器具有能够挤压外部和内部薄片以使其相互摩擦接合并能够使外部和内部薄片彼此分离和释放的接合/分离机构。 支撑构件被插入形成在外薄片的外周表面和壳体的内周表面之间的环形间隙的最下部分中,支撑外薄片的支撑构件将它们向上偏置,从而防止任何旋转拖动运动 外薄片。
    • 10. 发明申请
    • COLLECTING/RECYCLING SYSTEM OF ORGANIC EL LIGHTING DEVICE
    • 有机EL照明装置的收集/回收系统
    • US20130217292A1
    • 2013-08-22
    • US13878476
    • 2011-10-20
    • Yoshikazu Sakaguchi
    • Yoshikazu Sakaguchi
    • H05B33/10
    • H05B33/10B09B5/00G06Q50/00
    • A collecting/recycling system includes: information collecting section 10 that obtains a status of the organic EL panel used in a market; information processing section 20 that processes and stores, as collection/recycling information, information about a reutilizable member, part, and material of the organic EL panel; collection/recycling predicting section 30 that predicts the timing and quantity of the reutilizable member, part, and material of the organic EL panel, whose the status has been obtained by information collecting section 10, to be distributed to a recycling step based on the collection/recycling information stored in information processing section 20; and production plan setting section 40 that sets a production plan of a recycled organic EL panel using the reutilizable member/part/material based on the timing and quantity predicted by collection/recycling predicting section 30.
    • 收集/回收系统包括:获取市场中使用的有机EL面板的状态的信息收集部分10; 信息处理部20,其处理和存储有机EL面板的可再利用构件,部分和材料的信息作为收集/再循环信息; 收集/回收预测部30,其预测由信息收集部10获得的状态的有机EL面板的可再利用构件,部分和材料的时间和数量,基于该收集分配到再循环步骤 /回收信息存储在信息处理部分20中; 以及生产计划设定部40,其基于由收集/再循环预测部30预测的定时和数量,使用可再利用部件/部件/材料设定回收有机EL面板的生产计划。