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    • 2. 发明申请
    • Electronic control throttle system for a vehicle and vehicle equipped therewith
    • 用于车辆和车辆的电子控制节流系统
    • US20080178840A1
    • 2008-07-31
    • US12011691
    • 2008-01-28
    • Takeru OshimaSatoru SakanakaTakuya SakamotoTatsuya Hirokami
    • Takeru OshimaSatoru SakanakaTakuya SakamotoTatsuya Hirokami
    • F02D9/00
    • F02D9/1065
    • An electronic control throttle system for a vehicle, comprising a hand-operated-shaft-side driven member configured to operate in association with rotation of a hand-operated shaft, the hand-operated-shaft-side driven member having a supported portion; a throttle-shaft-side driven member which is provided to operate in association with rotation of a throttle shaft, the throttle-shaft-side driven member having a support portion positioned in a direction to close the throttle valve relative to the supported portion on an operation track of the supported portion; an actuator configured to cause the throttle shaft to rotate to open and close the throttle valve; and a controller having an automated cruise mode in which the hand-operated shaft is subjected to a force in the direction to close the throttle valve and the supported portion is supported in contact with the support portion to cause the hand-operated shaft to operate according to the rotation of the throttle shaft.
    • 一种用于车辆的电子控制节流系统,包括被配置为与手动轴的旋转相关联地操作的手动轴侧从动构件,所述手动轴侧从动构件具有支撑部分; 节气门轴侧从动构件,其设置成与节流轴的旋转相关联地操作,节气门轴侧从动构件具有支撑部分,该支撑部分沿着关于节气门的方向相对于支撑部分在一个 支撑部分的操作轨迹; 致动器,其构造成使节流轴旋转以打开和关闭节流阀; 以及具有自动巡航模式的控制器,其中手动轴在关闭节气门的方向上受到力的作用,并且支撑部分被支撑为与支撑部分接触,以使手动轴按照 到节流轴的旋转。
    • 5. 发明申请
    • Throttle valve controller and engine
    • 节流阀控制器和发动机
    • US20070199541A1
    • 2007-08-30
    • US11705830
    • 2007-02-12
    • Yoji FukamiSatoru SakanakaTatsuya HirokamiMitsuhiro Yazaki
    • Yoji FukamiSatoru SakanakaTatsuya HirokamiMitsuhiro Yazaki
    • F02D11/10F02D11/04
    • F02D11/04F02B61/02F02D9/1065F02D9/1095F02D11/10
    • A throttle valve controller configured to control opening and closing of a throttle valve disposed in an air-intake passage of a throttle body coupled to an engine, including an input member that is rotatable in association with a rider's hand operation, a power transmission device with an input part thereof coupled to the input member, an output member that is coupled to an output part of the power transmission device and causes the throttle valve to rotate in association therewith, an actuator configured to drive the power transmission device to cause the output member to rotate relative to the input member to change a rotational ratio of the output member to the input member independently of the hand operation, and a movable stopper configured to change and restrict a rotational range of the input member in a closing direction of the throttle valve.
    • 一种节流阀控制器,其构造成控制设置在与发动机连接的节气门体的进气通道中的节气门的打开和关闭,该节气门包括可与骑手的手动作相关联地旋转的输入构件,具有 其输入部分联接到所述输入构件,输出构件,其联接到所述动力传递装置的输出部分并且使所述节气门相关联地旋转;致动器,被配置为驱动所述动力传递装置以使所述输出构件 相对于输入构件旋转以独立于手动操作而改变输出构件与输入构件的旋转比,以及可移动止动件,其构造成改变和限制输入构件在节气门的关闭方向上的旋转范围 。
    • 6. 发明授权
    • Throttle valve controller and engine
    • 节流阀控制器和发动机
    • US07571710B2
    • 2009-08-11
    • US11705830
    • 2007-02-12
    • Yoji FukamiSatoru SakanakaTatsuya HirokamiMitsuhiro Yazaki
    • Yoji FukamiSatoru SakanakaTatsuya HirokamiMitsuhiro Yazaki
    • F02D9/02F02D41/00F02D11/10
    • F02D11/04F02B61/02F02D9/1065F02D9/1095F02D11/10
    • A throttle valve controller configured to control opening and closing of a throttle valve disposed in an air-intake passage of a throttle body coupled to an engine, including an input member that is rotatable in association with a rider's hand operation, a power transmission device with an input part thereof coupled to the input member, an output member that is coupled to an output part of the power transmission device and causes the throttle valve to rotate in association therewith, an actuator configured to drive the power transmission device to cause the output member to rotate relative to the input member to change a rotational ratio of the output member to the input member independently of the hand operation, and a movable stopper configured to change and restrict a rotational range of the input member in a closing direction of the throttle valve.
    • 一种节流阀控制器,其构造成控制设置在与发动机连接的节气门体的进气通道中的节气门的打开和关闭,该节气门包括可与骑手的手动作相关联地旋转的输入构件,具有 其输入部分联接到所述输入构件,输出构件,其联接到所述动力传递装置的输出部分并且使所述节气门相关联地旋转;致动器,被配置为驱动所述动力传递装置,以使所述输出构件 相对于输入构件旋转以独立于手动操作而改变输出构件与输入构件的旋转比,以及可移动止动件,其构造成改变和限制输入构件在节气门的关闭方向上的旋转范围 。
    • 7. 发明授权
    • Press processing method and press processing device
    • 冲压加工方法和冲压加工装置
    • US5873685A
    • 1999-02-23
    • US803879
    • 1997-02-21
    • Eiichi YagiKatsumi NakashimaYasuo NakanoSatoru SakanakaToshiaki NishiyamaHirozo Hishida
    • Eiichi YagiKatsumi NakashimaYasuo NakanoSatoru SakanakaToshiaki NishiyamaHirozo Hishida
    • B24B9/00B23Q11/00B24B27/00B23C1/30
    • B23Q11/0021Y10T29/5107Y10T409/303808Y10T409/307224Y10T409/307672Y10T409/309688
    • The disclosed press processing method and device can chamfer work, for instance by pressing a chamfering tool against the work at a predetermined contact pressure, without detecting the pressing force of the chamfering tool against the work or without feedbacking the detected pressing force to a robot controller. The press processing device used being mounted on automatic mechanical processing means such a multi-joint robot, comprises: a processing section (e.g., grinder) (11) held by a support body (12) in such a way that pressure caused by a dead load of the processing section is not applied to a processing portion (e.g. blade) (11d) of the processing section (11); a constant torque applying section (e.g., servomotor) (16) for pivoting the processing section in a predetermined direction at a constant torque; and a mounting member (20) for mounting the constant torque applying section to a robot arm (R). The work (W) is processed by the processing section (11) in such a state that the processing portion (11d) of the processing section (11) is pressed against the work under a constant pressing force.
    • 所公开的压制加工方法和装置可以倒角工作,例如通过以预定的接触压力将倒角工具压在工件上,而不检测倒角工具抵抗工件的压力或不将检测到的按压力反馈到机器人控制器 。 所使用的压制加工装置安装在这种多关节机器人的自动机械处理装置上,包括:由支撑体(12)保持的处理部分(例如,研磨机)(11),使得由死亡 处理部的负载不施加到处理部(11)的处理部(例如,叶片)(11d)上; 用于以恒定转矩在预定方向上枢转处理部分的恒转矩施加部分(例如伺服电动机)(16); 以及用于将恒转矩施加部安装到机器人臂(R)的安装构件(20)。 在处理部(11)的处理部(11d)以一定的按压力按压工件的状态下,处理部(11)处理作业(W)。