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    • 1. 发明公开
    • Crank driving device for press
    • Kurbeltriebfüreine Presse。
    • EP0439270A2
    • 1991-07-31
    • EP91300265.5
    • 1991-01-15
    • Aida Engineering Ltd.
    • Imanishi, Shozo
    • B30B1/26
    • B30B1/263B30B1/266F16C3/28Y10T74/1667Y10T74/18208Y10T74/2179
    • The crank driving device for press according to the present invention is designed in serial type eccentric structure, in which the eccentric element of crank shaft and the eccentric mechanism to give the second eccentricity are separated in axial direction of the crank shaft. Specifically, in each of the eccentric holes of a pair of rotating bodies supported synchronously and rotatably on basic axial line, each of the shaft ends of crank shaft is relatively rotatably and relatively displaceably engaged in axial direction. The eccentricity is adjusted by relatively rotating crank shaft and rotating bodies, and the relative angle of crank shaft and rotating bodies are maintained at constant value by connecting means after adjustment.
      Therefore, the slide strokes can be easily adjusted as desired while pressure speed is maintained at constant level by adjusting the eccentricity of crank unit and eccentric holes, and this contributes to compact design of the equipment.
    • 根据本发明的压力机用曲柄驱动装置设计为串联型偏心结构,其中曲轴的偏心元件和偏心机构产生第二偏心度在曲轴的轴向方向上分离。 具体而言,在基本轴线上同时可旋转地支撑的一对旋转体的各偏心孔中,曲柄轴的各轴相对于轴向相对旋转并相对移动地接合。 通过相对旋转的曲轴和旋转体来调节偏心率,调整后通过连接装置将曲轴和旋转体的相对角度保持在恒定值。 因此,通过调整曲柄单元和偏心孔的偏心度,可以容易地调整滑动行程,同时将压力保持在恒定水平,这有助于设备的紧凑设计。
    • 4. 发明公开
    • Crank driving device for press
    • 起重机驱动装置
    • EP0439270A3
    • 1992-03-04
    • EP91300265.5
    • 1991-01-15
    • Aida Engineering Ltd.
    • Imanishi, Shozo
    • B30B1/26
    • B30B1/263B30B1/266F16C3/28Y10T74/1667Y10T74/18208Y10T74/2179
    • The crank driving device for press according to the present invention is designed in serial type eccentric structure, in which the eccentric element of crank shaft and the eccentric mechanism to give the second eccentricity are separated in axial direction of the crank shaft. Specifically, in each of the eccentric holes of a pair of rotating bodies supported synchronously and rotatably on basic axial line, each of the shaft ends of crank shaft is relatively rotatably and relatively displaceably engaged in axial direction. The eccentricity is adjusted by relatively rotating crank shaft and rotating bodies, and the relative angle of crank shaft and rotating bodies are maintained at constant value by connecting means after adjustment. Therefore, the slide strokes can be easily adjusted as desired while pressure speed is maintained at constant level by adjusting the eccentricity of crank unit and eccentric holes, and this contributes to compact design of the equipment.
    • 根据本发明的压力机用曲柄驱动装置设计为串联型偏心结构,其中曲轴的偏心元件和偏心机构产生第二偏心度在曲轴的轴向方向上分离。 具体而言,在基本轴线上同时可旋转地支撑的一对旋转体的各偏心孔中,曲柄轴的各轴相对于轴向相对旋转并相对移动地接合。 通过相对旋转的曲轴和旋转体来调节偏心率,调整后通过连接装置将曲轴和旋转体的相对角度保持在恒定值。 因此,通过调整曲柄单元和偏心孔的偏心度,可以容易地调整滑动行程,同时将压力保持在恒定水平,这有助于设备的紧凑设计。
    • 7. 发明公开
    • Wiper system
    • Scheibenwischersystem。
    • EP0585010A2
    • 1994-03-02
    • EP93306384.4
    • 1993-08-12
    • MITSUBA ELECTRIC MANUFACTURING CO., LTD.
    • Sato, Katsutoshi
    • B60S1/16B60S1/24B60S1/18
    • B60S1/185B60S1/245Y10S318/02Y10T74/1667Y10T74/18184Y10T74/182Y10T74/206Y10T74/2179
    • To allow compact design of a wiper system equipped with a wiping angle varying assembly which comprises an actuating motor, an eccentric cam member provided in a path of transmitting the movement of the output end of a wiper motor to a wiper arm, and a control unit for activating the actuating motor so as to move the eccentric cam member and thereby change the range of angle of the wiping movement by altering a configuration of a linkage structure provided between the wiper motor and the wiper arm, the control unit is adapted to activate the eccentric cam member with such a timing that the force transmitted through the linkage structure from the wiper motor to the wiper arm tends to assist the force produced by the actuating motor to move the eccentric cam member in the required direction. Thus, the requirement of the power output of the actuating motor can be reduced, and the actuating motor can be substantially reduced in size. As a result, the design of the wiping angle varying assembly is simplified, and the assembly may be conveniently incorporated in a linkage structure similar in structure to the conventional linkage structure for wiper systems not equipped with any wiping angle varying assembly.
    • 为了实现具有擦拭角度变化组件的擦拭器系统的紧凑设计,其包括致动马达,设置在将刮水器马达的输出端的运动传递到刮水器臂的路径中的偏心凸轮构件以及控制单元 用于启动致动马达以移动偏心凸轮构件,从而通过改变设置在刮水器马达和刮水器臂之间的连杆结构的构造来改变擦拭运动的角度范围,控制单元适于激活 偏心凸轮构件具有这样的定时,使得通过连接结构从刮水器马达传递到刮水器臂的力趋于有助于由致动马达产生的力沿所需方向移动偏心凸轮构件。 因此,可以减少致动马达的功率输出的要求,并且致动马达的尺寸可以显着减小。 结果,简化了擦拭角度变化组件的设计,并且该组件可以方便地结合在结构上类似于与未配备任何擦拭角度变化组件的擦拭器系统的常规联动结构相似的连杆结构中。