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    • 61. 发明授权
    • Frictional engaging device and frictional engagement control method
    • 摩擦接合装置和摩擦接合控制方法
    • US06564916B1
    • 2003-05-20
    • US09857352
    • 2001-06-04
    • Atsushi SuzukiMasataka Kawabata
    • Atsushi SuzukiMasataka Kawabata
    • F16D2800
    • F16D57/002B60T13/748F16D25/0638F16D27/14F16D28/00F16D48/064F16D2500/1021F16D2500/1045F16D2500/30402F16D2500/7042
    • A frictional engaging device and frictional engagement control method, wherein the phenomenon of the frictional coefficient of the friction surfaces of a friction engagement device being changed when an electric field is applied to the friction surfaces, is utilized to control the transmittal force. Under the action of a pushing force, friction engagement members are brought into direct contact with each other for frictional engagement. When an electric field is applied between the frictional engagement members, the frictional coefficient of the friction surfaces changes, which means that the transmittal force can be changed. An example of the frictional engagement device is a clutch device (10). A friction member (20) made of insulation material is attached to an input disk (16) and engages an output disk (22). The friction surfaces are lubricated. A control device (30) controls a voltage applying device (28) and applies a voltage to an electrode (26) to provide a desired transmittal force.
    • 摩擦接合装置和摩擦接合控制方法,其中当摩擦表面施加电场时,摩擦接合装置的摩擦面的摩擦系数的变化现象被用来控制传递力。 在推力的作用下,摩擦接合构件彼此直接接触以进行摩擦接合。 当在摩擦接合构件之间施加电场时,摩擦面的摩擦系数发生变化,这意味着能够改变传递力。 摩擦接合装置的一个例子是离合器装置(10)。 由绝缘材料制成的摩擦构件(20)附接到输入盘(16)并接合输出盘(22)。 摩擦表面被润滑。 控制装置(30)控制电压施加装置(28)并向电极(26)施加电压以提供期望的传递力。
    • 70. 发明授权
    • Injection molding apparatus
    • 注塑设备
    • US5664618A
    • 1997-09-09
    • US620027
    • 1996-03-21
    • Masayoshi KaiKazuya SakamotoAtsushi SuzukiNobumasa HamazoeHiroshi MizutaniHiromitsu Suganuma
    • Masayoshi KaiKazuya SakamotoAtsushi SuzukiNobumasa HamazoeHiroshi MizutaniHiromitsu Suganuma
    • B22D17/30B22D17/10
    • B22D17/30Y10S164/90
    • An upper unit of an injecting molding apparatus includes an ingot entry for introducing into the apparatus an ingot to be molded and an ingot heating chamber for heating the ingot supplied via the entry, and a lower unit includes a crusher for crushing the heated ingot and an injecting machine having an axially movable screw shaft for slurring and injecting the crushed ingot into a mold. The upper and lower units are interconnected via a flexible connector unit which is flexible in a vertical direction to allow the lower unit to vertically displace relative to the upper unit. By disengaging the connector unit from the upper unit, the lower unit can be disconnected from and laterally pivoted with respect to the upper unit to permit easy access to both the units. This displacement of the lower unit permits facilitated maintenance operations of the apparatus. A lower door provided for openably closing an ingot exit hole of the heating chamber is a vertically pivotable door that does not require a large operating space.
    • 注射成型装置的上部单元包括用于将要铸造的铸锭引入装置的铸锭入口和用于加热经由所述入口供给的锭的锭加热室,下部单元包括用于破碎加热锭的破碎机和 注射机具有可轴向移动的螺杆轴,用于捣碎并将粉碎的铸锭注入模具中。 上部和下部单元通过柔性连接器单元互连,柔性连接器单元在垂直方向上是柔性的,以允许下部单元相对于上部单元垂直移位。 通过将连接器单元与上部单元分离,下部单元可以相对于上部单元断开并横向枢转,以允许容易地接近两个单元。 下部单元的这种位移允许便于设备的维护操作。 提供用于可开闭地关闭加热室的锭出口的下门是不需要大的操作空间的可垂直枢转的门。