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    • 5. 发明授权
    • Clutch assembly
    • 离合器总成
    • US4951789A
    • 1990-08-28
    • US265334
    • 1988-10-24
    • Shigeki MurataJirou KajinoHitoshi Minabe
    • Shigeki MurataJirou KajinoHitoshi Minabe
    • F16D11/06F16D27/118
    • F16D27/118F16D11/06Y10T74/19279
    • In a clutch assembly, a driven member is driven by a driving member through an engaging or clutch member which is mounted on the driven member movably between a position to be engaged with the driving member and a position to be released from the driving member. The engaging or clutch member is thrust toward the engaged position by a first thrusting force. A releasing member is movable between an active position to abut at one end thereof against the engaging or clutch member and an inactive position to be apart from the engaging member, and is thrust toward the abutting end by a second thrusting force. When the releasing member abuts against the engaging member, the releasing member is first moved in the opposite direction to the second thrusting force direction by a driving force of the driving member to reach a stop position, and then the engaging member is moved in the direction to be disengaged from the driving member by the driving force of the driving member. The engaging or clutch member is further moved, after having been disengaged from the driving member, by the second thrusting force to reach the released position.
    • 在离合器组件中,被驱动构件通过接合或离合器构件被驱动,该接合或离合器构件可在与驱动构件接合的位置和从驱动构件释放的位置之间可移动地安装在从动构件上。 接合或离合器构件通过第一推力推向接合位置。 释放构件可以在其一端抵靠接合或离合构件的活动位置和与接合构件分离的非活动位置之间移动,并且通过第二推力被推向邻接端。 当释放构件抵靠接合构件时,释放构件首先通过驱动构件的驱动力沿与第二推力方向相反的方向移动到达停止位置,然后接合构件沿着方向 通过驱动构件的驱动力与驱动构件脱离接合。 接合或离合器构件在已经从驱动构件脱离之后被第二推动力进一步移动以到达释放位置。
    • 10. 发明授权
    • Method and apparatus for preparing a casing loaded with a plurality of
articles
    • 制备装有多个物品的套管的方法和装置
    • US4138835A
    • 1979-02-13
    • US823116
    • 1977-08-09
    • Takeo TakayanagiMamoru InoueSatoshi KuwanoHitoshi MinabeShunichi Yabuzaki
    • Takeo TakayanagiMamoru InoueSatoshi KuwanoHitoshi MinabeShunichi Yabuzaki
    • B65D85/86B65B5/00B65B5/10B65B61/20B65G59/06H01C17/00H01G13/00B65B35/00
    • B65B5/106B65B61/20
    • A method and apparatus for preparing a casing loaded with a plurality of articles such as small-sized electronic parts for use in the electronic industries, which ensures that the stored parts will be positively and stably aligned in the casing without the possibility of any play or disorientation from their regular positioning within the casing. The casing is provided with a single piece resilient element which is inserted into the casing, the resilient element being designed to resiliently expand against the inner wall surface of the casing to frictionally engage therewith. Thereafter, a plurality of parts are inserted one after another into the casing so that they become stacked in a serially aligned manner inside the casing against the resilient force of the resilient element, thus preparing a casing loaded with a plurality of parts therein stacked in a serially end-to-end resting state. If desired, another resilient element may be inserted into the casing onto the lastly fed part so that the parts stored within the casing may be positively held in their original position.
    • 一种用于制备装有诸如用于电子工业中的小型电子部件的多个物品的壳体的方法和装置,其确保所存储的部件将在壳体内被正确地和稳定地对准,而不会发生任何游隙或 迷失方向从他们在套管内的定期定位。 壳体设置有插入壳体中的单件弹性元件,弹性元件被设计成抵抗壳体的内壁表面弹性地膨胀以与其摩擦接合。 此后,将多个部件一个接一个地插入到壳体中,使得它们克服弹性元件的弹力而以套筒方式堆叠在壳体内部,从而制备装有多个零件的壳体,堆叠在 连续的端对端休息状态。 如果需要,另一个弹性元件可以插入壳体中到最后馈送的部分上,使得存储在壳体内的部件可以被正确地保持在其初始位置。