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    • 21. 发明授权
    • Reinforcing bar-binding machine
    • 钢筋绑扎机
    • US07140400B2
    • 2006-11-28
    • US10530750
    • 2003-09-19
    • Yasushi YokochiIchiro KusakariTakahiro NagaokaOsamu Itagaki
    • Yasushi YokochiIchiro KusakariTakahiro NagaokaOsamu Itagaki
    • B21F15/04
    • E04G21/122B65B13/025B65B13/285E04G21/123
    • A reverse rotational number of a binding wire feed mechanism is set such that a binding wire is completely pulled back regardless of a boldness or flexibility of the binding wire, a diameter of a reinforcing bar or the like. A driven gear 14 having a V groove of the binding wire feed mechanism is brought into elastic contact with a main drive gear 13 having a V groove by a spring and the binding wire is fed by pinching the binding wire by the main drive gear 13 having the V groove and the driven gear 14 having the V groove. After feeding out the binding wire to form a loop around the reinforcing bar and clamping a front end of the binding wire by a twist mechanism, the binding wire feed mechanism is rotated reversely and the binding wire is pulled back to be wound around the reinforcing bar. After stopping the binding wire, the main drive gear 13 having the V groove and the driven gear 14 having the V groove are slipped relative to the binding wire to rotate idly and continue to rotate reversely until a predetermined rotational number.
    • 装订装订线进给机构的反向转动数量被设定为使得装订线完全被拉回,而不管装订线的粗体或柔性,钢筋的直径等。 具有装订线进给机构的V形槽的从动齿轮14通过弹簧与具有V形槽的主驱动齿轮13弹性接触,并通过主驱动齿轮13夹紧装订线来进给装订线, V槽和从动齿轮14具有V槽。 在送出捆扎线之后,在钢筋周围形成环,并用扭转机构夹紧装订线的前端,使装订线进给机构反向旋转,并将装订线拉回钢筋 。 在停止装订线之后,具有V槽的主驱动齿轮13和具有V形槽的从动齿轮14相对于装订线滑动以便空转,并继续反向旋转直到预定转数。
    • 22. 发明申请
    • Stranded wire twisting device of reinforcement binding machine
    • 钢筋捆扎机绞线加捻装置
    • US20050005992A1
    • 2005-01-13
    • US10493828
    • 2002-10-24
    • Ichiro KusakariTakahiro Nagaoka
    • Ichiro KusakariTakahiro Nagaoka
    • B21F15/06B25B25/00E04G21/12B21F15/04
    • B21F15/06E04G21/122E04G21/123
    • A twisting shaft 33 and a remover 34 fitted around the twisting shaft 33 are provided with forks 37, 44 at their respective front portions, and hooks 38 bent from front ends of the forks of the twisting shaft in the forward rotational direction are provided. The remover is rotatable by a one-way stopper mechanism in the forward direction only. When the twisting shaft and remover are rotated forward, a binding wire loop is hung on the hooks 38 and twisted. When the twisting shaft is reversely rotated after the completion of the twisting operation, the remover stops being rotated by the one-way stopper mechanism, and the twisting shaft alone is reversely rotated. As a result, the hooks 38 hide themselves behind the forks 44 of the remover 34, and the binding wire engaged with the hooks 38 is pressed by the forks 44 and removed.
    • 设置在扭转轴33周围的扭转轴33和移除器34设置有各自的前部的叉37,44,并且设置有从正转方向的扭转轴的叉的前端弯曲的钩38。 移除器可以通过单向止动机构在向前方向上旋转。 当扭转轴和拆卸器向前旋转时,装订线环挂在钩38上并扭曲。 当扭转轴在扭转操作完成后反转时,通过单向止动机构使拆卸器停止转动,单独的扭转轴反向旋转。 结果,钩38将自己隐藏在移除器34的叉44后面,并且与钩38接合的捆扎线被叉44按压并被移除。
    • 25. 发明授权
    • Electric power tool
    • 电动工具
    • US08198839B2
    • 2012-06-12
    • US12296011
    • 2007-04-04
    • Kouji KatouKazuya TakeuchiIchiro KusakariOsamu ItagakiTakahiro Nagaoka
    • Kouji KatouKazuya TakeuchiIchiro KusakariOsamu ItagakiTakahiro Nagaoka
    • B25F5/00H02P6/08
    • H02P6/22B25F5/02E04G21/122E04G21/123Y10S388/937
    • An electric power tool “A” operates a working part 5 by repeating rotation of a motor 4 in a normal direction and in a reverse direction one or more times. The motor 4 includes a brushless motor. Sensors H for detecting a position of a rotor 15 are provided on the motor 4 so as to be advanced by an electrical angle of 30°±θ° from an intermediate position between respective stator teeth 16 in a direction of the normal rotation of the rotor 15. A control part 20 for controlling the rotation of the motor 4 controls a driving signal of the motor 4 based on the results of detection by the sensors H. Moreover, the control part 20 selects a detection signal of the sensors H so that relation between the rotor 15 and the detection signal of the sensors H is equivalent in either of the normal rotation and the reverse rotation of the rotor 15.
    • 电动工具“A”通过在正常方向和相反方向上反复旋转一次或多次来操作电动机4的工作部件5。 电动机4包括无刷电动机。 用于检测转子15的位置的传感器H设置在电动机4上,从而在各个定子齿16之间的中间位置沿着正向旋转的方向前进30°±& 用于控制马达4的旋转的控制部20基于传感器H的检测结果来控制马达4的驱动信号。此外,控制部20选择传感器H的检测信号,使得 转子15与传感器H的检测信号之间的关系在转子15的正常旋转和反向旋转中的任一方面是相同的。
    • 29. 发明申请
    • ELECTRIC POWER TOOL
    • 电动工具
    • US20090160373A1
    • 2009-06-25
    • US12296011
    • 2007-04-04
    • Kouji KatouKazuya TakeuchiIchiro KusakariOsamu ItagakiTakahiro Nagaoka
    • Kouji KatouKazuya TakeuchiIchiro KusakariOsamu ItagakiTakahiro Nagaoka
    • H02P6/22H02P6/16H02K7/14
    • H02P6/22B25F5/02E04G21/122E04G21/123Y10S388/937
    • An electric power tool “A” operates a working part 5 by repeating rotation of a motor 4 in a normal direction and in a reverse direction one or more times. The motor 4 includes a brushless motor. Sensors H for detecting a position of a rotor 15 are provided on the motor 4 so as to be advanced by an electrical angle of 30°±θ° from an intermediate position between respective stator teeth 16 in a direction of the normal rotation of the rotor 15. A control part 20 for controlling the rotation of the motor 4 controls a driving signal of the motor 4 based on the results of detection by the sensors H. Moreover, the control part 20 selects a detection signal of the sensors H so that relation between the rotor 15 and the detection signal of the sensors H is equivalent in either of the normal rotation and the reverse rotation of the rotor 15.
    • 电动工具“A”通过在正常方向和相反方向上反复旋转一次或多次来操作电动机4的工作部件5。 电动机4包括无刷电动机。 用于检测转子15的位置的传感器H设置在电动机4上,以便在转子的正转方向上从各个定子齿16之间的中间位置前进30°±θ°的电角度 用于控制电动机4的旋转的控制部20基于传感器H的检测结果来控制电动机4的驱动信号。此外,控制部20选择传感器H的检测信号, 在转子15和传感器H的检测信号之间,在转子15的正常旋转和反向旋转中的任意一个中是相同的。