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    • 1. 发明申请
    • MOTOR STATOR AND PHASE COIL PREFORM
    • 电机定子和相位线圈预调
    • US20110210639A1
    • 2011-09-01
    • US13033207
    • 2011-02-23
    • Taku AdaniyaShinichi OkuyamaHiroshi Fukasaku
    • Taku AdaniyaShinichi OkuyamaHiroshi Fukasaku
    • H02K3/28
    • H02K3/28H02K15/0485
    • A stator of a motor includes a stator core having a plurality of teeth forming slots between any two adjacent teeth and a plurality of phase coils provided in the slots, each formed by wave winding and made of a continuous wire. Each phase coil includes a first wave winding bundle and a second wave winding bundle that is passed through a first slot and a second slot. The first slot is located adjacent to one side of a group of slots through which the phase coils other than said each phase coil are passed and the second slot is located adjacent to the other side of the group of slots. The first wave winding bundle is passed through a third slot and a fourth slot. The third slot is located adjacent to the first slot on the opposite side of the first slot from the group of slots and the fourth slot is located adjacent to the second slot on the opposite side of the second slot from the group of slots.
    • 电动机的定子包括具有多个齿的定子芯,所述多个齿形成在任何两个相邻齿之间的槽和设置在槽中的多个相位线圈,每个相位线圈通过波浪缠绕形成并且由连续的线制成。 每相线圈包括通过第一槽和第二槽的第一波束和第二波束。 第一槽位于一组槽的一侧附近,除了所述每个相线圈之外的相位线圈通过所述槽,并且所述第二槽位于所述一组槽的另一侧。 第一波浪绕组束穿过第三槽和第四槽。 第三槽位于第一槽的与槽组相对的第一槽附近,并且第四槽位于与槽组相对的第二槽相对侧的第二槽附近。
    • 2. 发明授权
    • Motor stator and phase coil preform
    • 电机定子和相线圈预制件
    • US08405274B2
    • 2013-03-26
    • US13033207
    • 2011-02-23
    • Taku AdaniyaShinichi OkuyamaHiroshi Fukasaku
    • Taku AdaniyaShinichi OkuyamaHiroshi Fukasaku
    • H02K3/04
    • H02K3/28H02K15/0485
    • A stator of a motor includes a stator core having a plurality of teeth forming slots between any two adjacent teeth and a plurality of phase coils provided in the slots, each formed by wave winding and made of a continuous wire. Each phase coil includes a first wave winding bundle and a second wave winding bundle that is passed through a first slot and a second slot. The first slot is located adjacent to one side of a group of slots through which the phase coils other than said each phase coil are passed and the second slot is located adjacent to the other side of the group of slots. The first wave winding bundle is passed through a third slot and a fourth slot. The third slot is located adjacent to the first slot on the opposite side of the first slot from the group of slots and the fourth slot is located adjacent to the second slot on the opposite side of the second slot from the group of slots.
    • 电动机的定子包括具有多个齿的定子芯,所述多个齿形成在任何两个相邻齿之间的槽和设置在槽中的多个相位线圈,每个相位线圈通过波浪缠绕形成并且由连续的线制成。 每相线圈包括通过第一槽和第二槽的第一波束和第二波束。 第一槽位于一组槽的一侧附近,除了所述每个相线圈之外的相位线圈通过所述槽,并且所述第二槽位于所述一组槽的另一侧。 第一波浪绕组束穿过第三槽和第四槽。 第三槽位于第一槽的与槽组相对的第一槽附近,并且第四槽位于与槽组相对的第二槽相对侧的第二槽附近。
    • 7. 发明授权
    • Grinding method and grinding apparatus
    • 研磨方法和研磨装置
    • US6152804A
    • 2000-11-28
    • US343833
    • 1999-06-30
    • Shinichi Okuyama
    • Shinichi Okuyama
    • B24B7/17B24B49/08B24B49/16B24B49/00
    • B24B49/08B24B49/16B24B7/17
    • A work W is rotated on a lower grinding wheel 13 provided on a work support base 11. Both surfaces of the work W are simultaneously subjected to grinding process by an upper grinding wheel 24 provided on a grinding shaft 22 of a grinding head 21 and the lower grinding wheel 13. The work W is applied with a pressure force of a primary load through the grinding shaft 22 by a piston rod 36 of a primary pneumatic cylinder 35 which is operated by a first air pressure. The work W is also applied with a pressure force of a secondary load through a lever member 43 by a piston rod 46 of the secondary pneumatic cylinder 45 which is operated by a second air pressure higher than the first air pressure. By adjusting the second air pressure, the pressure force is controlled.
    • 工件W在设置在工件支撑基座11上的下砂轮13上旋转。工件W的两个表面同时经由设置在研磨头21的研磨轴22上的上砂轮24进行研磨处理, 下砂轮13.工件W通过由第一空气压力操作的主气缸35的活塞杆36通过研磨轴22施加一次载荷的压力。 工件W还通过杆构件43通过二次气缸45的活塞杆46施加二次负荷的压力,该二次气动缸45由比第一气压高的第二空气压力操作。 通过调节第二空气压力,控制压力。