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    • 3. 发明授权
    • Rotor for brushless motor and brushless motor
    • 无刷电机转子和无刷电机
    • US07372181B2
    • 2008-05-13
    • US11099515
    • 2005-04-06
    • Yoshikazu KinashiMasatoshi Nakao
    • Yoshikazu KinashiMasatoshi Nakao
    • H02K1/22H02K1/27H02K1/28
    • H02K1/2733
    • A rotor for a brushless motor which can securely prevent an idle running and a scattering of a magnet while restricting a manufacturing cost as low as possible. The rotor is provided with a sintered ring magnet in which not-ground recess portions are formed in an axial direction of a inner peripheral surface in correspondence to a magnetic pole, and a portion between the recess portions is ground in an inner peripheral surface having a desired inner diameter, a rotor yoke in which convex portions each having a larger diameter than the inner diameter of the sintered ring magnet are formed in an axial direction of an outer peripheral surface in correspondence to the recess portion, and a through hole is pierced in an axial center, and which is concentrically adhered to the sintered ring magnet by fitting the recess portions and the convex portions, and a shaft inserted and fitted to the through hole of the rotor yoke.
    • 一种用于无刷电动机的转子,其可以可靠地防止空转和磁体的飞散,同时限制制造成本尽可能低。 转子设置有烧结环形磁铁,其中在与磁极相对应的内周面的轴向方向上形成未研磨的凹部,并且凹部之间的部分在具有 所需的内径,与所述凹部对应地在与所述凹部对应的外周面的轴向上形成有比所述烧结环磁体的内径大的凸部的转子磁轭,并且将贯通孔穿入 轴向中心,并且通过装配凹部和凸部而与烧结环磁体同心地粘合,以及插入并嵌合到转子轭的通孔的轴。
    • 5. 发明授权
    • Stator and brushless motor
    • 定子和无刷电机
    • US07408281B2
    • 2008-08-05
    • US11178402
    • 2005-07-12
    • Yoshikazu Kinashi
    • Yoshikazu Kinashi
    • H02K3/28H02K3/18
    • H02K3/28H02K1/148H02K21/16
    • A technique of facilitating a coil winding work by continuously winding coils in the same direction, in a stator in which a plurality of coils constituting a coil group of the same phase are respectively arranged so as to include positions at which phases of induction voltage are different, whereby coil groups of three phases are disposed in a ring shape. A stator (102) of the invention has a structure in that a pair of coils (21U1, 21U4) and coils (21U2, 21U3) in which phases of induction voltage are identical in a plurality of coils (21U1 to 21U4) constituting a U-phase coil group (21U) are set as different divided groups, the respective coils (21U1, 21U4) and coils (21U2, 21U3) in the divided group are continuously wound in the same winding direction while arranging crossovers (26U1, 26U3) respectively between the coils (21U1, 21U4) and between the coils (21U2, 21U3), the divided groups are connected in parallel, and a V phase and a W phase are executed in the same manner, whereby lead wires of three-phase coil groups (21U, 21V, 21W) are star connected.
    • 在构成相位相位线圈组的多个线圈分别配置有包括感应电压相位不同的位置的定子中,通过在同一方向连续地卷绕线圈来促进线圈绕组工作的技术 由此三相的线圈组以环状设置。 本发明的定子(102)具有以下结构:在多个线圈中感应电压相位相同的一对线圈(21U 1,21 U 4)和线圈(21U 2,21 U 3) 构成U相线圈组(21U)的构成(21U 1〜21U 4)的各线圈(21U 1,21U 4)和线圈(21U 2,21U 3) 在分割组中,分别在线圈(21U 1,21U 4)之间和线圈(21U 2,21U 3)之间分别布置交叉(26U 1,26 U 3) 分割组并联连接,以相同的方式执行V相和W相,由此三相线圈组(21U,21V,21W)的引线星形连接。
    • 6. 发明申请
    • Stator and brushless motor
    • 定子和无刷电机
    • US20060022544A1
    • 2006-02-02
    • US11178402
    • 2005-07-12
    • Yoshikazu Kinashi
    • Yoshikazu Kinashi
    • H02K1/00H02K3/00
    • H02K3/28H02K1/148H02K21/16
    • The invention provides a technique of facilitating a coil winding work by continuously winding coils in the same direction, in a stator in which a plurality of coils constituting a coil group of the same phase are respectively arranged so as to include positions at which phases of induction voltage are different, whereby coil groups of three phases are disposed in a ring shape. A stator (102) of the invention has a structure in that a pair of coils (21U1, 21U4) and coils (21U2, 21U3) in which phases of induction voltage are identical in a plurality of coils (21U1 to 21U4) constituting a U-phase coil group (21U) are set as different divided groups, the respective coils (21U1, 21U4) and coils (21U2, 21U3) in the divided group are continuously wound in the same winding direction while arranging crossovers (26U1, 26U3) respectively between the coils (21U1, 21U4) and between the coils (21U2, 21U3), the divided groups are connected in parallel, and a V phase and a W phase are executed in the same manner, whereby lead wires of three-phase coil groups (21U, 21V, 21W) are star connected.
    • 本发明提供了一种通过在相同方向上连续地卷绕线圈的线圈绕组工作的方法,其中构成相同相位线圈组的多个线圈分别布置成包括感应相位的位置 电压不同,由此三相线圈组以环形设置。 本发明的定子(102)具有以下结构:在多个线圈中感应电压相位相同的一对线圈(21U 1,21 U 4)和线圈(21U 2,21 U 3) 构成U相线圈组(21U)的构成(21U 1〜21U 4)的各线圈(21U 1,21U 4)和线圈(21U 2,21U 3) 在分割组中,分别在线圈(21U 1,21U 4)之间和线圈(21U 2,21U 3)之间分别布置交叉(26U 1,26 U 3) 分割组并联连接,以相同的方式执行V相和W相,由此三相线圈组(21U,21V,21W)的引线星形连接。
    • 7. 发明申请
    • Rotor for brushless motor and brushless motor
    • 无刷电机转子和无刷电机
    • US20050225190A1
    • 2005-10-13
    • US11099515
    • 2005-04-06
    • Yoshikazu KinashiMasatoshi Nakao
    • Yoshikazu KinashiMasatoshi Nakao
    • H02K29/00H02K1/27H02K7/00H02K21/14
    • H02K1/2733
    • The invention provides a means which can securely prevent an idle running and a scattering of a magnet while restricting a manufacturing cost as low as possible, in a rotor used in a brushless motor. A rotor (101) is provided with a sintered ring magnet (12) in which not-ground recess portions (12a) are formed in an axial direction of a inner peripheral surface in correspondence to a magnetic pole, and a portion between the recess portions (12a) is ground in an inner peripheral surface (12b) having a desired inner diameter, a rotor yoke (11) in which convex portion (11b) having a larger diameter than the inner diameter (r4) of the sintered ring magnet (12) are formed in an axial direction of an outer peripheral surface in correspondence to the recess portion (12a), and a through hole (11a) is pierced in an axial center, and which is concentrically adhered to the sintered ring magnet (12) by fitting the recess portion (12a) and the convex portion (11b), and a shaft (10) inserted and fitted to the through hole (11a) of the rotor yoke (11).
    • 本发明提供了一种在无刷电动机中使用的转子中可以可靠地防止磁体的怠速行驶和飞散,同时将制造成本尽可能低地限制在一起的装置。 转子(101)设置有烧结环形磁铁(12),其中在与磁极相对应的内周面的轴向方向上形成未接地的凹部(12a),凹部 在具有期望内径的内周面(12b)中研磨部分(12a),转子轭(11),其中具有比所述内径的内径(r 4)大的直径的凸部(11b) 烧结环形磁体(12)沿着与凹部(12a)对应的外周面的轴向形成,并且贯通孔(11a)在轴向中心被刺穿,并且同心地粘附到 通过安装凹部(12a)和凸部(11b)的烧结环形磁铁(12)以及插入并嵌合到转子磁轭(11)的通孔(11a)上的轴(10)。