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    • 4. 发明授权
    • Permanent magnet electric motor
    • 永磁电动机
    • US08624457B2
    • 2014-01-07
    • US13130206
    • 2009-11-19
    • Kazuto SakaiYutaka HashibaNorio TakahashiKazuaki Yuuki
    • Kazuto SakaiYutaka HashibaNorio TakahashiKazuaki Yuuki
    • H02K21/12
    • H02K1/2766
    • An increase of the magnetization current can be prevented during demagnetization and magnetization, and a variable speed operation can be achieved at a high power output over a wide range of from a low speed to a high speed. A rotor (1) is configured by a rotor core (2), a variable magnetic force magnet (3) and a fixed magnetic force magnet (4). A variable magnetic force magnet (3) and a fixed magnetic force magnet (4a) are overlapped in the magnetization direction thereof to form a series of magnets. The series of magnets is located within the rotor core at a position where the magnetization direction is in the direction of a d-axis. On either side of the series of magnets of the variable magnetic force magnet (3) and the fixed magnetic force magnet (4a), fixed magnetic force magnets (4b, 4b) are located at a position where the magnetization direction is in the direction of the d-axis. When the flux linkage of the variable magnetic force magnet is reduced, a current of an armature coil allows a magnetic field to act in the reverse direction to the magnetization direction of the variable magnetic force magnet. When the flux linkage of the variable magnetic force magnet is increased, a current of the armature coil allows a magnetic field to act in the same direction as the magnetization direction of the variable magnetic force magnet.
    • 在退磁和磁化期间可以防止磁化电流的增加,并且可以在从低速到高速的宽范围内的高功率输出下实现可变速度操作。 转子(1)由转子铁芯(2),可变磁力磁铁(3)和固定磁力磁铁(4)构成。 可变磁力磁体(3)和固定磁力磁铁(4a)在其磁化方向上重叠以形成一系列磁体。 一系列磁体位于转子芯内的磁化方向为d轴方向的位置。 在可变磁力磁铁(3)和固定磁力磁铁(4a)的一系列磁铁的两侧,固定磁力磁铁(4b,4b)位于磁化方向为 d轴。 当可变磁力磁铁的磁链减小时,电枢线圈的电流允许磁场沿与可变磁力磁铁的磁化方向相反的方向作用。 当可变磁力磁铁的磁通增加时,电枢线圈的电流允许磁场沿与可变磁力磁铁的磁化方向相同的方向起作用。
    • 6. 发明申请
    • PERMANENT MAGNET ELECTRIC MOTOR
    • 永磁电机
    • US20120091848A1
    • 2012-04-19
    • US13130206
    • 2009-11-19
    • Kazuto SakaiYutaka HashibaNorio TakahashiKazuaki Yuuki
    • Kazuto SakaiYutaka HashibaNorio TakahashiKazuaki Yuuki
    • H02K1/27
    • H02K1/2766
    • An increase of the magnetization current can be prevented during demagnetization and magnetization, and a variable speed operation can be achieved at a high power output over a wide range of from a low speed to a high speed. A rotor (1) is configured by a rotor core (2), a variable magnetic force magnet (3) and a fixed magnetic force magnet (4). A variable magnetic force magnet (3) and a fixed magnetic force magnet (4a) are overlapped in the magnetization direction thereof to form a series of magnets. The series of magnets is located within the rotor core at a position where the magnetization direction is in the direction of a d-axis. On either side of the series of magnets of the variable magnetic force magnet (3) and the fixed magnetic force magnet (4a), fixed magnetic force magnets (4b, 4b) are located at a position where the magnetization direction is in the direction of the d-axis. When the flux linkage of the variable magnetic force magnet is reduced, a current of an armature coil allows a magnetic field to act in the reverse direction to the magnetization direction of the variable magnetic force magnet. When the flux linkage of the variable magnetic force magnet is increased, a current of the armature coil allows a magnetic field to act in the same direction as the magnetization direction of the variable magnetic force magnet.
    • 在退磁和磁化期间可以防止磁化电流的增加,并且可以在从低速到高速的宽范围内的高功率输出下实现可变速度操作。 转子(1)由转子铁芯(2),可变磁力磁铁(3)和固定磁力磁铁(4)构成。 可变磁力磁体(3)和固定磁力磁铁(4a)在其磁化方向上重叠以形成一系列磁体。 一系列磁体位于转子芯内的磁化方向为d轴方向的位置。 在可变磁力磁铁(3)和固定磁力磁铁(4a)的一系列磁铁的两侧,固定磁力磁铁(4b,4b)位于磁化方向为 d轴。 当可变磁力磁铁的磁链减小时,电枢线圈的电流允许磁场沿与可变磁力磁铁的磁化方向相反的方向作用。 当可变磁力磁铁的磁通增加时,电枢线圈的电流允许磁场沿与可变磁力磁铁的磁化方向相同的方向起作用。
    • 9. 发明申请
    • PERMANENT-MAGNET-TYPE ROTATING ELECTRICAL MACHINE
    • 永磁式旋转电机
    • US20100327787A1
    • 2010-12-30
    • US12918770
    • 2009-02-16
    • Kazuto SakaiKazuaki Yuuki
    • Kazuto SakaiKazuaki Yuuki
    • H02P6/08H02K1/27H02K15/00B23P19/00
    • H02K1/276H02K1/2766H02P21/22Y10T29/49009Y10T29/49822
    • The present invention provides a permanent-magnet-type rotating electrical machine capable of realizing variable-speed operation in a wide range from low speed to high speed at high output and improving, in a wide operating range, efficiency, reliability, and productivity. A narrow magnetic path 11 is formed in a rotor core 2 of a rotor 1 at an inter-pole yoke that magnetically connects adjacent pole core portions 7 to each other, so that the narrow magnetic path is magnetically saturated with flux of a magnetic field created by a predetermined magnetizing current passed to an armature coil 21. Each of first permanent magnets 3 at each of the pole core portions 7 is magnetized with a magnetic field created by a magnetizing current passed to the armature coil 21, to irreversibly change the flux amount of the first permanent magnet.
    • 本发明提供一种永磁式旋转电机,能够实现从低速到高速,高输出的宽范围内的变速操作,并且在广泛的运行范围,效率,可靠性和生产率方面得到改善。 窄磁路11形成在转子1的转子铁心2中的磁极彼此相互磁极连接的极间磁轭处,使得窄磁路被产生的磁场的磁通量磁饱和 通过预定的通过电枢线圈21的磁化电流。各磁极部7的每个第一永久磁铁3被通过电枢线圈21的磁化电流产生的磁场磁化,不可逆地改变磁通量 的第一个永久磁铁。
    • 10. 发明申请
    • PERMANENT MAGNET ROTATING ELECTRICAL MACHINE AND PERMANENT MAGNET MOTOR DRIVE SYSTEM
    • 永磁电机和永磁电机驱动系统
    • US20100060223A1
    • 2010-03-11
    • US12593146
    • 2007-12-07
    • Kazuto SakaiKazuaki Yuuki
    • Kazuto SakaiKazuaki Yuuki
    • H02P7/06H02K21/14
    • H02P21/06H02K1/2766H02P2207/05Y10T29/49009Y10T29/49822
    • A permanent magnet rotating electrical machine capable of conducting a variable speed operation at high output in a wide range from low speed to high speed and improving efficiency and reliability in a wide operating range. Two kinds of permanent magnets having different shapes or different magnetic characteristics are embedded in a rotor core, to form a magnetic pole. The permanent magnets arranged at the magnetic pole include a permanent magnet whose product of coercive force and thickness along a magnetizing direction is small and the permanent magnet whose product of coercive force and thickness along the magnetizing direction is large. A magnetic field created by passing a current to an armature coil for a short time is used to irreversibly magnetize the permanent magnet whose product of coercive force and thickness along magnetizing direction is small, thereby changing a total linkage flux amount, and a positive d-axis current is passed when torque is large.
    • 一种永磁式旋转电机,能够在从低速到高速的宽范围内以高输出进行变速运转,并能在较宽的运行范围内提高效率和可靠性。 将具有不同形状或不同磁特性的两种永磁体嵌入转子铁芯中,以形成磁极。 设置在磁极上的永磁体包括永磁体,其矫顽力和沿磁化方向的厚度的乘积小,并且永久磁铁的矫顽力和沿着磁化方向的厚度的乘积大。 使用通过使电流线圈短时间流过电流而产生的磁场,使永久磁铁不可逆地磁化,永久磁铁的矫顽力和沿磁化方向的厚度乘积小,从而改变总的交链磁通量, 当转矩大时,轴电流通过。