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    • 3. 发明授权
    • Accessory drive system connected to an internal combustion engine
    • 连接到内燃机的附件驱动系统
    • US08183722B2
    • 2012-05-22
    • US12542128
    • 2009-08-17
    • Shigemitsu AkutsuSatoyoshi OyaKota KasaokaNoriyuki Abe
    • Shigemitsu AkutsuSatoyoshi OyaKota KasaokaNoriyuki Abe
    • H02K37/00H02K15/00H02K16/02
    • H02K16/02H02K19/103H02K21/14
    • An accessory drive system which is capable of preventing the driving efficiency thereof from being lowered and achieving simplified construction, and reduction of the size and manufacturing costs. The system has a rotating machine including a first rotor, a second rotor, and a stator. The first rotor is formed by magnetic poles circumferentially arranged, with each two adjacent ones having different polarities. The stator has an armature row for generating a rotating magnetic pole that circumferentially rotates, between the armature and magnetic pole rows. The second rotor is formed by soft magnetic material elements circumferentially arranged with space, and disposed between the magnetic pole and armature rows. A ratio between the number of the armature magnetic poles, that of the magnetic poles, and that of the soft magnetic material elements is set to 1:m:(1+m)/2(m≠1.0).
    • 能够防止其驱动效率降低并且实现简化结构以及尺寸和制造成本的减小的附件驱动系统。 该系统具有包括第一转子,第二转子和定子的旋转机械。 第一转子由周向布置的磁极形成,每个两个相邻的转子具有不同的极性。 定子具有用于产生在电枢和磁极列之间周向旋转的旋转磁极的电枢排。 第二转子由沿周向布置有空间的软磁材料元件形成,并且设置在磁极和电枢列之间。 电枢磁极数与磁极的数量与软磁性体的数量之比为1:m:(1 + m)/ 2(m≠1.0)。
    • 10. 发明申请
    • POWER PLANT
    • 发电厂
    • US20110034282A1
    • 2011-02-10
    • US12988822
    • 2009-03-10
    • Shigemitsu AkutsuNoriyuki AbeSatoyoshi OyaKota Kasaoka
    • Shigemitsu AkutsuNoriyuki AbeSatoyoshi OyaKota Kasaoka
    • F01B21/00F02B73/00F16H3/72
    • B60K6/26B60K6/365B60K6/383B60K6/448B60K6/543B60L11/123B60L11/14H02K7/006H02K16/02H02K21/14Y02T10/6217Y02T10/6243Y02T10/641Y02T10/7077
    • A power plant which is capable of enhancing the driving efficiency and the power-generating efficiency thereof. In the power plant 1, the output shaft 3a of a heat engine 3 is connected to driven parts DW and DW via a first transmission 20. A rotating machine 31 includes a first rotor 34 having a magnetic pole row that has each two adjacent magnetic poles 34a so disposed as to have polarities different from each other, a stator 33 having an armature row that is disposed in a manner opposed to the magnetic pole row, for generating a rotating magnetic field between the armature row and the magnetic pole row by a predetermined plurality of armature magnetic poles, and a second rotor 35 having a soft magnetic material element row that is formed by a plurality of soft magnetic material elements 35a arranged in a manner spaced from each other, and is disposed between the magnetic pole row and the armature row. The ratio between the number of the armature magnetic poles, the number of the magnetic poles 34a, and the number of the soft magnetic material elements 35a is set to 1:m:(1+m)/2 (m≠1.0). One of the first and second rotors 34 and 35 is connected to the output shaft 3a of the heat engine 3, and the other thereof is connected to the driven parts DW and DW.
    • 能够提高驱动效率和发电效率的发电厂。 在发电厂1中,热机3的输出轴3a经由第一变速器20与驱动部DW,DW连接。旋转机31包括具有磁极列的第一转子34,该磁极列具有两个相邻的磁极 34a具有彼此不同的极性的定子33,具有以与磁极列相对的方式设置的电枢列的定子33,用于在电枢列和磁极列之间产生旋转磁场预定的 多个电枢磁极,以及第二转子35,其具有由以相互隔开的方式配置的多个软磁性体元件35a形成的软磁性体元件列,并配置在该磁极列与该电枢之间 行。 电枢磁极的数量,磁极数34a与软磁体35a的数量之比设定为1:m:(1 + m)/ 2(m≠1.0)。 第一和第二转子34和35中的一个连接到热机3的输出轴3a,另一个连接到从动部分DW和DW。