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    • 1. 发明专利
    • Electromagnetic rotary electric machine
    • 电磁旋转电机
    • JP2013005487A
    • 2013-01-07
    • JP2011131190
    • 2011-06-13
    • Toyota Motor Corpトヨタ自動車株式会社Toyota Central R&D Labs Inc株式会社豊田中央研究所
    • YAMADA EIJIMIZUTANI RYOJICHINEN SHINTAROHIRAMOTO KENJINAKAI HIDEO
    • H02K1/26H02K19/28
    • H02K3/527H02K1/24H02K19/12
    • PROBLEM TO BE SOLVED: To provide an electromagnetic rotary electric machine that improves holding strength of rotor windings against centrifugal force.SOLUTION: A stator 12 includes a plurality of stator windings 20u, 20v, and 20w wound around teeth 18. A rotor 14 includes: a rotor core 24; a plurality of rotor windings 28n and 28s wound around a plurality of main salient poles 26 of the rotor 14; and diodes, as magnetic property adjusting sections, that circumferentially vary magnetic properties developed in the main salient poles 26 by induced electromotive force generated in the rotor windings 28n and 28s. The rotor 14 has auxiliary salient poles 44 that project from respective circumferential side surfaces of the main salient poles 26. A rotor slot 46 is arranged between each adjacent pair of the main salient poles 26 in a circumferential direction of the rotor 14. Each circumferentially adjacent pair of the auxiliary salient poles 44 in each of the rotor slots 46 is joined to each other in each rotor slot 46. The rotor windings 28n and 28s are at least partially arranged on radially inner sides of the auxiliary salient poles 44.
    • 要解决的问题:提供一种提高转子绕组抵抗离心力的保持强度的电磁旋转电机。 解决方案:定子12包括绕齿18缠绕的多个定子绕组20u,20v和20w。转子14包括:转子芯24; 缠绕在转子14的多个主凸极26上的多个转子绕组28n和28s; 以及通过在转子绕组28n和28s中产生的感应电动势在周向上改变主凸极26中产生的磁特性的二极管作为磁性调节部。 转子14具有从主凸极26的相应圆周侧表面突出的辅助凸极44.转子槽46沿转子14的圆周方向布置在相邻的一对主凸极26之间。每个周向相邻 每个转子槽46中的一对辅助凸极44在每个转子槽46中彼此连接。转子绕组28n和28s至少部分地布置在辅助凸极44的径向内侧上。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Rotary electric machine
    • 旋转电机
    • JP2012165614A
    • 2012-08-30
    • JP2011026016
    • 2011-02-09
    • Toyota Motor Corpトヨタ自動車株式会社
    • YAMADA EIJIKUBO KAORUMIZUTANI RYOJI
    • H02K1/04H02K1/22H02K1/27H02K21/14
    • Y02T10/641
    • PROBLEM TO BE SOLVED: To provide a variable-field rotary electric machine that exercises strong-field control without weakening magnetic flux from permanent magnets.SOLUTION: A rotary electric machine 10 includes: a rotating shaft 12 that is provided rotatably; a rotor core 14 that is fixedly mounted on an outer circumference of the rotating shaft 12; a stator 16 that is arranged on a radially outer side of the rotor core 14; a field yoke 18 that is provided on an outer circumference of the stator 16; and field coils 20 that form magnetic circuits MC2 between the field yoke 18 and the rotor core 14 so as to allow control of an amount of magnetic flux between the rotor core 14 and a stator core 30. The rotor core 14 has: magnets 24 that are arranged in the rotor core 14 with n-poles and s-poles aligned radially; and magnetic pole component members 26 that include magnetic material, form part of the respective magnetic circuits MC2, and are positioned separately from the magnets 24, and side by side with the magnets 24, in a circumferential direction of the rotor core 14. The magnets 24 and the magnetic pole component members 26 are arranged alternatingly in the circumferential direction.
    • 要解决的问题:提供一种在不削弱永磁体的磁通量的情况下进行强场控制的可变场旋​​转电机。 解决方案:旋转电机10包括:可旋转地设置的旋转轴12; 固定地安装在旋转轴12的外周上的转子铁芯14; 设置在转子铁心14的径向外侧的定子16; 设置在定子16的外周的磁轭18; 以及励磁线圈20,其在励磁磁轭18和转子铁心14之间形成磁路MC2,以便控制转子铁芯14和定子铁心30之间的磁通量。转子铁心14具有:磁铁24 设置在转子芯14中,其中n极和s极径向对准; 以及包括磁性材料的磁极部件26,形成各个磁路MC2的一部分,并且与转子铁芯14的圆周方向分别与磁铁24分开并与磁体24并排配置。磁体 24和磁极部件26沿圆周方向交替布置。 版权所有(C)2012,JPO&INPIT
    • 3. 发明专利
    • Superconducting motor
    • 超级电机
    • JP2012143043A
    • 2012-07-26
    • JP2010292592
    • 2010-12-28
    • Aisin Seiki Co LtdToyota Motor Corpアイシン精機株式会社トヨタ自動車株式会社
    • MIZUTANI RYOJIOHASHI YOSHIMASAOKUMURA NOBUAKIISHIDA KENJI
    • H02K55/02
    • Y02T10/641
    • PROBLEM TO BE SOLVED: To provide a superconducting motor that efficiently cools superconducting coils to a desired cryogenic temperature while reducing variations in temperature of the superconducting coils.SOLUTION: The superconducting motor includes a rotatably arranged rotor, and a stator radially opposed to the rotor and having the coils. The superconducting motor includes a refrigerator 14 having capillaries 66 for conducting a low temperature refrigerant therein, and the capillaries 66 include a coil wrapping portion 100 wrapping the coil 36. The coil wrapping portion 100 has a side straight portion 102 disposed along and in thermal contact with a side plate portion 96 of a peripheral portion of the coil 36 directed to one side of the circumference of the stator, an opposite side straight portion 104 disposed along and in thermal contact with an opposite side plate portion 97 of the peripheral portion of the coil 36 directed to the other side of the circumference of the stator, a coupling portion 106 coupling both straight portions 102, 104.
    • 要解决的问题:提供一种超导电动机,其有效地将超导线圈冷却至期望的低温温度,同时减少超导线圈的温度变化。 解决方案:超导电动机包括可旋转地布置的转子和与转子径向相对并具有线圈的定子。 超导电动机包括具有用于在其中导通低温制冷剂的毛细管66的冷藏库14,毛细管66包括缠绕线圈36的线圈包裹部分100.线圈包裹部分100具有沿着热接触设置的侧面直线部分102 线圈36的周边部分的侧板部分96指向定子的圆周的一侧,相对侧的直线部分104沿着与侧边板部分96的周边部分的相对的侧板部分97相互热接触地设置 线圈36指向定子圆周的另一侧,耦合部分106连接两个直线部分102,104。(C)2012,JPO和INPIT
    • 4. 发明专利
    • Wire connection structure for electric motor, and connection method for the same
    • 电动机用线连接结构及其连接方法
    • JP2011004526A
    • 2011-01-06
    • JP2009145715
    • 2009-06-18
    • Aisin Seiki Co LtdToyota Motor Corpアイシン精機株式会社トヨタ自動車株式会社
    • ISOTANI SHIGETAKASAKUMA MASASHIMIZUTANI RYOJI
    • H02K5/22
    • H02K5/225Y10T29/49009Y10T29/49117
    • PROBLEM TO BE SOLVED: To provide a wire connection structure and connection method of an electric motor that is compact with low cost.SOLUTION: A terminal stand insertion hole 41 making the inside communicate with the outside is formed in an electric motor housing 4. Terminals 63a, 63b and 63c of a V-phase, a W-phase and a U-phase, which project from ends of cables 61a, 61b and 61c, penetrate a terminal stand 51 installed on the terminal stand insertion hole 41. A terminal fixing bolt 56 is inserted into the terminals 63a to 63c and the respective coil terminals 22a to 22c and is fastened to a terminal fitting part 23 of a stator 2 while the terminals 63a to 63c are overlapped with the respective coil terminals 22a to 22c connected to the stator coil 22. Thus, the respective terminals 63a to 63c and the respective coil terminals 22a to 22c are conducted. The terminals 63a to 63c bend so that they connect ends of the cables 61a to 61c with the coil terminals 22a to 22c.
    • 要解决的问题:提供一种紧凑且成本低的电动机的线连接结构和连接方法。解决方案:在电动机壳体4中形成有使内部与外部连通的端子台插入孔41。 从电缆61a,61b和61c的端部突出的V相,W相和U相的63a,63b和63c穿过安装在端子台插入孔41上的端子台51。 螺栓56插入端子63a至63c和相应的线圈端子22a至22c中,并且固定到定子2的端子接合部分23,同时端子63a至63c与连接到定子2的各个线圈端子22a至22c重叠 因此,各个端子63a至63c和各个线圈端子22a至22c被导通。 端子63a至63c弯曲,使得它们将电缆61a至61c的端部与线圈端子22a至22c连接。
    • 5. 发明专利
    • Stator and rotary electric machine
    • 定子和旋转电机
    • JP2010279233A
    • 2010-12-09
    • JP2009132303
    • 2009-06-01
    • Aisin Seiki Co LtdToyota Motor Corpアイシン精機株式会社トヨタ自動車株式会社
    • MIZUTANI RYOJIISHIDA KENJI
    • H02K3/34H02K1/04H02K1/18H02K3/44
    • PROBLEM TO BE SOLVED: To provide a stator having a mold resin filled in a slot and insulating paper sheets for ensuring the insulation between coils and preventing the mold resin from oozing, and to provide a rotary electric machine.
      SOLUTION: The stator includes a coil wound around stator teeth 104U, 104W, insulating paper sheets 143, 141 wound around coil plate laminates 144U, 138W positioned in a slot 106 out of the coil, and a mold resin 113 filled in the slot 106. The insulating paper sheets 143, 141 are wound around the coils so that a winding finish end may be superposed on the end of a winding start side, a superposing portion of the insulating paper sheets 143, 141 is disposed on either an outer edge positioned outside of diameter direction of the stator core 102 or a side of the stator core out of the surface of the coil positioned in the slot 106.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供一种定子,其具有填充在槽中的模制树脂和绝缘纸片,以确保线圈之间的绝缘并防止模制树脂渗出,并提供旋转电机。 解决方案:定子包括缠绕在定子齿104U,104W周围的线圈,缠绕在线圈板144U,138W上的绝缘纸片143,141,其位于线圈中的槽106中,并且模制树脂113填充在 绝缘纸片143,141缠绕在线圈上,使得卷绕完成端可以重叠在卷绕起始侧的端部,绝缘纸片143,141的叠置部分设置在外部 边缘定位在定子芯102的直径方向外侧或者定子芯的侧面位于定位在槽106中的线圈的表面之外。(C)2011年,JPO和INPIT
    • 9. 发明专利
    • Electric motor drive device and control method thereof
    • 电动机驱动装置及其控制方法
    • JP2010068597A
    • 2010-03-25
    • JP2008231340
    • 2008-09-09
    • Nagoya Institute Of TechnologyToyota Motor Corpトヨタ自動車株式会社国立大学法人 名古屋工業大学
    • TATEMATSU KAZUTAKAYAMADA EIJIMIZUTANI RYOJIMATSUI NOBUYUKIKOSAKA TAKU
    • H02P27/06B60K6/26B60L9/18B60W10/08B60W20/00H02K21/14
    • PROBLEM TO BE SOLVED: To concurrently achieve miniaturization of a drive device and high output of an electric motor in the drive device for driving the electric motor, which can variably control the amount of armature winding inter-linkage magnetic flux. SOLUTION: The electric motor 10 has a magnetic field pole formed by applying a field current to a field winding 50. The field winding 50 is electrically connected onto a current path between a battery B and a power supply line 107. A controller 100 sets a target value of a voltage step-up current outputted from a voltage step-up converter 120 in accordance with a deviation between a voltage command value and a detection voltage from a voltage sensor 130, and sets a target value of a field increase current supplied to the field winding 50 in a direction of strengthening a field in accordance with a deviation between the current command value and a detection value from a current sensor 112. When the voltage step-up current and the target value of the field increase current are synthesized to generate a current command value, the controller 100 switching-controls switching elements Q1-Q3 so that the detection current from the current sensor 112 may match the current command value. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了同时实现驱动电动机的驱动装置中的驱动装置的小型化和电动机的高输出,其可以可变地控制电枢绕组互连磁通量的量。 解决方案:电动机10具有通过向励磁绕组50施加励磁电流而形成的磁场。励磁绕组50电连接到电池B和电源线107之间的电流路径上。控制器 100根据来自电压传感器130的电压指令值和检测电压之间的偏差,设定从升压转换器120输出的升压电流的目标值,并设定场增加的目标值 根据电流指令值与来自电流传感器112的检测值之间的偏差,在加强场的方向上提供给励磁绕组50的电流。当升压电流和场的目标值增加电流 被合成以产生电流指令值,控制器100切换控制开关元件Q1-Q3,使得来自电流传感器112的检测电流可以与当前指令值相匹配。 版权所有(C)2010,JPO&INPIT