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    • 3. 发明专利
    • Rotor for surface magnet affixed rotary electric machine and manufacturing method thereof
    • 表面磁铁旋转电机转子及其制造方法
    • JP2014072971A
    • 2014-04-21
    • JP2012216754
    • 2012-09-28
    • Toshiba Industrial Products Manufacturing Corp東芝産業機器製造株式会社
    • SHIMOZU HISAAKITANIGUCHI MITSUHIROHORAI HIROSHIYAMADA TOYONOBUKAKIUCHI TAKEOSHINODA YOSHIROKAWASE HIROAKIOYACHI TERUO
    • H02K1/27H02K15/03
    • PROBLEM TO BE SOLVED: To provide a rotor for a surface magnet affixed rotary electric machine capable of sufficiently securing reliability by fixing a plate permanent magnet around an outer circumference of a main part of the rotor stably for a long time, and a manufacturing method capable of improving productivity by suppressing the time required for manufacturing and inspection steps as further as possible.SOLUTION: A rotor for a surface magnet affixed rotary electric machine comprises, in a rotor block for each block, a rotor main part which is formed cylindrical and fixed to a rotary shaft, and a plurality of plate permanent magnets which are provided on a cylinder surface of the rotor main part as many as poles in a shaft circumferential direction of the rotary shaft, and of which the rear face is affixed to the cylinder surface of the rotor main part. The rotor for the surface magnet affixed rotary electric machine also comprises a multiple stage skew type rotor main body which is configured by fixing a plurality of rotor blocks to the rotary shaft while displacing the arrangement center of the plate permanent magnets step by step for each block in the shaft circumferential direction of the rotary shaft. The rotor for the surface magnet affixed rotary electric machine further comprises a cover which is configured by shrinking a cylindrical plate of a non-magnetic substance in a radial direction of the rotary shaft, covers an outer surface of the rotor block of all the blocks and is adhered to outer surfaces of all the plate permanent magnets provided in the rotor blocks of all the blocks.
    • 要解决的问题:提供一种能够通过将转子式永磁体固定在转子的主要部分的外周长期稳定地固定的可靠性来确保可靠性的表面磁体固定式旋转电机的转子, 通过尽可能地抑制制造和检查步骤所需的时间来提高生产率。解决方案:用于表面磁体的旋转电机的转子在每个块的转子块中包括形成为圆柱形和固定的转子主体 旋转轴和多个板永磁体,其设置在转子主体的气缸表面上,在旋转轴的轴圆周方向上具有极数,并且其后表面固定到气缸表面 的转子主体部分。 用于表面磁体固定的旋转电机的转子还包括多级倾斜型转子主体,其通过将多个转子块固定到旋转轴而将板永磁体的排列中心逐步移位, 在旋转轴的轴圆周方向上。 用于表面磁体固定旋转电机的转子还包括通过在旋转轴的径向收缩非磁性物质的圆柱形板而构成的盖,覆盖所有块的转子块的外表面, 粘附到设置在所有块的转子块中的所有板永磁体的外表面。
    • 8. 发明专利
    • THIN PLATE FEEDING DEVICE
    • JPH06106273A
    • 1994-04-19
    • JP25625392
    • 1992-09-25
    • TOSHIBA CORP
    • TANIGUCHI MITSUHIRO
    • B21D43/09B21C47/18B30B15/30B65H23/188B65H43/00G01B5/04
    • PURPOSE:To fix the slacking amount of a slacking part of a thin plate. CONSTITUTION:The thin plate is sent to a working part when a servo motor 43 of a feeding mechanism on a working side is started. The feeding amount of the thin plate by the feeding mechanism on the working side is detected by an encoder 46 by which the rotating rate of a pinching roller is detected and the detecting signal is transmitted to a counter 53 of a feeding mechanism on a supplying side. When the detecting signal is transmitted from the encoder 46 of the feeding mechanism on the working side to the counter 53 of the feeding mechanism on the supplying side, a driving signal Sd2 by which a servo motor 38 is driven is transmitted from the counter 53. Thus, when the servo motor 43 on the working side is started, the servo motor 38 on the supplying side is synchronously started and the feeding length of the thin plate sent from the working side to the working part is equal to the feeding length of the thin plate sent from a coiler on the supplying side. Therefore, the slacking amount on the slacking part of the thin plate is always maintained constant.
    • 9. 发明专利
    • LOAD ELEVATING DEVICE
    • JPH05229800A
    • 1993-09-07
    • JP3248592
    • 1992-02-20
    • TOSHIBA CORP
    • TANIGUCHI MITSUHIRONAKANO MASANORI
    • B66F19/00
    • PURPOSE:To improve the workability and safety by having a control circuit constituted by the means calculating a stop position memory part and the command position of an elevating mechanism comparatively and a calculation function stopping at the set stop position. CONSTITUTION:When a command lever is operated, a speed command SA is outputted from a position commander 11 connected thereto and digitalized by a V/F converter 12 and can change the count value of a target counter 13. The position detection signal of the position detector 9 of the motor for driving elevatingly is inputted into a present value counter 16 and the position deviation is found out always comparing so as to always become the position being commanded by the target counter 13 and the deviation is converted analogically by a D/A converter 15 and outputted to a drive device 10 as a drive signal X and the elevating mechanism acts elevatingly by a drive speed in proportion to the drive signal X. When the load reaches a position to be stopped, a stop position is memorized into a stop position memory part 19 when a set switch 20 is operated and thereafter the elevating mechanism is stopped automatically at this stop position.