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    • 1. 发明申请
    • ROTOR PRODUCTION METHOD
    • 转子生产方法
    • US20170012509A1
    • 2017-01-12
    • US15203492
    • 2016-07-06
    • TOYOTA JIDOSHA KABUSHIKI KAISHA
    • Osamu YAMASHITA
    • H02K15/03
    • H02K15/03H01F1/0576H01F1/0577H01F41/0253H01F41/0273Y10T29/49076Y10T29/49078
    • A rotor production method includes: a first step of arranging a plurality of sintered bodies side by side with an insulating lubricant applied to an interface of at least one of the sintered bodies adjacent to each other, and then housing the sintered bodies in a cavity of a molding die such that the sintered bodies are arranged side by side in the cavity, the sintered bodies being precursors of a plurality of split magnets constituting one rare-earth magnet; a second step of turning the sintered bodies into the split magnets by performing hot working to impart magnetic anisotropy to the sintered bodies arranged in the cavity, and producing an integrated magnet in which the split magnets are integrated together with the lubricant interposed therebetween; and a third step of producing a rotor of a motor by inserting the integrated magnet into a magnet slot of the rotor.
    • 一种转子的制造方法,其特征在于,包括以下步骤:将多个烧结体并排地配置有相互邻接的至少一个所述烧结体的界面的绝缘润滑剂,然后将所述烧结体容纳在 将所述烧结体并排设置在所述空腔内的成型模具,所述烧结体为构成1个稀土类磁体的多个分割磁铁的前体; 通过进行热加工使烧结体转动到分散磁体中以赋予布置在空腔中的烧结体赋予磁各向异性的第二步骤,并且制造集成磁体,其中分离磁体与插入其间的润滑剂集成在一起; 以及通过将集成磁体插入转子的磁体槽中来制造电动机的转子的第三步骤。
    • 7. 发明授权
    • Method for manufacturing magnet poles
    • 磁极制造方法
    • US08298469B2
    • 2012-10-30
    • US13367437
    • 2012-02-07
    • Erik GroendahlHenrik Stiesdal
    • Erik GroendahlHenrik Stiesdal
    • H05B6/00B29C71/04H01F3/08H02K15/12
    • H01F41/0273H01F1/0577H01F1/086H01F7/0221Y02E10/725Y10T29/49009Y10T29/49076Y10T29/53161
    • A method for manufacturing sintered magnet poles is described. The mold is filled with a vitrifiable base material powder and closed with a plate. A magnetic field aligns the powder and a plate pressed onto the powder establishes a compact that holds the alignment in place. The compact is sintered to form a sintered magnet pole. The mold forms a protective cover of the sintered magnet pole and the plate forms a base plate of a magnet pole piece. Furthermore, a magnet pole piece is provided which has a magnet pole and a base plate which is fixed to a protective cover so that the base plate and the protective cover surround the magnet pole. The base plate and/or the protective cover of the magnet pole piece has at least one element that provides a geometrical locking of the magnet pole to the base plate and/or the protective cover.
    • 描述了制造烧结磁极的方法。 模具充满玻璃质基材粉末并用板封闭。 磁场使粉末对准,并且压在粉末上的板形成将对准保持在适当位置的紧凑件。 将该压块烧结以形成烧结磁极。 模具形成烧结磁极的保护盖,并且板形成磁极片的基板。 另外,设置有磁极和固定在保护罩上的基板的磁极片,使得基板和保护罩围绕磁极。 磁极片的基板和/或保护盖具有至少一个元件,其提供磁极到基板和/或保护盖的几何锁定。
    • 10. 发明申请
    • Method for manufacturing of magnet poles
    • 磁极制造方法
    • US20090021088A1
    • 2009-01-22
    • US12218709
    • 2008-07-17
    • Erik Groendahl
    • Erik Groendahl
    • H02K1/27H02K15/03H01F41/02
    • H01F41/0273H01F1/0577H01F1/086H01F7/0221Y02E10/725Y10T29/49009Y10T29/49076Y10T29/53161
    • A method for manufacturing sintered magnet poles is described. A vitrifiable base material powder is filled into a mould, the mould is closed with a plate, the mould with the powder is placed in a magnetic field for aligning the powder, the plate is pressed such onto the powder as to establish a compact that holds the alignment in place, and the compact is sintered so as to form a sintered magnet pole. The mould ultimately forms a protective cover of the sintered magnet pole and the plate ultimately forms a base plate of a magnet pole piece. Furthermore, a magnet pole piece is provided which has a magnet pole and a base plate which is fixed to a protective cover so that the base plate and the protective cover surround the magnet pole. The base plate and/or the protective cover of the magnet pole piece has at least one element that provides a geometrical locking of the magnet pole to the base plate and/or the protective cover.
    • 描述制造烧结磁极的方法。 将可玻璃化的基材粉末填充到模具中,用板将模具关闭,将具有粉末的模具放置在用于对准粉末的磁场中,将板压在粉末上以形成保持 对准就位,并且将该压块烧结以形成烧结磁极。 模具最终形成烧结磁极的保护盖,最终形成磁极片的基板。 另外,设置有磁极和固定在保护罩上的基板的磁极片,使得基板和保护罩围绕磁极。 磁极片的基板和/或保护盖具有至少一个元件,其提供磁极到基板和/或保护盖的几何锁定。