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MAGNET ARRAYS

机译:磁铁阵列

摘要

Method and device for self-regulated flux transfer from a source of magnetic energy into one or more ferromagnetic work pieces, wherein a plurality of magnets, each having at least one N-S pole pair defining a magnetization axis, are disposed in a medium having a first relative permeability, the magnets being arranged in an array in which gaps of predetermined distance are maintained between neighboring magnets in the array and in which the magnetization axes of the magnets are oriented such that immediately neighboring magnets face one another with opposite polarities, such arrangement representing a magnetic tank circuit in which internal flux paths through the medium exist between neighboring magnets and magnetic flux access portals are defined between oppositely polarized pole pieces of such neighboring magnets, and wherein at least one working circuit is created which has a reluctance that is lower than that of the magnetic tank circuit by bringing one or more of the magnetic flux access portals into close vicinity to or contact with a surface of a ferromagnetic body having a second relative permeability that is higher than the first relative permeability, whereby a limit of effective flux transfer from the magnetic tank circuit into the working circuit will be reached when the work piece approaches magnetic saturation and the reluctance of the work circuit substantially equals the reluctance of the tank circuit.
机译:用于从磁能源到一个或多个铁磁工件的自调节磁通量传输的方法和装置,其中多个磁体(每个磁体至少具有一个定义磁化轴的NS极对)设置在具有第一磁体的介质中相对磁导率,将磁体排列成一个阵列,在阵列中的相邻磁体之间保持预定距离的间隙,并且将磁体的磁化轴定向为使得相邻的磁体立即以相反的极性相互面对。一种磁罐电路,其中在相邻磁体之间存在通过介质的内部磁通路径,并且在此类相邻磁体的相反极化的极靴之间定义了磁通量访问入口,并且其中至少一个工作电路的磁阻低于通过引入一个或多个磁通量来获得磁储能电路的接近或接近第二相对磁导率高于第一相对磁导率的铁磁体表面的入口,从而当磁通回路进入工作回路时,将达到有效磁通量传递的极限。工件接近磁饱和,并且工件回路的磁阻基本上等于储能回路的磁阻。

著录项

  • 公开/公告号US2015042428A1

    专利类型

  • 公开/公告日2015-02-12

    原文格式PDF

  • 申请/专利权人 MAGSWITCH TECHNOLOGY WORLDWIDE PTY LTD;

    申请/专利号US201414508387

  • 发明设计人 FRANZ KOCIJAN;

    申请日2014-10-07

  • 分类号H01F7/02;

  • 国家 US

  • 入库时间 2022-08-21 15:25:27

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