首页> 外国专利> Opening the air gap to the disk condition super-conductivity body and the said disk condition super-conductivity body which consist of the hot

Opening the air gap to the disk condition super-conductivity body and the said disk condition super-conductivity body which consist of the hot

机译:向由热构成的圆盘状超导体和所述圆盘状超导体开放气隙

摘要

PROBLEM TO BE SOLVED: To provide a designing method for a high temperature superconducting magnetic bearing part suitable for manufacture of a high temperature superconductivity-applying device having optimum magnetic levitation characteristics and magnetic suspension characteristics an which a charge resource amount is usefully and wholly effectively worked and to provide a high temperature superconducting magnetic bearing. ;SOLUTION: A deigning method for a high temperature superconducting magnetic bearing comprises a disc-form superconductor 1 consisting of a superconductor of the 2nd kind; a disc-form magnet body 2 positioned facing the disc-form superconductor 1 with a gap G1 therebetween and axially magnetized. When the disc-form conductor 1 is constituted by a concentric ring-form division method or through combination of the concentric annular division method and radial division method, the disc-form magnet body 2 is selected from the number of concentric annular divisions being the same number as the number of divisions by the concentric annular division method of the disc-form superconductor 1 or the number of annular divisions increased an integral number times as large as the number of divisions.;COPYRIGHT: (C)1998,JPO
机译:解决的问题:提供一种高温超导磁性轴承零件的设计方法,该零件适于制造具有最佳磁悬浮特性和磁悬浮特性的高​​温超导施加装置,并且电荷资源量可以有效地和完全地有效地工作。并提供一种高温超导磁轴承。 ;解决方案:一种用于高温超导磁性轴承的设计方法包括:由第二种超导体组成的盘状超导体1;圆盘状磁体2面对圆盘状超导体1定位,其间具有间隙G1并被轴向磁化。当盘状导体1通过同心环形分割法或通过同心环形分割法和径向分割法的组合而构成时,盘状磁体2选自相同数量的同心环形分割数圆盘状超导体1的同心环形分割法的分割数的数量或环形分割数的增加是分割数的整数倍。;版权:(C)1998,JPO

著录项

  • 公开/公告号JP3920947B2

    专利类型

  • 公开/公告日2007-05-30

    原文格式PDF

  • 申请/专利权人 樋笠 博正;

    申请/专利号JP19960180277

  • 申请日1996-07-10

  • 分类号F16C32/04;

  • 国家 JP

  • 入库时间 2022-08-21 21:08:29

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