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    • 1. 发明专利
    • Magnetostrictive material, and its production method
    • 磁致伸缩材料及其生产方法
    • JP2007084853A
    • 2007-04-05
    • JP2005272381
    • 2005-09-20
    • Tdk CorpTdk株式会社
    • MORI TERUOTAKAHASHI JUNICHI
    • C22C38/00C22C1/04C22C19/00C22C22/00C22C27/04C22C27/06C22C33/02
    • PROBLEM TO BE SOLVED: To provide a magnetostrictive material which has excellent magnetostrictive properties and magnetic permeability by eliminating factors of reducing magnetization as much as possible.
      SOLUTION: The magnetostrictive material has a polycrystal structure, and has a main phase expressed by RT
      2 (wherein, R is at least one of rare earth elements; and T is at least one of transition metal elements), and a rare earth-rich phase in which the ratio of rare earth elements is higher than that in the main phase. When the total composition of the main phase and the rare earth-rich phase is denoted as RT
      x , 1.98≤x≤2.00 is satisfied. When the magnetostrictive material with a polycrystal structure is produced by a powder metallurgical process, sintering is performed in a vacuum for a prescribed period.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:通过尽可能地消除减少磁化的因素来提供具有优异的磁致伸缩特性和磁导率的磁致伸缩材料。 解决方案:磁致伸缩材料具有多晶结构,并且具有由RT 2 表示的主相(其中,R是稀土元素中的至少一种; T是至少一种过渡金属 金属元素)和稀土元素比主相中高的稀土相。 当主相和稀土相的总成分表示为RT x 时,满足1.98≤x≤2.00。 当通过粉末冶金方法制造具有多晶结构的磁致伸缩材料时,在真空中进行规定时间的烧结。 版权所有(C)2007,JPO&INPIT
    • 2. 发明专利
    • Magnetostriction element, manufacturing method thereof, and sensor
    • 磁致伸缩元件及其制造方法和传感器
    • JP2006228775A
    • 2006-08-31
    • JP2005037181
    • 2005-02-15
    • Tdk CorpTdk株式会社
    • MORI TERUOMIYAMA HARUO
    • H01L41/12G01C19/5663G01L1/12H01L41/08H01L41/20H01L41/22H01L41/47
    • PROBLEM TO BE SOLVED: To provide a manufacturing method or the like of a magnetostriction element for easily and reliably performing coating for securing resistance against a high temperature and high pressure and anticorrosiveness without hindering a change in the dimension of the magnetostriction element and without reducing characteristics. SOLUTION: A resin-coated layer 12 is formed by adhering an epoxy resin on the surface of a magnetostriction element body 11 by an electrodeposition method, the epoxy resin makes a number of gaps formed surely enter the magnetostriction element body 11, and the entire magnetostriction element body 11 is coated reliably. As a result, the resin-coated layer 12 is as thick as approximately 20 μm or smaller, but has high durability and has a uniform thickness also at the outer-periphery edge of the magnetostriction element body 11. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种磁致伸缩元件的制造方法等,以容易且可靠地进行涂层,以确保抵抗高温高压和耐腐蚀性的阻力,而不会妨碍磁致伸缩元件的尺寸变化, 没有降低特性。 解决方案:通过电沉积法将环氧树脂粘附在磁致伸缩元件主体11的表面上形成树脂涂层12,环氧树脂使形成的许多间隙确实进入磁致伸缩元件体11,并且 整个磁致伸缩元件主体11被可靠地涂覆。 结果,树脂被覆层12的厚度约为20μm以下,但是在磁致伸缩元件主体11的外周边缘处也具有高的耐久性和均匀的厚度。版权所有(C) )2006年,日本特许厅和NCIPI
    • 3. 发明专利
    • Magnetostrictive pump
    • 磁力泵
    • JP2005155342A
    • 2005-06-16
    • JP2003391126
    • 2003-11-20
    • Tdk CorpTdk株式会社
    • MORI TERUOOTA MASANORI
    • F04B9/00F04B17/00F04B17/04F04B43/04F04B43/12
    • F04B43/04F04B17/00F04B17/04
    • PROBLEM TO BE SOLVED: To provide a magnetostrictive pump with a simple structure, capable of feeding out fluid with high accuracy at high speed while realizing miniaturization, cost reduction, reduction in the number of components or the like.
      SOLUTION: The magnetostrictive pump 10 comprises an approximately cylindrical casing 12, an approximately bar-shaped super-magnetostrictive member 14 arranged inside an inner side space 12A of the casing 12, and first to fourth electromagnetic coils 16A to 16D applying predetermined magnetic field to the super-magnetostrictive member 14 and changing the dimension of the super-magnetostrictive member 14 in a diametrical direction. By moving a portion of the super-magnetostrictive member 14 to be changed in the diametrical direction from one side 14B of the super-magnetostrictive member 14 to the other side 14A of the super-magnetostrictive member 14, fluid is fed out from one side of the inner side space 12A to the other side, via a clearance in the diametrical direction formed along with the change in the diametrical direction.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种具有简单结构的磁致伸缩泵,其能够在实现小型化,降低成本,减少部件数量等的同时高速高精度地输送流体。 解决方案:磁致伸缩泵10包括大致圆筒形壳体12,布置在壳体12的内侧空间12A内的近似棒状的超磁致伸缩构件14以及施加预定磁性的第一至第四电磁线圈16A至16D 超磁致伸缩构件14的尺寸,并且改变超磁致伸缩构件14的直径方向的尺寸。 通过使超磁致伸缩构件14的一部分从超磁致伸缩构件14的一侧14B向径向方向改变到超磁致伸缩构件14的另一侧14A,将流体从 通过沿直径方向的间隙沿直径方向的变化形成内侧空间12A到另一侧。 版权所有(C)2005,JPO&NCIPI