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    • 3. 发明授权
    • Process and apparatus for producing a temperature sensitive element
    • 用于生产温度敏感元件的方法和设备
    • US4347201A
    • 1982-08-31
    • US089737
    • 1979-10-31
    • Masato SagawaWataru Yamagishi
    • Masato SagawaWataru Yamagishi
    • B22F1/00B22F3/14C22C1/04G01K7/36H01F1/00H01F1/01H01F1/055H01L37/04C04B35/50
    • H01F1/0556B22F3/14C22C1/0441G01K7/38H01F1/012Y10S264/58Y10T29/49076
    • A temperature sensitive element comprises fine grain powders which consist of a spin reorientation type ferromagnetic material having a transition temperature range, below which transition temperature range the easy direction of magnetization of the spin reorientation type ferromagnetic material is predetermined in one crystallographic direction thereof and above which transition temperature range the easy direction of magnetization is a predetermined other direction perpendicular to the predetermined one crystallographic direction. The temperature sensitive element is produced by compacting the fine grain powders of a spin reorientation type ferromagnetic material at a temperature higher than the transition temperature range. A polycrystalline rare earth cobalt alloy material made in accordance with the invention can now be used in the field where low Curie point ferrite or where bimetals have been used previously for a thermal valve or a temperature controlling device.
    • 温度敏感元件包括细晶粒,其由具有转变温度范围的自旋重新取向型铁磁材料组成,低于该转变温度范围,旋转重新取向型铁磁材料的易磁化方向在其一个晶体方向上被预先确定,并且其上方 转变温度范围内,容易的磁化方向是垂直于预定的一个晶体方向的预定的其它方向。 温度敏感元件通过在高于转变温度范围的温度下压制自旋重新取向型铁磁材料的细粒粉末来制备。 根据本发明制造的多晶稀土钴合金材料现在可以用于低居里点铁素体或双金属已经用于热阀或温度控制装置的领域。