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    • 2. 发明授权
    • Nut-prefixed connector
    • 螺母前置连接器
    • US06293823B1
    • 2001-09-25
    • US09677025
    • 2000-09-29
    • Akira Kasuga
    • Akira Kasuga
    • H01R1373
    • H01R12/7047
    • A nut-fixing part 20 formed in a housing 10 has a nut-holding room 26, where a nut 30 is insertable and detachable by a movement in a direction perpendicular to the thickness direction of the nut 30. At the entrance of the nut-holding room 26, a projection 27 is provided to prevent the inserted nut 30 from sliding out. By this construction, this type of connector can be miniaturized further. In addition, when this connector mounted on a circuit board is heated in a furnace for soldering electrical connections, even if the housing experiences a stress relief, there is no possibility of any nut falling off from the housing.
    • 形成在壳体10中的螺母固定部20具有螺母保持室26,螺母30可以通过沿与螺母30的厚度方向垂直的方向的移动而被插入和拆卸。在螺母固定部20的入口处, 保持室26设置有突起27,以防止插入的螺母30滑出。 通过这种结构,这种类型的连接器可以进一步小型化。 此外,当安装在电路板上的连接器在用于焊接电气连接的炉中被加热时,即使壳体经受应力消除,也不可能有任何螺母从壳体上脱落。
    • 9. 发明授权
    • Process for preparing ferromagnetic metal powder and a magnetic
recording medium including the powder
    • 制备铁磁性金属粉末的方法和包括该粉末的磁记录介质
    • US4481253A
    • 1984-11-06
    • US448651
    • 1982-12-10
    • Akihiro MatsufujiShizuo UmemuraAkira KasugaHajime MiyatukaGoro Akashi
    • Akihiro MatsufujiShizuo UmemuraAkira KasugaHajime MiyatukaGoro Akashi
    • B22F9/22G11B5/706H01F1/06H01F10/02
    • B22F9/22G11B5/70615H01F1/065Y10S428/90Y10T428/25Y10T428/265Y10T428/266Y10T428/31678
    • A process for preparing a ferromagnetic metal powder and a magnetic recording medium utilizing that powder are disclosed. The ferromagnetic metal powder is prepared by heat-treating an acicular iron oxyhydroxide or an acicular iron oxide powder prepared from the acicular iron oxyhydroxide in a non-reducing gas at a temperature of from 300.degree. C. to 1000.degree. C. or in a reducing gas at a temperature of from 150.degree. C. to 500.degree. C. The heat-treated material is washed and then reduced under heating. The ferromagnetic metal powder prepared in this manner is dispersed in a binder and cated on a non-magnetic base to form a magnetic recording medium. By utilizing the washing step followed by heat-treating preparing the ferromagnetic metal powder a large amount of water soluble impurities are removed from the metal powder. The metal powder produced according to this disclosed process as excellent oxidation stability and ability to resist corrosion. Accordingly, the magnetic recording medium prepared utilizing this powder has an excellent ability to resist oxidation and corrosion even when subjected to adverse conditions.
    • 公开了一种制备铁磁金属粉末和利用该粉末的磁记录介质的方法。 通过在300〜1000℃的温度或非还原性气体中以非还原性气体热处理由针状羟基氧化铁制成的针状羟基氧化铁或针状氧化铁粉末,制备强磁性金属粉末。 在150〜500℃的温度下进行气体洗涤。将热处理材料洗涤,然后在加热下还原。 以这种方式制备的铁磁性金属粉末分散在粘合剂中并在非磁性基底上形成磁记录介质。 通过利用洗涤步骤进行热处理,制备铁磁性金属粉末,从金属粉末中除去大量的水溶性杂质。 根据该公开方法制备的金属粉末具有优异的氧化稳定性和耐腐蚀性。 因此,利用这种粉末制备的磁记录介质即使在不利条件下也具有优异的抵抗氧化和腐蚀的能力。