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    • 7. 发明授权
    • Method for manufacturing nickel alloy
    • 镍合金制造方法
    • US07799152B2
    • 2010-09-21
    • US11907719
    • 2007-10-17
    • Manabu Kanzaki
    • Manabu Kanzaki
    • C22F1/10
    • C22F1/10C22C19/053C22C19/055C22C19/058
    • A nickel alloy having an excellent corrosion resistance (hereinafter referred to as “nickel alloy”) used for pipes, structural materials and structural members, such as bolts or the like, in a nuclear power plant or in a chemical plant, and a manufacturing method for the same are provided. In the nickel alloy according to the present invention, an excellent corrosion resistance, in particular an excellent resistance against the IGSCC, is obtained by specifying the low angle boundary rate of 4% or more in the grain boundaries, along with the restriction of the chemical composition in the alloy, thereby making it possible to provide a nickel alloy which is most suitably used for pipes, structural materials and structural members, such as bolts or the like. Accordingly, the nickel alloy according to the present invention is widely applicable to structural members used in a nuclear station or in a chemical plant.
    • 在核电厂或化工厂中用于管道,结构材料和结构构件(例如螺栓等)的具有优异耐腐蚀性的镍合金(以下称为“镍合金”)和制造方法 提供相同的。 在根据本发明的镍合金中,通过在晶界中规定4%以上的低角度边界率以及化学品的限制,获得优异的耐腐蚀性,特别是对IGSCC的优异的耐性 合金中的组成,从而可以提供最适合用于管道,结构材料和结构构件(例如螺栓等)的镍合金。 因此,根据本发明的镍合金可广泛地应用于在核电站或化工厂使用的结构件。
    • 8. 发明授权
    • Method for solidifying waste containing radioactive iodine
    • 固化含放射性碘废物的方法
    • US5826203A
    • 1998-10-20
    • US892232
    • 1997-07-14
    • Masahiro FukumotoManabu Kanzaki
    • Masahiro FukumotoManabu Kanzaki
    • G21F9/02G21F9/28G21F9/30G21F9/36G21F9/00
    • G21F9/302G21F9/30
    • A method for solidifying a radioactive iodine-containing waste, in which volatilization of radioactive iodine outward can be suppressed during solidification, and a solidified waste having a high level of confinement of radioactive iodine and a long term stability can be obtained. The method comprised mixing a granular waste containing radioactive iodine, e.g. a granular iodine adsorbent having radioactive iodine adsorbed and collected thereon, with a metal powder, e.g. a copper powder, having a corrosion resistance in an environment of solidified waste disposal, filling the resulting mixture in a metal capsule, and subjecting the whole to hot isostatic pressing to effect solidification. In the resulting solidified waste, particles of the radioactive iodine-containing adsorbents are dispersed and retained in the sintered matrix of the metal powder formed through the isostatic pressing.
    • 可以获得在固化期间可以抑制放射性碘向外挥发的放射性碘化物废弃物的固化方法,并且可以获得具有高放射性碘限制和长期稳定性的固化废物。 该方法包括混合含有放射性碘的颗粒废物,例如 具有吸收和收集其上的放射性碘的颗粒状碘吸附剂,其具有金属粉末。 在固化的废物处理环境中具有耐腐蚀性的铜粉末,将所得混合物填充在金属胶囊中,并对全体进行热等静压以进行固化。 在得到的固化废物中,放射性碘吸附剂的颗粒被分散并保留在通过等静压法形成的金属粉末的烧结基质中。
    • 9. 发明申请
    • Method for manufacturing nickel alloy
    • 镍合金制造方法
    • US20080110534A1
    • 2008-05-15
    • US11907719
    • 2007-10-17
    • Manabu Kanzaki
    • Manabu Kanzaki
    • C22F1/10C21D8/00
    • C22F1/10C22C19/053C22C19/055C22C19/058
    • A nickel alloy having an excellent corrosion resistance (hereinafter referred to as “nickel alloy”) used for pipes, structural materials and structural members, such as bolts or the like, in a nuclear power plant or in a chemical plant, and a manufacturing method for the same are provided. In the nickel alloy according to the present invention, an excellent corrosion resistance, in particular an excellent resistance against the IGSCC, is obtained by specifying the low angle boundary rate of 4% or more in the grain boundaries, along with the restriction of the chemical composition in the alloy, thereby making it possible to provide a nickel alloy which is most suitably used for pipes, structural materials and structural members, such as bolts or the like. Accordingly, the nickel alloy according to the present invention is widely applicable to structural members used in a nuclear station or in a chemical plant.
    • 在核电厂或化工厂中用于管道,结构材料和结构构件(例如螺栓等)的具有优异耐腐蚀性的镍合金(以下称为“镍合金”)和制造方法 提供相同的。 在根据本发明的镍合金中,通过在晶界中规定4%以上的低角度边界率以及化学品的限制,获得优异的耐腐蚀性,特别是对IGSCC的优异的耐性 合金中的组成,从而可以提供最适合用于管道,结构材料和结构构件(例如螺栓等)的镍合金。 因此,根据本发明的镍合金可广泛地应用于在核电站或化工厂使用的结构件。