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    • 5. 发明授权
    • Ni-base alloy and method of producing the same
    • 镍基合金及其制造方法
    • US08906174B2
    • 2014-12-09
    • US12707748
    • 2010-02-18
    • Shinya ImanoJun Sato
    • Shinya ImanoJun Sato
    • C22F1/10C22F1/16C22C19/05C22C30/00
    • C22C19/05C22C1/002C22F1/10
    • Disclosed are a high-strength Ni-base alloy, a method of producing the Ni-base alloy, and a method of recovering a member made of a degraded Ni-base alloy. It contains not more than 0.1 wt % C, not more than 50 wt % Fe, not more than 30 wt % Cr, Ti, and at least one of Nb and Al. It has been strengthened by precipitates of a γ′ phase (Ni3Al) and/or a γ″ phase (Ni3Nb). It contains also a η phase (Ni3Ti) which is thermodynamically stable in a temperature range of 800° C. to 900° C. When observed a cross-section of the Ni-base alloy, a plurality of nodes exist along each segment connecting two meeting points each of which point is defined by adjacent three crystal grains, and precipitates of the γ′ phase and/or the γ″ phase in each of crystal grains of the Ni-base alloy have an average particle size of not more than 100 nm.
    • 本发明公开了一种高强度Ni基合金,Ni基合金的制造方法以及由劣化的Ni基合金构成的部件的回收方法。 其含有不超过0.1重量%的C,不超过50重量%的Fe,不大于30重量%的Cr,Ti以及Nb和Al中的至少一种。 通过γ'相(Ni3Al)和/或γ“相(Ni3Nb)的析出强化。 它还包含一个&eegr 在Ni基合金的横截面中观察到,沿着连接两个会聚点的每个部分存在多个节点,每个节点存在多个节点 点由相邻的三个晶粒定义,Ni基合金的每个晶粒中的γ'相和/或γ“相的析出物的平均粒径不大于100nm。