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    • 2. 发明授权
    • Process for the heat treatment of a Ni-base heat-resisting alloy
    • 镍基耐热合金热处理工艺
    • US06132535A
    • 2000-10-17
    • US428785
    • 1999-10-28
    • Ikuo OkadaTaiji TorigoeHisataka KawaiKoji TakahashiItaru TamuraShyuichi Sakashita
    • Ikuo OkadaTaiji TorigoeHisataka KawaiKoji TakahashiItaru TamuraShyuichi Sakashita
    • C22C19/05C22F1/10
    • C22C19/058C22C19/055C22C19/056C22F1/10
    • Provided is a process for improving alloy properties which can improve the high-temperature ductility of a Ni-base heat-resisting alloy while maintaining its excellent high-temperature strength and weldability. Specifically, it relates to a process for the heat treatment of a Ni-base heat-resisting alloy having a specific composition which comprises the steps of subjecting the alloy to a first-stage solution treatment by keeping it at a specific temperature for a specific period of time; cooling the alloy to a second-stage solution treatment temperature at a specific cooling rate; subjecting the alloy to a second-stage solution treatment by keeping it at a specific temperature for a specific period of time; cooling the alloy rapidly to room temperature at a specific cooling rate; subjecting the alloy to a stabilizing treatment by keeping it at a specific temperature for a specific period of time; cooling the alloy rapidly to room temperature at a specific cooling rate; and subjecting the alloy to an aging treatment by keeping it at a specific temperature for a specific period of time.
    • 提供了一种提高合金性能的方法,其可以在保持其优异的高温强度和可焊性的同时提高Ni基耐热合金的高温延展性。 具体而言,涉及具有特定组成的Ni基耐热合金的热处理方法,该方法包括以下步骤:使合金进行第一阶段固溶处理,将其保持在特定温度下一段特定的时间 的时间 以合适的冷却速度将合金冷却至第二阶段固溶处理温度; 通过将合金保持在特定温度一段时间来对合金进行第二阶段溶液处理; 以合适的冷却速度将合金快速冷却至室温; 通过将合金保持在特定温度一段特定的时间来对合金进行稳定处理; 以合适的冷却速度将合金快速冷却至室温; 并通过将其保持在特定温度一段时间来对合金进行时效处理。
    • 4. 发明授权
    • Heat-resistant nickel-based alloy excellent in weldability
    • 耐热镍基合金,焊接性优良
    • US5882586A
    • 1999-03-16
    • US899587
    • 1997-07-24
    • Itaru TamuraKazunori TokoroTakashi KawabataTsuyoki KokubunToshio MochizukiShuichi SakashitaHisataka KawaiIkuo OkadaIchiro TsujiKouji TakahashiTaiji Torigoe
    • Itaru TamuraKazunori TokoroTakashi KawabataTsuyoki KokubunToshio MochizukiShuichi SakashitaHisataka KawaiIkuo OkadaIchiro TsujiKouji TakahashiTaiji Torigoe
    • C22C19/05
    • C22C19/056
    • A heat-resistant nickel-based alloy having excellent welding properties, said nickel-based alloy consisting essentially of, in terms of wt. %, 0.05 to 0.25% of C, 18 to 25% of Cr, 15 to 25% of Co, at least one selected from the group consisting of up to 3.5% of Mo and 5 to 10% of W, with W+1/2Mo being 5 to 10%, 1.0 to 5.0% of Ti, 1.0 to 4.0% of Al, 0.5 to 4.5% of Ta, 0.2 to 3.0% of Nb, 0.005 to 0.10% of Zr, 0.001 to 0.01% of B and the balance being Ni and unavoidable impurities, wherein the (Al+Ti) content and the (W+1/2Mo) content are within the range surrounded by the lines connecting points A (Al+Ti: 5%, W+1/2Mo: 10%), B (Al+Ti: 5%, W+1/2Mo: 5%), C (Al+Ti: 7%, W+1/2Mo: 5%), and D (Al+Ti: 7%, W+1/2Mo: 10%) excluding the line A-B in FIG. 1. Another alloy has substantially the same composition as described above except that the Cr content is 10 to 20% and the (Al+Ti) content and the (W+1/2Mo) content are within the range surrounded by the lines connecting points A, B, E (Al+Ti: 4%, W+1/2Mo: 5%), F (Al+Ti: 4%, W+1/2Mo: 0.5%), G (Al+Ti: 7%, W+1/2Mo: 0.5%) and D, excluding the line A-B-E, in FIG. 1.
    • 一种具有优异焊接性能的耐热镍基合金,所述镍基合金基本上以重量计。 ,0.05〜0.25%的C,18〜25%的Cr,15〜25%的Co,至少1种选自高达3.5%的Mo和5〜10%的W,W + E,fra 1/2 + EE Mo为5〜10%,Ti为1.0〜5.0%,Al为1.0〜4.0%,Ta为0.5〜4.5%,Nb为0.2〜3.0%,Zr为0.005〜0.10% 0.001〜0.01%的B,余量为Ni和不可避免的杂质,其中(Al + Ti)含量和(W ++ E,fra 1/2 + EE Mo)含量在连接点 A(Al + Ti:5%,W ++ E,fra 1/2 + EE Mo:10%),B(Al + Ti:5%,W ++ E,fra 1/2 + EE Mo: ),C(Al + Ti:7%,W ++ E,fra 1/2 + EE Mo:5%)和D(Al + Ti:7%,W ++ E, :10%),不包括图1中的线AB。 另一种合金具有与上述基本相同的组成,不同之处在于Cr含量为10〜20%,(Al + Ti)含量和(W ++ E,fra 1/2 + EE Mo)含量在 连接点A,B,E(Al + Ti:4%,W ++ E,fra 1/2 + EE Mo:5%),F(Al + Ti:4%,W ++ E ,1/2 + EE Mo:0.5%),G(Al + Ti:7%,W ++ E,fra 1/2 + EE Mo:0.5%)和D,不包括线ABE。 1。