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Topologically close-packed phase precipitation in Ni-based superalloys

机译:基于Ni的超合金中拓扑封闭的相沉淀

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The addition of refractory elements is effective in improving the comprehensive performance of Ni-based superalloys, and meanwhile, the precipitation trend of TCP phases increases with the elements content due to the segregation of refractory elements during high temperature service. The precipitation of TCP phases obviously decreased the creep properties and creep rupture life of superalloys. The toughness and plastic of superalloys also dramatically deteriorated. The addition of Ruthenium (Ru) is shown to suppress the formation of TCP phases in Ni-based superalloys, resulting in much improved the creep resistance and the microstructural stability. The studies on TCP phases in Ni-based superalloys including crystallography and precipitation of TCP phases and the effect of alloy composition on TCP phases are reviewed.
机译:添加耐火元件在提高Ni基超合金的综合性能方面是有效的,同时,TCP相的沉淀趋势随着在高温服务期间的耐火元件的分离而增加的元素含量增加。 TCP阶段的沉淀显然降低了超合金的蠕变性能和蠕变破裂寿命。高温合金的韧性和塑料也显着恶化。显示钌(Ru)的加入抑制Ni基超合金中TCP相的形成,导致大大提高了抗蠕变性和微观结构稳定性。综述了对Ni基超合金中的TCP相的研究及TCP阶段的沉淀及其对TCP相对TCP相的影响。

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