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The effect of ruthenium on the intermediate to high temperature creep response of high refractory content single crystal nickel-base superalloys

机译:钌对难熔含量高的单晶镍基高温合金的中高温蠕变响应的影响

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The addition of 3 wt.% ruthenium (Ru) was found to improve both the intermediate temperature/intermediate stress and the high temperature/low stress creep behaviours of two high refractory content single crystal Ni-base superalloys. Creep rupture tests, creep activation energy measurements and microstructural analysis indicate that Ru serves a dual role; it enhances microstructural stability by suppressing the precipitation of deleterious topologically close-packed (TCP) phases and it increases the level of solid solution strengthening of the γ phase. Its effectiveness as a TCP suppressant increases with temperature whereas its potency as a strengthening element decreases with temperature. Ru reduces the stacking fault energy of the γ phase and this is thought to have a significant contribution towards its strengthening benefit at intermediate temperatures. The reduction in γ' volume fraction upon the addition of Ru, which is central to its effectiveness as a stabilising element, appears to be the principal cause of its diminishing strengthening contribution at elevated temperatures.
机译:发现添加3重量%的钌(Ru)可改善两种高耐火含量的单晶Ni基超级合金的中间温度/中间应力和高温/低应力蠕变行为。蠕变断裂测试,蠕变活化能测量和微观结构分析表明,Ru起着双重作用。它通过抑制有害的拓扑紧密堆积(TCP)相的沉淀来增强微观结构的稳定性,并提高γ相的固溶强化水平。其作为TCP抑制剂的有效性随温度而增加,而其作为强化元素的效力随温度而降低。 Ru减少了γ相的堆垛层错能,并且据认为对其在中间温度下的强化益处具有重大贡献。加入Ru可以降低γ'体积分数,这对它作为稳定元素的有效性至关重要,这似乎是其在高温下增强作用减弱的主要原因。

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