Effect of the γ′ volume fraction on the creep strength of Ni-base superalloys

D. Mukherji, J. Rösler
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引用次数: 18

Abstract

Abstract Three single-crystalline Ni-base superalloys with varying content of the γ′ phase are investigated with respect to their microstructure and creep behaviour at 1000°C. It is shown by convergent beam electron diffraction, X-ray diffraction and energy-dispersive X-ray spectroscopy that the composition of the matrix and precipitates as well as the lattice misfit between both phases are similar for all three model alloys despite a variation of the γ′ content from about 50 to about 65%. This allows to study the influence of the precipitate volume fraction on high-temperature behaviour in separation from other microstructural parameters. Highest creep strength is found for the alloy with intermediate particle content (about 58%), which is significantly below the particle volume fraction of contemporary single-crystal superalloys such as CMSX-4.
γ′体积分数对ni基高温合金蠕变强度的影响
摘要:研究了三种不同γ′相含量的单晶镍基高温合金在1000℃下的显微组织和蠕变行为。通过会聚束电子衍射、x射线衍射和能量色散x射线能谱分析表明,尽管三种模型合金的γ′含量在50%到65%之间变化,但基体和析出相的组成以及两相之间的晶格失配是相似的。这允许研究沉淀体积分数对高温行为的影响,从其他微观结构参数分离。中等颗粒含量(约58%)的合金蠕变强度最高,明显低于当前单晶高温合金(如CMSX-4)的颗粒体积分数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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