钴/镍比对沉淀强化合金中 γ/γ′ 相的元素占位倾向和晶格错配的影响

IF 2.1 4区 物理与天体物理 Q3 PHYSICS, CONDENSED MATTER
Congcong Xue , Haoyang Yu , Tiexu Peng , Chang Liu , Yang Long , Jia Li , Fuxing Yin , wei Fang
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引用次数: 0

摘要

沉淀强化镍基合金、钴镍基合金和钴基合金中元素的占据倾向存在显著差异,这进一步影响了γ/γ′晶格错配和力学性能,但相关研究还很缺乏。本文通过第一性原理计算,系统研究了沉淀强化合金中掺杂元素(Ta、W、Cr、Fe、Mo、Re、Ti、V)的占位趋势以及γ相和γ′相的晶格错位与 Co/CoNi 比的关系。结果表明,所有八种元素占据γ′-Al亚晶格位点的倾向都随着Co/CoNi比的增大而增大,占据γ-Ni/Co位点的倾向则全部减小。这些元素的占据倾向与 Co/CoNi 比率有很强的相关性。随着 Co/CoNi 比率的升高,晶格错配逐渐增加。值得注意的是,元素 Ta 对晶格失配的影响最大。适当的 Co/CoNi 比有利于协同增强基体和 Ni3Al 沉淀相的高熵效应和晶格畸变效应,调节合理的晶格错配,从而有利于设计出具有优异强度-电导平衡的沉淀强化合金。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Co/CoNi ratio on elemental occupancy tendencies and lattice misfit of γ/γ′ phases in precipitation-strengthened alloys

Occupancy tendencies of elements significantly differ in precipitation-strengthened Ni-based, CoNi-based, and Co-based alloys, which further affect the γ/γ′ lattice misfit and mechanical properties, but relevant research is lacking. In this work, occupancy tendencies of doping elements (Ta, W, Cr, Fe, Mo, Re, Ti, V) and lattice misfit of γ and γ′ phases in precipitation-strengthened alloys dependent on Co/CoNi ratios have been systematically studied through first-principles calculations. The results show that the tendency of all eight elements to occupy the γ′-Al sublattice site increases with the increase of the Co/CoNi ratio, and the tendency to occupy the γ-Ni/Co site all decreases. The occupancy tendencies of these elements exhibit a strong correlation with the Co/CoNi ratio. Lattice misfit gradually increases as the Co/CoNi ratio is raised. Notably, element Ta has the greatest influence on lattice misfit. The appropriate Co/CoNi ratio is conducive to synergistically enhancing high entropy effects and lattice distortion effects for matrix and Ni3Al precipitate phase, and regulating reasonable lattice misfit, which is beneficial for the design of precipitation-strengthened alloys with excellent strength-ductility balance.

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来源期刊
Solid State Communications
Solid State Communications 物理-物理:凝聚态物理
CiteScore
3.40
自引率
4.80%
发文量
287
审稿时长
51 days
期刊介绍: Solid State Communications is an international medium for the publication of short communications and original research articles on significant developments in condensed matter science, giving scientists immediate access to important, recently completed work. The journal publishes original experimental and theoretical research on the physical and chemical properties of solids and other condensed systems and also on their preparation. The submission of manuscripts reporting research on the basic physics of materials science and devices, as well as of state-of-the-art microstructures and nanostructures, is encouraged. A coherent quantitative treatment emphasizing new physics is expected rather than a simple accumulation of experimental data. Consistent with these aims, the short communications should be kept concise and short, usually not longer than six printed pages. The number of figures and tables should also be kept to a minimum. Solid State Communications now also welcomes original research articles without length restrictions. The Fast-Track section of Solid State Communications is the venue for very rapid publication of short communications on significant developments in condensed matter science. The goal is to offer the broad condensed matter community quick and immediate access to publish recently completed papers in research areas that are rapidly evolving and in which there are developments with great potential impact.
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