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Physical metallurgy of concentrated solid solutions from low-entropy to high-entropy alloys

机译:从低熵到高熵合金的浓缩固溶体的物理冶金

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摘要

The alloy world could be divided into low-entropy (LEAs), medium-entropy (MEAs) and high-entropy alloys (HEM) based on the configurational entropy at the random solution state. In HEM, four core effects, i.e. high entropy, sluggish diffusion, severe lattice distortion and cocktail effects, are much more significant than low-entropy alloys in affecting phase transformation, microstructure and properties. In fact, the degree of the influence from these core effects more or less increases with increased mixing entropy. The trend is gradual from low-entropy alloys to high-entropy alloys. In this article, physical metallurgy of HEAs is discussed with the bridge connected to that of conventional alloys. As disordered and ordered solid solutions are the main constituent phases of alloys, the understanding of solid solutions is fundamental for the understanding of alloys. In addition, as dilute solid solutions have been well treated in current physical metallurgy, concentrated solid solutions from low-entropy to high-entropy alloys are focused in this article. Physical properties are especially emphasized besides mechanical properties. (C) 2017 Elsevier Ltd. All rights reserved.
机译:基于随机解决方案状态的配置熵,合金世界可分为低熵(丝束),中等熵(MEAS)和高熵合金(下摆)。在下摆,四个核心效应,即高熵,缓慢扩散,严重的晶格畸变和鸡尾酒效应,比影响相变,微观结构和性能的低熵合金更为显着。事实上,随着混合熵的增加,这些核心效应的影响程度或多或少增加。该趋势是从低熵合金到高熵合金的趋势。在本文中,与连接到传统合金的桥接桥讨论了HEA的物理冶金。作为混乱和有序的固溶体是合金的主要组成阶段,对实体解决方案的理解是对合金的理解的基础。此外,由于当前物理冶金中稀释的固体溶液进行了良好处理,因此本文将浓缩到高熵合金的浓缩固体溶液。除了机械性能之外,特别强调的物理性质。 (c)2017 Elsevier Ltd.保留所有权利。

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