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首页> 外文期刊>Physical review letters >Martensitic Transformation in Fe_xMn_(80-x)Co_(10)Cr_(10) High-Entropy Alloy
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Martensitic Transformation in Fe_xMn_(80-x)Co_(10)Cr_(10) High-Entropy Alloy

机译:FE_XMN_(80-X)CO_(10)CR_(10)高熵合金中的马氏体变换

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摘要

High-entropy alloys and even medium-entropy alloys are an intriguing class of materials in that structure and property relations can be controlled via alloying and chemical disorder over wide ranges in the composition space. Employing density-functional theory combined with the coherent-potential approximation to average over all chemical configurations, we tune free energies between face-centered-cubic and hexagonal-close-packed phases in FexMn80-xCo10Cr10 systems. Within Fe-Mn-based alloys, we show that the martensitic transformation and chemical short-range order directly correlate with the face-centered-cubic and hexagonal-close-packed energy difference and stacking-fault energies, which are in quantitative agreement with recent observation of two phase region (face-centered cubic and hexagonal closed pack) in a polycrystalline high-entropy alloy sample at x = 40 at.%. Our predictions are further confirmed by single-crystal measurements on a x = 40 at.% using transmission-electron microscopy, selective-area diffraction, and electron-backscattered-diffraction mapping. The results herein offer an understanding of transformation-induced or twinning-induced plasticity in this class of high-entropy alloys and a design guide for controlling the physics at the electronic level.
机译:高熵合金甚至中等熵合金是一种有趣的材料,即在构图空间中的宽范围内通过合金化和化学紊乱来控制结构和性能。采用密度功能理论与所有化学配置相结合的平均平均电位近似,我们在FEXMN80-XCO10CR10系统中对面中心立方和六边形封装阶段之间的自由能量。在Fe-Mn基合金中,我们表明,马氏体转换和化学短线顺序与面朝式 - 立方和六边形 - 近距离填充能差和堆叠故障能量直接相关,近期在X = 40℃下观察在多晶高熵合金样品中的两个相位区域(面为中心立方和六边形封闭包装)。%。我们的预测通过单晶测量在X = 40时进一步证实。%使用透射电子显微镜,选择区衍射和电子背散射 - 衍射映射。本文的结果在这类高熵合金和用于控制电子电平的物理学的设计指南中提供了对转化诱导或孪生诱导的可塑性的理解。

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  • 来源
    《Physical review letters》 |2021年第11期|115704.1-115704.7|共7页
  • 作者单位

    Iowa State Univ Ames Lab US Dept Energy Ames IA 50011 USA;

    Texas A&M Univ Dept Mech Engn College Stn TX 77843 USA|Texas A&M Univ Dept Mat Sci & Engn College Stn TX 77843 USA;

    Iowa State Univ Ames Lab US Dept Energy Ames IA 50011 USA|Sandvik Coromant R&D S-12679 Stockholm Sweden;

    Tomsk State Univ Siberian Phys Tech Inst Novosobornay Sq 1 Tomsk 634050 Russia;

    Texas A&M Univ Dept Mech Engn College Stn TX 77843 USA|Texas A&M Univ Dept Mat Sci & Engn College Stn TX 77843 USA;

    Texas A&M Univ Dept Mech Engn College Stn TX 77843 USA|Texas A&M Univ Dept Mat Sci & Engn College Stn TX 77843 USA;

    Iowa State Univ Ames Lab US Dept Energy Ames IA 50011 USA|Iowa State Univ Dept Mat Sci & Engn Ames IA 50011 USA;

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