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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Prediction of phase, hardness and density of high entropy alloys based on their electronic structure and average radius
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Prediction of phase, hardness and density of high entropy alloys based on their electronic structure and average radius

机译:基于其电子结构和平均半径的高熵合金相,硬度和密度预测

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According to a recent Hume-Rothery approach, the electron concentration, e/a, and the average radius can be used to identify the domain of stability of HEAs and to estimate the phases that may occur in the alloy. The present study investigates the influence of the electronic structure and the average radius on the hardness for a series of HEA alloys. The alloys investigated in this work all contained Co, Fe and Ni as base elements. To this base system one or more elements were added, including Al, Cr, Cu, Sn, Pd, Ru, Ti, and V in different proportions. For comparison, data on phases identified and hardness have been taken from a wide range of bibliography for other types of alloys in the systems Co Cr Fe Cu A B C D E F, with A, B, C, D, E, F = Al, Ti, V, Nb, Cu, Mo, Mn, B, Si, Y, Sc, Ru, Re, Gd, Dy, Ho, Lu, Tb, Er, Tm, La, W, Ta, Hf, Zr. In order to predict the occurrence of mainly fcc, bcc and hcp phases, the average atomic radius is preferable over to the average radius for a 12 nearest atoms neighbourhood. Based on this [e/a; radius] system, it is shown that the hardness of the HEA composition can be predicted. By using this classification, it is possible to determine compositions of HEA alloys with adequate range of hardness, density and phases present. The consequences of such predictions when modelling the structure and mechanical behaviour of HEAs is fundamental for their application. (C) 2021 Elsevier B.V. All rights reserved.
机译:根据最近的休谟-罗瑟里方法,电子浓度、e/a和平均半径可用于确定HEA的稳定域,并估计合金中可能出现的相。本文研究了一系列HEA合金的电子结构和平均半径对硬度的影响。本文研究的合金都含有钴、铁和镍作为基本元素。向该基础体系中添加了一种或多种元素,包括不同比例的铝、铬、铜、锡、钯、钌、钛和钒。为了进行比较,已从Co-Cr-Fe-Cu-a-B-C-D-E-F系统中的其他类型合金的大量参考文献中获取了有关识别相和硬度的数据,其中a、B、C、D、E、F=Al、Ti、V、Nb、Cu、Mo、Mn、B、Si、Y、Sc、Ru、Re、Gd、Dy、Ho、Lu、Tb、Er、Tm、La、W、Ta、Hf、Zr。为了预测主要fcc、bcc和hcp相的出现,平均原子半径优于12个最近原子邻域的平均半径。基于这个[e/a;radius]系统,可以预测HEA成分的硬度。通过使用这种分类,可以确定硬度、密度和存在相的适当范围的HEA合金的成分。在对HEA的结构和力学行为进行建模时,此类预测的结果对其应用至关重要。(c)2021爱思唯尔B.V.保留所有权利。

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