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A Study on the Hall–Petch Relationship and Grain Growth Kinetics in FCC-Structured High/Medium Entropy Alloys

机译:FCC结构高/中等熵合金中霍尔 - 腐蚀关系与谷物生长动力学的研究

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摘要

The recrystallization behavior, grain growth kinetics, and corresponding hardness variation of homogenized and 80% cold-rolled FeCoNiCrPd, FeCoNiCrMn, and their quaternary/ternary FCC-structured high/medium entropy alloys (H/MEAs) annealed under different conditions were investigated. Experimental results indicate that the grain size and hardness of these H/MEAs follow the Hall–Petch equation, with the Hall–Petch coefficient KH value being mainly dominated by the alloy’s stacking fault energy and shear modulus. The FeCoNiCrPd alloy exhibits the highest hardness of the H/MEAs at the same grain size due to the largest Young’s modulus difference between Cr and Pd. The grain growth exponent n, kinetic constant k, and activation energy for grain growth QG of all H/MEAs are calculated. The k can be expressed by the Arrhenius equation with QG, which is attributed to the diffusion rate. The results demonstrate that the QG values of these H/MEAs are much higher than those of conventional alloys; most notable is FeCoNiCrPd HEA, which has an unusually lattice distortion effect that hinders grain growth.
机译:研究了重结晶行为,晶粒生长动力学和均质和80%冷轧FeconicRPD,Feconicrmn及其第四族/三元FCC结构的高/中熵合金(H / MEAM)在不同条件下进行了反应。实验结果表明,这些H / MES的晶粒尺寸和硬度遵循霍尔竖起方程,霍尔 - 取景系数Kh值主要由合金的堆叠故障能量和剪切模量支配。由于Cr和Pd之间的最大模量差异,FeconicRPD合金在相同的粒度下表现出H / MeS的最高硬度。计算晶粒生长指数N,动力量k和所有H / MEES的晶粒生长Qg的活化能量。 k可以由qg的Arrhenius方程表示,其归因于扩散速率。结果表明,这些H / MEA的QG值远高于常规合金的Qg值;最值得注意的是FeconicRPD Hea,它具有隐形谷物生长的异常格子扭曲效果。

著录项

  • 期刊名称 Entropy
  • 作者单位
  • 年(卷),期 2019(21),3
  • 年度 2019
  • 页码 297
  • 总页数 13
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:高熵合金;霍尔辅助关系;谷物生长;活化能量;

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