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Nanoindentation testing as a powerful screening tool for assessing phase stability of nanocrystalline high-entropy alloys

机译:纳米压痕测试是评估纳米晶高熵合金相稳定性的有力筛选工具

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摘要

The equiatomic high-entropy alloy (HEA), CrMnFeCoNi, has recently been shown to be microstructurally unstable, resulting in a multi-phase microstructure after intermediate-temperature annealing treatments. The decomposition occurs rapidly in the nanocrystalline (NC) state and after longer annealing times in coarse-grained states. To characterize the mechanical properties of differently annealed NC states containing multiple phases, nanoindentation was used. The results revealed besides drastic changes in hardness, also for the first time significant changes in the Young's modulus and strain rate sensitivity. Nanoindentation of NC HEAs is, therefore, a useful complementary screening tool with high potential as a high throughput approach to detect phase decomposition, which can also be used to qualitatively predict the long-term stability of single-phase HEAs. (C) 2016 Elsevier Ltd. All rights reserved.
机译:最近已证明等原子高熵合金(HEA)CrMnFeCoNi在微观结构上不稳定,因此在中温退火处理后会形成多相微观结构。分解在纳米晶(NC)状态下迅速发生,并且在较长的退火时间后在粗晶粒状态下发生。为了表征包含多个相的不同退火NC状态的机械性能,使用了纳米压痕。结果表明,除了硬度的急剧变化外,杨氏模量和应变率敏感性也首次出现了显着变化。因此,NC HEA的纳米压痕是一种有用的补充筛选工具,具有很高的潜力,可作为检测相分解的高通量方法,也可用于定性预测单相HEA的长期稳定性。 (C)2016 Elsevier Ltd.保留所有权利。

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