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Peierls barrier characteristic and anomalous strain hardening provoked by dynamic-strain-aging strengthening in a body-centered-cubic high-entropy alloy

机译:Peierls屏障特征和异常应变硬化通过动态应变老化在身体中心立方高熵合金中强化引起刺激

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摘要

The temperature effect on the mechanical behavior of the HfNbTaTiZr high entropy alloy (HEA) was investigated at 77–673 K. The decrease of the yield strength with increasing the temperature was mechanistically analyzed by considering contributions from various strengthening mechanisms. An anomalous dependence of strain hardening on temperature was observed and was justified to be caused by dynamic strain aging (DSA) as an extra strengthening mechanism at elevated temperatures. A model was constructed to split the overall strain hardening into forest hardening and DSA hardening, both of which were theoretically quantified at all temperatures considered.
机译:在77-673 K中研究了对HFNBTATIZR高熵合金(HEA)的力学行为的温度效应。通过考虑各种强化机制的贡献,机械地分析了屈服强度随着温度的增加而降低。观察到应变硬化硬化的异常依赖性,并且是由动态菌株老化(DSA)作为升高温度的额外加强机制引起的。构造模型以将整体应变硬化分成森林硬化和DSA硬化,这两者在考虑的所有温度下理论上定量。

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