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On temperature and strain-rate dependence of flow serration in HfNbTaTiZr high-entropy alloy
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On temperature and strain-rate dependence of flow serration in HfNbTaTiZr high-entropy alloy

Shuying Chen, Weidong Li, Fanchao Meng, Yang Tong, Hua Zhang, Ko-Kai Tseng, Jien-Wei Yeh, Yang Ren, Fei Xu, Zhenggang Wu, …
Scripta Materialia, 卷.200, 113919
07/2021

摘要

Dynamic strain aging High-entropy alloys Portevin-Le Chatelier effect Serrated flow Theoretical modeling Materials Science (all) Condensed Matter Physics Mechanics of Materials Mechanical Engineering Metals and Alloys
Plastic instability manifested as the serrated flow on stress-strain curves of metal alloys is generally detrimental to their processing and manufacturing. The flow serration in the HfNbTaTiZr alloy is reported in the present work and its dependence on temperatures (573-823K) and strain rates (5 × 10 −5 s −1 -1 × 10 −3 s −1 ) is investigated with experiments. The notable transition of the onset strain of the serrated flow from a declining (normal behavior) to rising (inverse behavior) trend with increasing temperature at applied strain rates is modeled successfully with a theoretical framework. The success of the model in predicting the onset strain as a function of temperature and strain rate represents a possibility of theoretically constructing a process window for the alloy under examination and beyond.

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