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Portevin-Le Chatelier mechanism in face-centered-cubic metallic alloys from low to high entropy
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Portevin-Le Chatelier mechanism in face-centered-cubic metallic alloys from low to high entropy

Che-Wei Tsai, Chi Lee, Po-Ting Lin, Xie Xie, Shuying Chen, Robert Carroll, Michael LeBlanc, Braden A.W. Brinkman, Peter K. Liaw, Karin A. Dahmen, …
International Journal of Plasticity
2019

摘要

High-entropy alloy Medium-entropy alloy Portevin-Le Chatelier effect Serration mechanism Substitutional alloy Materials Science (all) Mechanics of Materials Mechanical Engineering
Serration phenomena during tensile testing on certain alloys with diffusing solute atoms (i.e., Portevin-Le Chatelier effect) have been observed for a long time, but detailed mechanisms are not fully clear yet. This study is intended to find the mechanism from different approaches verified by tensile testing on a series of single-phase face-centered-cubic (FCC) pure metal and alloys: Ni, CoNi, CoFeNi, CoCrFeNi, and CoCrFeMnNi, which range from low to high configurational entropy. The results of tensile tests, at strain rates from 1 × 10 -5 to 1 × 10 -2 /s and temperature from room temperature to 700 °C, show that serrations occur on stress-strain curves of CoFeNi, CoCrFeNi, and CoCrFeMnNi alloys in their specific temperature and strain-rate regime. A mechanism for dislocation pinning is proposed and verified with theoretical calculation for the present substitutional alloys. The proposed mechanism involves the in-situ rearrangement of substitutional solute atoms by "local dislocation-core diffusion" and might also be applied to similar substitutional alloys.

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https://doi.org/10.1016/j.ijplas.2019.07.003檢視
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