Twinning Engineering of a CoCrFeMnNi High-Entropy Alloy

J. Moon, O. Bouaziz, Hyoung-Seop Kim, Y. Estrin
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引用次数: 44

Abstract

Abstract Deformation-induced twinning has been a notable example of overcoming the strength/ductility trade-off dilemma as a strengthening mechanism. By borrowing this concept from the area of TWIP steels, we designed a thermomechanical treatment for a CoCrFeMnNi high-entropy alloy to improve its mechanical characteristics. We used pre-straining at 77 K to introduce deformation-induced twins in the microstructure of the alloy, and then recovered it by annealing at 773 K, while avoiding recrystallization. The deformation-induced twins generated by pre-straining at 77 K were retained after this heat treatment, whilst partial recovery of dislocations occurred. As a result, the room-temperature mechanical properties of the alloy, including its strain hardening ability, were improved substantially.
CoCrFeMnNi高熵合金的孪生工程
变形诱导孪晶是克服强度/延性权衡困境的一个显著例子,是一种强化机制。借用TWIP钢领域的这一概念,我们设计了一种CoCrFeMnNi高熵合金的热处理方法,以改善其力学特性。在77 K的预应变条件下,合金组织中引入了变形孪晶,然后在773 K的退火条件下恢复了孪晶,同时避免了再结晶。在此热处理后,由77 K预应变产生的变形孪晶得以保留,而位错发生了部分恢复。因此,合金的室温力学性能,包括其应变硬化能力,得到了很大的改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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