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Ultrastrong duplex high-entropy alloy with 2 GPa cryogenic strength enabled by an accelerated martensitic transformation

Authors
Kim, Dong GeunJo, Yong HeeYang, JunhaChoi, Won-MiKim, Hyoung SeopLee, Byeong-JooSohn, Seok SuLee, Sunghak
Issue Date
10월-2019
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Keywords
High-entropy alloy; Phase stability; Transformation induced plasticity; Strain hardening; Cryogenic strength
Citation
SCRIPTA MATERIALIA, v.171, pp.67 - 72
Indexed
SCIE
SCOPUS
Journal Title
SCRIPTA MATERIALIA
Volume
171
Start Page
67
End Page
72
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/62626
DOI
10.1016/j.scriptamat.2019.06.026
ISSN
1359-6462
Abstract
The existing deformation-induced martensitic transformation mostly focuses on overcoming the trade-off of cryogenic strength-ductility; however, an enhancement of cryogenic strength further is still challenging. We present a concept to yield a cryogenic strength of 2 GPa in a duplex V10Cr10Co30Fe50 alloy. We adopt a thermodynamic calculation to reduce the stability of metastable face-centered-cubic (FCC) matrix, significantly promoting the martensitic transformation. In conjunction with the chemically driven promotion, the duplex structure including athermal body-centered-cubic (BCC) martensite enables mechanical strain partitioning to accelerate the transformation further. This finding could bean appropriate design strategy to develop new ultrastrong alloys for cryogenic applications. (C) 2019 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
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공과대학 (신소재공학부)
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