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A Review of Recent Research on Nanoindentation of High-Entropy Alloys Processed by High-Pressure Torsion

Authors
Lee, Dong-HyunChoi, In-ChulKawasaki, MegumiLangdon, Terence G.Jang, Jae-Il
Issue Date
Jul-2023
Publisher
Japan Institute of Metals (JIM)
Keywords
high -entropy alloy; high-pressure torsion; nanocrystalline metal; nanoindentation
Citation
Materials Transactions, v.64, no.7, pp.1551 - 1565
Indexed
SCIE
SCOPUS
Journal Title
Materials Transactions
Volume
64
Number
7
Start Page
1551
End Page
1565
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/192296
DOI
10.2320/matertrans.MT-MF2022015
ISSN
1345-9678
Abstract
High entropy alloys (HEAs) are a novel class of materials that have emerged as potential candidates for various industrial applications due to their excellent mechanical properties at cryogenic, ambient, elevated temperatures, and even under a hydrogen environment. The incorporation of nanocrystalline (nc) structure into HEAs has attracted significant attention for the further enhancement of their exceptional properties, as exceptional grain refinement usually results in enhanced strength without a large expense of ductility. High-pressure torsion (HPT) is often considered one of the most efficient methods for nanocrystallization, and this also holds true for HEAs. Recently, nanoindentation technique has been widely utilized to explore the relationship between HPT-induced grain refinement and mechanical behavior due to the inhomogeneous microstructure within the HPT disk. In this report, recent nanoindentation studies performed on HPT-processed HEAs are comprehensively reviewed with special emphasis on the nanomechanical behavior of nc HEAs.
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