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  5. Deformation and failure of the CrCoNi medium-entropy alloy subjected to extreme shock loading

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Article
English
2023

Deformation and failure of the CrCoNi medium-entropy alloy subjected to extreme shock loading

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0 Files

English
2023
Science Advances
Vol 9 (18)
DOI: 10.1126/sciadv.adf8602

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Robert O. Ritchie
Robert O. Ritchie

University of California, Berkeley

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Shiteng Zhao
Sheng Yin
Xiao Liang
+7 more

Abstract

The extraordinary work hardening ability and fracture toughness of the face-centered cubic (fcc) high-entropy alloys render them ideal candidates for many structural applications. Here, the deformation and failure mechanisms of an equiatomic CrCoNi medium-entropyalloy (MEA) were investigated by powerful laser-driven shock experiments. Multiscale characterization demonstrates that profuse planar defects including stacking faults, nanotwins, and hexagonal nanolamella were generated during shock compression, forming a three-dimensional network. During shock release, the MEA fractured by strong tensile deformation and numerous voids was observed in the vicinity of the fracture plane. High defect populations, nanorecrystallization, and amorphization were found adjacent to these areas of localized deformation. Molecular dynamics simulations corroborate the experimental results and suggest that deformation-induced defects formed before void nucleation govern the geometry of void growth and delay their coalescence. Our results indicate that the CrCoNi-based alloys are impact resistant, damage tolerant, and potentially suitable in applications under extreme conditions.

How to cite this publication

Shiteng Zhao, Sheng Yin, Xiao Liang, Fuhua Cao, Qin Yu, Ruopeng Zhang, Lan-Hong Dai, Carlos J. Ruestes, Robert O. Ritchie, Andrew M. Minor (2023). Deformation and failure of the CrCoNi medium-entropy alloy subjected to extreme shock loading. Science Advances, 9(18), DOI: 10.1126/sciadv.adf8602.

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Publication Details

Type

Article

Year

2023

Authors

10

Datasets

0

Total Files

0

Language

English

Journal

Science Advances

DOI

10.1126/sciadv.adf8602

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