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Title: An ultra-strong and ductile crystalline-amorphous nanostructured surface layer on TiZrHfTaNb0.2 high-entropy alloy by laser surface processing
Authors: Luo, J 
Sun, W 
Liang, D
Yang, W 
Chan, KC 
Ren, F
Yang, XS 
Issue Date: Mar-2023
Source: Materials and design, Mar.2023, v. 227, 111710
Abstract: Heterogeneous crystalline-amorphous nanostructures have been documented to show superior strength-ductility synergy via the co-deformation cooperative effects of nanograins and amorphous grain boundaries. In this work, a facile laser surface remelting technique with rapid cooling rate was successfully developed to fabricate a ∼ 100 μm-thick gradient nanostructured layer accompanied by phase decomposition on a TiZrHfTaNb0.2 high-entropy alloy, where a ∼ 5 μm-thick crystalline-amorphous nanostructured top surface layer with an average grain size of ∼ 7 nm was obtained. Such crystalline-amorphous nanostructured layer shows an ultrahigh yield strength of ∼ 6.0 GPa and a compression strain of ∼ 25 % during the localized micro-pillar compression tests. The atomic observations reveal that co-deformation cooperative mechanisms include the well-retained dislocation activities in nanograins but crystallization in amorphous grain boundaries, which subsequently lead to the grain coarsening via grain boundary-mediated plasticity. This study sheds light on the development of high-performance high-entropy alloys with novel crystalline-amorphous nanostructures and provides significant insight into their plastic deformation mechanisms.
Keywords: Crystalline-amorphous nanostructure
Hetero-nanostructure
High-entropy alloy
Laser surface remelting
Micro-pillar compression tests
Publisher: Elsevier
Journal: Materials and design 
ISSN: 0264-1275
EISSN: 1873-4197
DOI: 10.1016/j.matdes.2023.111710
Rights: © 2023 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
The following publication Luo, J., Sun, W., Liang, D., Yang, W., Chan, K. C., Ren, F., & Yang, X. S. (2023). An ultra-strong and ductile crystalline-amorphous nanostructured surface layer on TiZrHfTaNb0. 2 high-entropy alloy by laser surface processing. Materials & Design, 227, 111710 is availale at https://doi.org/10.1016/j.matdes.2023.111710.
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