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Title: Grain boundary-mediated plasticity accommodating the cracking process in nanograined gold : in situ observations and simulations
Authors: Yang, XS 
Yuan, S 
Fu, H 
Wang, YJ
Issue Date: 15-Mar-2021
Source: Scripta materialia, 15 Mar. 2021, v. 194, 113693
Abstract: In this study, the underlying atomic-scale plastic deformation mechanisms responsible for the crack propagation process in nanograined gold thin film with an average grain size of ~10 nm (ranging from ~2 nm to ~22 nm) is investigated by the in situ high-resolution transmission electron microscope observations (i.e., a homemade device with atomic force microscope inside transmission electron microscope) and atomistic molecular dynamic simulations. The real-time results based on the experimental observations and simulations uncover consistently that the crack propagation in nanograined gold thin film is accommodated by the grain boundary-mediated plasticity, which may result in the grain coalescence between neighboring nanograins. Furthermore, we find that the grain boundary-mediated plasticity is grain size-dependent, i.e., GB dislocation activities-induced grain rotation in relative larger grains and GB migration in relative smaller grains in comparison with a critical grain size of ~ 10 nm.
Keywords: Crack propagation
Molecular dynamic simulations
Nanocrystalline metal
Plastic deformation, In situ transmission electron microscope
Publisher: Elsevier Ltd
Journal: Scripta materialia 
ISSN: 1359-6462
EISSN: 1872-8456
DOI: 10.1016/j.scriptamat.2020.113693
Rights: © 2020 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
© 2020. This manuscript version is made available under the CC-BY-NC-ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/
The following publication Yang, X.-S., Yuan, S., Fu, H., & Wang, Y.-J. (2021). Grain boundary-mediated plasticity accommodating the cracking process in nanograined gold: In situ observations and simulations. Scripta Materialia, 194, 113693 is available at https://doi.org/10.1016/j.scriptamat.2020.113693.
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