Atomistic simulations of shock induced melting of bicrystal copper with twist grain boundary

A. M. He*, Suqing Duan, Jian Li Shao, Pei Wang, Chengsen Qin

*此作品的通讯作者

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8 引用 (Scopus)

摘要

We investigate the shock induced melting of Cu bicrystals with [001] twist grain boundary (GB) under various shock intensities using atomistic dynamics simulations. Two representative types of twist GBs are studied: 5 / (001) / 36.87°and 181 / (001) / 6.03°with relatively high and low GB energies, respectively. The properties of the shocked GB region evolving with time are characterized in terms of order parameters and mean-squared displacement. In the case of 5 / (001) / 36.87°, it is found that prior to the homogeneous melting of the whole sample, continuous partial melting with considerable premelting of the shocked GB region precedes bulk melting with negligible superheating of GB, while solid state disordering may precede the partial melting. In contrast, for 181 / (001) / 6.03°, the melting process is analogous to that of a shocked perfect crystal except that a limited superheated partial melting state occurs before homogeneous melting of the whole bicrystal.

源语言英语
文章编号103516
期刊Journal of Applied Physics
112
10
DOI
出版状态已出版 - 15 11月 2012
已对外发布

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