作者
Haidong Fan, Qingyuan Wang, Jaafar A El-Awady, Dierk Raabe, Michael Zaiser
发表日期
2021/3/23
期刊
Nature Communications
卷号
12
期号
1
页码范围
1-11
出版商
Nature Publishing Group
简介
Dislocation glide is a general deformation mode, governing the strength of metals. Via discrete dislocation dynamics and molecular dynamics simulations, we investigate the strain rate and dislocation density dependence of the strength of bulk copper and aluminum single crystals. An analytical relationship between material strength, dislocation density, strain rate and dislocation mobility is proposed, which agrees well with current simulations and published experiments. Results show that material strength displays a decreasing regime (strain rate hardening) and then increasing regime (classical forest hardening) as the dislocation density increases. Accordingly, the strength displays universally, as the strain rate increases, a strain rate-independent regime followed by a strain rate hardening regime. All results are captured by a single scaling function, which relates the scaled strength to a coupling parameter …
引用总数
学术搜索中的文章
H Fan, Q Wang, JA El-Awady, D Raabe, M Zaiser - Nature communications, 2021