作者
J Pan, HF Zhou, ZT Wang, Y Li, HJ Gao
发表日期
2015/11/30
期刊
Journal of the Mechanics and Physics of Solids
卷号
84
页码范围
85-94
出版商
Pergamon
简介
Understanding notch-related failure is crucial for the design of reliable engineering structures. However, substantial controversies exist in the literature on the notch effect in bulk metallic glasses (BMGs), and the underlying physical mechanism responsible for the apparent confusion is still poorly understood. Here we investigate the physical origin of an inverse notch effect in a Zr-based metallic glass, where the tensile strength of the material is dramatically enhanced, rather than decreased (as expected from the stress concentration point of view), by introduction of a notch. Our experiments and molecular dynamics simulations show that the seemingly anomalous inverse notch effect is in fact caused by a transition in failure mechanism from shear banding at the notch tip to cavitation and void coalescence. Based on our theoretical analysis, the transition occurs as the stress triaxiality in the notched sample exceeds a …
引用总数
20162017201820192020202120222023202493781711754
学术搜索中的文章
J Pan, HF Zhou, ZT Wang, Y Li, HJ Gao - Journal of the Mechanics and Physics of Solids, 2015