The tensile behavior of a Ni60 Nb40 metallic glass (MG) has been studied by using ab initio density functional theory (DFT) calculation with a large cell containing 1024 atoms (614 Ni and 410 Nb). We provide insight into how a super elastic limit can be achieved in a MG. Spatially inhomogeneous responses of single atoms and also major polyhedra are found to change greatly with increasing external stress when the strain is over 2%, causing the intrinsically viscoelastic behavior. We uncover the origin of the observed super elastic strain limit under tension (including linear and viscoelastic strains) in small-sized MG samples, mainly caused by inhomogeneous distribution of excess volumes in the form of newly formed subatomic cavities.
CITATION STYLE
Wang, X. D., Aryal, S., Zhong, C., Ching, W. Y., Sheng, H. W., Zhang, H., … Jiang, J. Z. (2015). Atomic picture of elastic deformation in a metallic glass. Scientific Reports, 5. https://doi.org/10.1038/srep09184
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