Slip avalanche in nanoscratching of metallic glasses

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Abstract

Slip avalanches, similar to discrete earthquake events, of Zr-, Co-, and Ce-based metallic glasses during nanoscratching were investigated. Differing from the conventional continuum approach, mean-field theory, which is an inherently-discrete model, was applied to analytically compute intermittent slip avalanches. Mean-field theory was first connected with the potential energy barrier and concentration of free volume in order to study the stick-slip behavior. The results suggest that the motion behavior of free volume affects the critical slip avalanche size.

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Han, D. X., Wang, G., Ren, J. L., Song, S. X., Li, J., Yi, J., … Liaw, P. K. (2017). Slip avalanche in nanoscratching of metallic glasses. Journal of Applied Physics, 122(11). https://doi.org/10.1063/1.4989455

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