Loading-rate-independent delay of catastrophic avalanches in a bulk metallic glass

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Abstract

The plastic flow of bulk metallic glasses (BMGs) is characterized by intermittent bursts of avalanches, and this trend results in disastrous failures of BMGs. In the present work, a double-side-notched BMG specimen is designed, which exhibits chaotic plastic flows consisting of several catastrophic avalanches under the applied loading. The disastrous shear avalanches have, then, been delayed by forming a stable plastic-flow stage in the specimens with tailored distances between the bottoms of the notches, where the distribution of a complex stress field is acquired. Differing from the conventional compressive testing results, such a delaying process is independent of loading rate. The statistical analysis shows that in the specimens with delayed catastrophic failures, the plastic flow can evolve to a critical dynamics, making the catastrophic failure more predictable than the ones with chaotic plastic flows. The findings are of significance in understanding the plastic-flow mechanisms in BMGs and controlling the avalanches in relating solids.

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Chen, S. H., Chan, K. C., Wang, G., Wu, F. F., Xia, L., Ren, J. L., … Liaw, P. K. (2016). Loading-rate-independent delay of catastrophic avalanches in a bulk metallic glass. Scientific Reports, 6. https://doi.org/10.1038/srep21967

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