Abstract
Stochastic amorphous Pd43 Ni10 Cu27 P 20 foams were tested in quasistatic and dynamic loading. The strength/porosity relations show distinct slopes for the two loading conditions, suggesting a strain-rate-induced change in the foam yielding mechanism. The strength/porosity correlation of the dynamic test data along with microscopy assessments support that dynamic foam yielding is dominated by plasticity rather than elastic buckling, the mechanism previously identified to control quasistatic yielding. The strain-rate-induced shift in the foam yielding mechanism is attributed to the rate of loading approaching the rate of sound wave propagation across intracellular membranes, thereby suppressing elastic buckling and promoting plastic yielding. © 2010 American Institute of Physics.
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CITATION STYLE
Schramm, J. P., Demetriou, M. D., Johnson, W. L., Poon, B., Ravichandran, G., & Rittel, D. (2010). Effect of strain rate on the yielding mechanism of amorphous metal foam. Applied Physics Letters, 96(2). https://doi.org/10.1063/1.3279132
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