Fracture toughness and crack-resistance curve behavior in metallic glass-matrix composites

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Abstract

Nonlinear-elastic fracture mechanics methods are used to assess the fracture toughness of bulk metallic glass (BMG) composites; results are compared with similar measurements for other monolithic and composite BMG alloys. Mechanistically, plastic shielding gives rise to characteristic resistance-curve behavior where the fracture resistance increases with crack extension. Specifically, confinement of damage by second-phase dendrites is shown to result in enhancement of the toughness by nearly an order of magnitude relative to unreinforced glass. © 2009 American Institute of Physics.

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Launey, M. E., Hofmann, D. C., Suh, J. Y., Kozachkov, H., Johnson, W. L., & Ritchie, R. O. (2009). Fracture toughness and crack-resistance curve behavior in metallic glass-matrix composites. Applied Physics Letters, 94(24). https://doi.org/10.1063/1.3156026

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