Presentation Information

[IS2]From Solids to Ice: Micromechanics of Copper Microarchitectures Across Extreme Conditions

○Sung-Gyu Kang1,2 (1. Gyeongsang National University, 2. Max-Planck-Institute for Sustainable Materials)

Keywords:

Microadditive manufacturing,Extreme Micromechanics,Deformation mechanisms

Extreme micromechanics of additively manufactured copper microarchitectures are investigated under varying strain rates and temperatures, revealing twinning- and slip-dominated deformation of copper and size-dependent strengthening of confined ice.

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