4.6 Article

Characteristics and correlations of nonaffine particle displacements in the plastic deformation of athermal amorphous materials

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Summary: The mechanical properties and pore structure of porous glass under athermal quasistatic shear were studied. It was found that the shear modulus strongly depends on density and porosity, and the pore structure rearranges under mechanical loading, reflected in changes to the pore size distribution function. A universal scaling law for the pore size distribution function was proposed, showing data collapse for highly porous materials in the undeformed case. Additionally, a critical density was identified as the transition point from porous-type to bulk-type material. The validity of the scaling law under finite deformation was also analyzed.

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