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cond-mat.mtrl-sci2026

A Combined Microbeam and Phase-Field Approach to Identify the Toughness and Ultimate Strength of Amorphous Silica

Gustavo Alberto Rosales-Sosa, Gergely Molnar, Yoshinari Kato +7

The paper introduces a combined microbeam testing and phase‑field modeling method to simultaneously measure the fracture toughness (Gₙ) and ultimate tensile strength of amorphous s…

cond-mat.soft2026

Amorphous Silicates -- Time-Current Superposition and the Dynamics of Plastic Flow in the Glassy State

Matthieu Bourguignon, Gustavo A. Rosales-Sosa, Yoshinari Kato +4

Electron irradiation enables quantitative control over the plastic flow dynamics of silicate glasses, even far below the glass transition temperature. Through stress-relaxation exp…

cond-mat.mtrl-sci2026

How glass breaks -- Damage explains the difference between surface and fracture energies in amorphous silica

Gergely Molnár, Etienne Barthel

The difference between free surface energy and fracture toughness in amorphous silica is studied via multi-scale simulations. We combine the homogenization of a molecular dynamics…

cond-mat.soft2026

Fracture initiation in silicate glasses via a universal shear localization mechanism

Matthieu Bourguignon, Gustavo Alberto Rosales-Sosa, Yoshinari Kato +6

Shear bands lie at the root of fracture initiation in bulk metallic glasses and amorphous polymers. For silicate glasses, in contrast, studies have largely emphasized permanent vol…