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Updated: Aug 9, 2026

A Virtual Simulation Experiment of Mechanics: Material Deformation and Failure Based on Scanning Electron Microscopy
Published on: January 20, 2023
Simulating materials failure by using up to one billion atoms and the world's fastest computer: Brittle fracture
Farid F Abraham1, Robert Walkup, Huajian Gao
1IBM Research Division, Almaden Research Center, San Jose, CA 95120; T. J. Watson Research Laboratory, Yorktown Heights, NY 10598; Max-Planck Institut für Metallforschung, Stuttgart, D-70569 Germany; and Lawrence Livermore National Laboratory, Livermore, CA 94550.
Abstract:
We describe the first of two large-scale atomic simulation projects on materials failure performed on the 12-teraflop ASCI (Accelerated Strategic Computing Initiative) White computer at Lawrence Livermore National Laboratory. This is a multimillion-atom simulation study of crack propagation in rapid brittle fracture where the cracks travel faster than the speed of sound. Our finding centers on a bilayer solid that behaves under large strain like an interface crack between a soft (linear) material and a stiff (nonlinear) material. We verify that the crack behavior is dominated by the local (nonlinear) wave speeds, which can be in excess of the conventional sound speeds of a solid.
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