Elastic-plastic collapse of super-elastic shock waves in face-centered-cubic solids

Shock waves in the [110] and [111] directions of single-crystal Al samples were studied using molecular dynamics (MD) simulations. Piston-driven simulations were performed to investigate the split shock-wave regime. At low piston velocities, the material is compressed initially to a metastable over-...

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Veröffentlicht in:Journal of physics. Conference series 2014-01, Vol.500 (17), p.172007-6
Hauptverfasser: Zhakhovsky, Vasily V, Inogamov, Nail A, Demaske, Brian J, Oleynik, Ivan I, White, Carter T
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Sprache:eng
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Zusammenfassung:Shock waves in the [110] and [111] directions of single-crystal Al samples were studied using molecular dynamics (MD) simulations. Piston-driven simulations were performed to investigate the split shock-wave regime. At low piston velocities, the material is compressed initially to a metastable over-compressed elastic state leading to a super-elastic single shock wave. This metastable elastic state later collapses to a plastic state resulting in the formation of a two-wave structure consisting of an elastic precursor followed by a slower plastic wave. The single two-zone elastic-plastic shock-wave regime appearing at higher piston velocities was studied using moving window MD. The plastic wave attains the same average speed as the elastic precursor to form a single two-zone shock wave. In this case, repeated collapse of the highly over-compressed elastic state near the plastic shock front produces ultrashort triangle pulses that provide the pressure support for the leading elastic precursor.
ISSN:1742-6596
1742-6588
1742-6596
DOI:10.1088/1742-6596/500/17/172007