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Onset of failure in argon by the effect of a shockwave: A molecular dynamics study

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Computational Materials Science 49 (3) 582 (2010)
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Simulation of Damage Percolation Within Aluminum Alloy Sheet

O. S. Orlov, M. J. Worswick, E. Maire and D. J. Lloyd
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Atomistic simulations of shock induced microstructural evolution and spallation in single crystal nickel

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Journal of Applied Physics 101 (4) 043504 (2007)
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Atomistic Simulations of the Plasticity Behavior of Shock-Induced Polycrystalline Nickel

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https://doi.org/10.1007/s11661-007-9277-4

Quantitative description of damage evolution in ductile fracture of tantalum

J. M. Rivas, A. K. Zurek, W. R. Thissell, D. L. Tonks and R. S. Hixson
Metallurgical and Materials Transactions A 31 (3) 845 (2000)
https://doi.org/10.1007/s11661-000-0028-z

Quantitative description of damage evolution in ductile fracture of tantalum

J. M. Rivas, A. K. Zurek, W. R. Thissell, D. L. Tonks and R. S. Hixson
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https://doi.org/10.1007/s11661-000-1004-3

Microcracks, spall and fracture in glass: A study using short pulsed laser shock waves

Xin-Zen Li, M. Nakano, Y. Yamauchi, K. Kishida and K. A. Tanaka
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Constitutive Relation in High/Very High Strain Rates

Xin-zen Li, Motohiro Nakano, Yoshiaki Yamauchi, Keizo Kishida and Kazuo A. Tanaka
Constitutive Relation in High/Very High Strain Rates 209 (1996)
https://doi.org/10.1007/978-4-431-65947-1_24