Materials under Shock Loading: from Biot's Theory to Nano-Poromechanics
Author:
Publisher
American Society of Civil Engineers
Link
http://ascelibrary.org/doi/pdf/10.1061/9780784412992.102
Reference20 articles.
1. Allen M.P. Tildesley D.J. (1987). Molecular Simulation of Liquids. Oxford University Press Oxford.
2. Al-Qananwah A. K . Koplik J. Andreopoulos Y. (2013). "Shock Wave Interactions with Nanostructured Materials: a Molecular Dynamics Approach" Shock Waves DOI 10.1007/s00193-012-0397-4 Vol. 23(1) pp. 69-80.
3. Andreopoulos Y. Xanthos S. Subramaniam K. (207). "Moving shocks through metallic grids: their interaction and potential for blast wave mitigation." Shock Waves vol. 16(6) pp. 455-466.
4. A two-phase mixture theory for the deflagration-to-detonation transition (ddt) in reactive granular materials
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