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Titlebook: High-Pressure Shock Compression of Solids IV; Response of Highly P Lee Davison,Y. Horie,Mohsen Shahinpoor Book 1997 Springer-Verlag New Yor

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Developments in Constitutive Modeling of Shock-Induced Reactions in Powder Mixtures,ilities for new material development from high-pressure chemical reactions and the low cost of achieving high dynamic pressures [1–4]. These reactions may additionally benefit from inter-particle mass mixing and rapid thermal changes in the shock wave environment to produce fine microstructures in t
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Recent Developments in Modeling Shock Compression of Porous Materials,ons such as shock wave attenuation [1–4], compaction-to-detonation ignition in energetic materials such as porous granular explosives [5–7], and, especially, dynamic consolidation and synthesis of high-performance materials [8–11]. The compaction and bonding of powders as well as the initiation or s
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The Numerical Simulation of the Dynamic Compaction of Powders,ocess. The random particle packing in powders, the distribution of particle sizes, the nonlinear material response, and the large strains and vortices in the material behind the shock prevent a detailed analytical treatment on the micromechanical level. Finite element and finite difference methods p
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Book 1997mical reactions. By presenting not only the most recent results, but also the open questions that remain, these essays convey the excitement of developing a scientific basis for understanding shock compression of highly porous solids. Topics covered include > Shock Compression Science in Highly Poro
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