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Titlebook: High-Pressure Shock Compression of Solids II; Dynamic Fracture and Lee Davison,Dennis E. Grady,Mohsen Shahinpoor Book 1996 Springer-Verlag

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https://doi.org/10.1007/978-1-4612-2320-7deformation; high-pressure; stability; wave propagation
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Radiographic Studies of Impact Fragmentation, this interest is work to incorporate dynamic fracture and fragmentation models in numerical simulations of impact events. As interest in fragmentation has developed, many static and dynamic techniques have been employed to obtain experimental data used to further our understanding of the impact process and to evaluate the models.
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Pulsed Holography Diagnostics of Impact Fragmentation,ion in a relatively clean test environment. While other techniques for studying dynamic fragmentation such as explosives tests may also be suitable for holographic diagnostics, extensive development would be required to protect the holographic plates from fogging and physical damage in such test environments.
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2197-9529 the highest possible rates. The plan for the volume is to address experimental, theoretical, and com­ putational aspects of high-rate dynamic fracture and fragmentation, with emphasis on recent work. We begin with several chapters in which the emphasis falls on experimental methods and observations.
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Spallation in Solids Under Shock-Wave Loading: Analysis of Dynamic Flow, Methodology of Measurementace with a soft material) during the shock-wave loading give the most correct data about stresses present during the spall process. The theoretical background of these measurements is discussed in Section 1.2 of this chapter.
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A Unified Theory of Flow, Hot Spots, and Fragmentation with an Application to Explosive Sensitivityors, the possibility of an exact, predictive theory for complex solids is no more promising than for sociology, where so many different complex considerations interact. Geometric nonlinearities, anisotropy, and phase changes present additional complications.
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