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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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Explosive Fragmentation, currently a number of hydrodynamic finite difference Lagrangian codes available which do a reasonable job of predicting the fracture and fragmentation that results from explosive loading [1–3]. These codes are particularly useful for estimating the amount of damage that has occurred at a particular
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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 pro
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Spall and Fragmentation in High-Temperature Metals, the structure during the interaction. The characteristic size and velocity of fragments and the thermodynamic state of fragment debris are directly linked to the intensity of the impact-induced shock waves. Compressional or elastic potential energy introduced by the shock wave is converted to diver
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Simplified Models of Fracture and Fragmentation,ary to generate a new data set for each new application. We will not discuss such models here, even though they have proven very useful in the weapons effects community. Instead, we will concentrate on emerging physics-based models that, at least to some degree, describe the nucleation of damage at
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