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Titlebook: Behavior of Materials under Impact, Explosion, High Pressures and Dynamic Strain Rates; Maxim Yu. Orlov,Visakh P. M. Book 2023 The Editor(

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发表于 2025-3-21 19:27:57 | 显示全部楼层 |阅读模式
期刊全称Behavior of Materials under Impact, Explosion, High Pressures and Dynamic Strain Rates
影响因子2023Maxim Yu. Orlov,Visakh P. M.
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发行地址Presents experimental and theoretical studies of destruction of solids.Identifies the basic laws of the destruction of bodies under dynamic loads.Performs studies on unique ballistic installations wit
学科分类Advanced Structured Materials
图书封面Titlebook: Behavior of Materials under Impact, Explosion, High Pressures and Dynamic Strain Rates;  Maxim Yu. Orlov,Visakh P. M. Book 2023 The Editor(
影响因子.This book presents the results of experimental and theoretical studies of the destruction of solids under impact, explosion, high pressures, and strain rates. The content identifies the basic laws of the destruction of bodies under dynamic loads. The results of numerical studies were obtained using numerical methods on the Lagrangian, Euler, and ALE approaches to the description of the motion of continuous media. Numerical methods and mathematical models have been tested by comparison with experimental data and well-known analytical solutions (for instance, Rankin–Hugoniot laws). Experimental studies were performed on unique ballistic installations with the registration of fast processes (high-speed shooting). The results are used as new tests to verify the developing modeling methods. The research objects were metal multilayer plates, functionally graded materials, advanced, smart, and natural materials, etc. The book is interesting to specialists in the field of mathematical modeling and experimental methods for studying fast processes under dynamic loading.. . .
Pindex Book 2023
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Fictitious Absorption Method in a Dynamic Problem for a Layer Weakened by a Crack,
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Behavior of Materials under Impact, Explosion, High Pressures and Dynamic Strain Rates
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https://doi.org/10.1007/978-3-663-19750-8ne-dimensional model. The results of the simplified approaches were compared with 3D simulation in the LS-DYNA program package results. In the calculations in the LS-DYNA package, finite element models of impactors with direct geometric porosity assignment were used. The approaches considered can be
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Gerhard Uhlenbruck,Gerold Wintzer,Olaf Kochhe transmission of slow perturbation. It is shown as well that the choice of the variant of the neighborhood models of cellular automata only slightly affects the shape of the propagating fronts of slow perturbations in the medium.
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About Mechanical Behavior and Effective Properties of Metal Matrix Composites Under Shock Wave Loadon-stationary and essentially non-uniform fields of stresses and strains at the mesoscopic scale. Generation of a dissipative structure at the mesoscopic scale in the composites under shock wave loading was revealed in the simulations. Cracks in ceramic particles, cracks between particles and matrix
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