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Modeling dynamic deformation and failure of thin-walled structures under explosive loading

机译:爆炸载荷下薄壁结构动力变形与破坏建模

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In the framework of mechanics of damaged media, behavior of thin-walled structures under pulsed loading is described. Account is taken of the interaction of the processes of dynamic deformation and damage accumulation, as well as of the main characteristic features of the dynamic failure process: the multi-staged character, nonlinear summation of damage, stressed state history and accumulated damage level. The chosen system of equations of thermo-plasticity describes the main effects of dynamic deformation of the material for random deformation trajectories. The equations of state are based on the notions of yield surface and the principle of gradientality of the plastic strain rate vector. Evolutionary equations of damage accumulation are written for a scalar parameter of damage level and are based on energy principles. The effect of the stressed state type and the accumulated damage level on the processes of nucleation, growth and merging of microdefects is accounted for. Results of numerically modelling processes of dynamic deformation and failure of spherical and closed cylindrical shells with plane and hemispherical bottoms under single pulsed explosive loading are presented. The computational results are compared with experimental data.
机译:在受损介质的力学框架内,描述了脉冲载荷下薄壁结构的行为。考虑了动态变形和损伤累积过程的相互作用以及动态破坏过程的主要特征:多阶段特征,损伤的非线性求和,应力状态历史和累积损伤水平。所选的热塑性方程组描述了材料动态变形对随机变形轨迹的主要影响。状态方程基于屈服面的概念和塑性应变率矢量的梯度原理。针对损伤水平的标量参数编写了损伤累积的演化方程,并基于能量原理。考虑了应力状态类型和累积损伤水平对微缺陷的成核,生长和合并过程的影响。给出了在单脉冲炸药载荷下具有平面和半球形底部的球形和封闭圆柱壳的动态变形和破坏的数值模拟过程的结果。将计算结果与实验数据进行比较。

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