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Simulation of dynamic response of projectile and granular target

机译:弹丸和颗粒目标动力响应的仿真

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In the present study, the three-dimensional elastic discrete element method (DEM) and the elastic finite element method (FEM) analysis were, respectively, applied to the randomly distributed identical spheres as a granular target and to the cylindrical projectiles in order to clarify dynamic response during penetration. In the target, it was found that highly densified region was formed just ahead of the projectile and began to propagate spherically at much higher velocity than that of projectile leaving relatively rarefied region. It was also found that the peak resistance during penetration was closely related to the initial formation of densified region and was expressed in terms of momentum change of target particles accelerated by the projectile. Stress wave propagation in the projectiles with various body lengths was investigated during penetration and was discussed in connection with dynamic response of target particles ahead of the projectile. Effect of mechanical properties of projectile on the peak resistance was also investigated and was understood in connection with dynamic behavior of target particles.
机译:在本研究中,分别将三维弹性离散元方法(DEM)和弹性有限元方法(FEM)分析应用于随机分布的相同球体作为颗粒目标和圆柱弹丸,以阐明渗透过程中的动态响应。在目标中,发现高密度区域形成在弹丸的正前方,并开始以比弹丸高得多的速度球形传播,而留下相对稀疏的区域。还发现,穿透过程中的峰值电阻与致密区域的初始形成密切相关,并以由弹丸加速的目标颗粒的动量变化表示。在穿透过程中研究了应力波在不同体长的弹丸中的传播,并讨论了弹丸之前目标粒子的动态响应。还研究了弹丸的机械性能对峰值电阻的影响,并与目标粒子的动态行为有关。

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