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DEM/FEM Simulations of Dynamic Response of Projectile Penetrating into Granular Medium

机译:抛出粒介质射伤动态响应的DEM / FEM模拟

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Dynamic elastic Finite Element Method (FEM) and Discrete element method (DEM) simulations are carried out to investigate dynamic penetration of a projectile into a target of granular medium. It was found that the highly densified region of granular medium was generated just ahead of the projectile and began to propagate spherically with much higher velocity than that of projectile which leaves relatively rarefied medium region. This propagation phenomenon was probably the result of a collision and momentum transfer between particles in target granular medium. The propagation velocity of the densified region decreased during penetration as depending not only on the packing ratio of target medium but also on the projectile velocity. The resistance force of projectile was also investigated in the case of penetration of projectiles with various body lengths. The resistance force increased rapidly and reached to the peak. The peak value was expressed in terms of momentum change of target particles. The resistance force decreased periodically after the peak value. The period clearly depended on the length of projectile. It is obvious that this was caused by the stress wave reverberations in the projectiles with various body lengths.
机译:动态弹性有限元方法(FEM)和离散元素方法(DEM)模拟,以研究射弹的动态渗透到粒状培养基的靶标中。结果发现,在射弹之前产生高度致密的粒状区域,并且开始以比留下相对稀有的介质区域的射弹更高的速度球体球形。这种传播现象可能是靶颗粒介质中颗粒之间的碰撞和动量转移的结果。致密区域的传播速度在渗透期间减小,而不仅根据目标培养基的填充比而且对射弹速度的填充率而降低。在射弹的情况下,还研究了射弹的抵抗力,各种车身长度。阻力迅速增加并达到峰值。以靶颗粒的动量变化表示峰值。在峰值后,电阻力周期性地降低。这段时间明确依赖于射弹的长度。很明显,这是由射弹中的应力波浪混响引起的,射弹具有各种体长。

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