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Numerical Simulation of Ballistic Impact on Armour Plate with a Simple Plasticity Model

机译:用简单塑性模型数值模拟弹道对装甲板的冲击

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摘要

Ballistic impact of a steel projectile on armour steel plate is examined by numerical simulations using 3-D nonlinear dynamic explicit finite element code ANSYS LS-DYNA. Simulations are attempted using a simple strain rate dependent plasticity model that can capture large strain, strain rate hardening and fracture encountered at high velocity ballistic impacts. Initial simulations are carried out for a cylindrical bullet with a semi-spherical nose shape impacting a military vehicle door at two different velocities as a test problem. This is then extended to simulate a real problem of armour piercing shot impact on a thick armour steel plate at ordnance velocity regime. The former is compared with results reported in published literature while the latter is assessed with the experimental findings. The deformation pattern generated in the deformed armour plate, residual projectile velocity and displacement of the projectile are taken as the necessary parameters for evaluating the results of simulation. The study presented in this paper demonstrates the effectiveness of the adopted simple plasticity model to simulate a highly nonlinear phenomenon to reasonably predict the physically measurable impact parameters.
机译:通过使用3-D非线性动态显式有限元代码ANSYS LS-DYNA的数值模拟,研究了钢弹对装甲钢板的弹道冲击。使用简单的依赖于应变率的可塑性模型尝试进行仿真,该模型可以捕获在高速弹道冲击中遇到的大应变,应变率硬化和断裂。作为测试问题,对具有半球形鼻子形状的圆柱形子弹以两个不同的速度撞击军车门进行了初始模拟。然后将其扩展为模拟弹药速度状态下装甲穿甲弹对厚装甲钢板的实际冲击问题。将前者与已发表文献中报道的结果进行比较,而将后者与实验结果进行评估。在变形装甲板上产生的变形模式,剩余弹丸速度和弹丸位移被用作评估模拟结果的必要参数。本文提出的研究证明了采用简单可塑性模型模拟高度非线性现象以合理预测物理可测量冲击参数的有效性。

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