首页> 外文期刊>International journal of structural stability and dynamics >GENERATING PENETRATION RESISTANCE FUNCTIONS WITH A VIRTUAL PENETRATION LABORATORY (VPL): APPLICATIONS TO PROJECTILE PENETRATION AND STRUCTURAL RESPONSE SIMULATIONS
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GENERATING PENETRATION RESISTANCE FUNCTIONS WITH A VIRTUAL PENETRATION LABORATORY (VPL): APPLICATIONS TO PROJECTILE PENETRATION AND STRUCTURAL RESPONSE SIMULATIONS

机译:虚拟渗透实验室(VPL)产生的渗透阻力函数:在弹丸渗透和结构响应模拟中的应用

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摘要

A new software package called the Virtual Penetration Laboratory (VPL) has been developed to automatically generate and optimize penetration resistance functions. We have used this VPL code to generate highly "tuned" penetration resistance functions that can distinctly model the penetration trajectory of steel projectiles into rate-independent, elastic-perfectly plastic aluminum targets. Projectiles with arbitrary nose geometry were considered in this example (i.e. conical, ogival, and spherical nose shapes). The penetration resistance of the aluminum target was determined by numerically solving a series of spherical and cylindrical cavity expansion problems. The solution to these cavity expansion problems were obtained with an explicit, dynamic finite element code that accounts for material and geometric nonlinearities. The resulting cavity expansion equations are then transformed to penetration resistance functions using various transformation algorithms, in order to determine an appropriate method to spatially distribute the resisting stresses on the projectile nose. The resulting penetration resistance functions were then used in a penetration trajectory code to predict the actual trajectories observed from a set of similar experiments.
机译:已经开发了一种称为虚拟渗透实验室(VPL)的新软件包,可以自动生成和优化防渗透功能。我们已经使用此VPL代码生成了高度“调整”的抗穿透功能,可以将钢弹的穿透轨迹清楚地建模为速率无关,弹性完美的塑料铝靶​​。在此示例中考虑了具有任意鼻子几何形状的射弹(即圆锥形,球形和球形鼻子形状)。铝靶的抗穿透性是通过数值解决一系列球形和圆柱形空腔膨胀问题来确定的。通过考虑材料和几何非线性的显式动态有限元代码获得了解决这些空腔膨胀问题的方法。然后,使用各种转换算法将所得的腔体扩展方程式转换为抗穿透力函数,以便确定一种在空间上分配弹头上的抵抗应力的适当方法。然后将所得的抗渗透性函数用于渗透轨迹代码中,以预测从一组类似实验中观察到的实际轨迹。

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