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Simulations of the penetration of 6061-T6511 aluminum targets by spherical-nosed VAR 4340 steel projectiles

机译:球形鼻VAR 4340钢弹对6061-T6511铝靶的侵彻模拟

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摘要

In certain penetration events it is proposed that the primary mode of deformation of the target can be approximated by known analytical expressions. In the context of an analysis code, this approximation eliminates the need for discretizing the target as well as the need for a contact algorithm. Thus, this method substantially reduces the computer time and memory requirements. In this paper a forcing function which is derived from a spherical-cavity expansion (SCE) analysis has been implemented in a transient dynamic finite element code. This implementation is capable of computing the structural and component responses of a projectile due to a three dimensional penetration event. Simulations are presented for 7.11-mm-diameter, 74.7-mm-long, spherical-nose, vacuum-arc-remelted (VAR) 4340 steel projectiles that penetrate 6061-T6511 aluminum targets. Final projectile configurations obtained from the simulations are compared with post-test radiographs obtained from the corresponding experiments. It is shown that the simulations accurately predict the permanent projectile deformation for three dimensional loadings due to incident pitch and yaw over a wide range of striking velocities.
机译:建议在某些穿透事件中,目标的变形的主要模式可以通过已知的分析表达式来近似。在分析代码的上下文中,这种近似消除了对离散化目标的需求以及对接触算法的需求。因此,该方法大大减少了计算机时间和内存需求。在本文中,已经在瞬态动态有限元代码中实现了从球体腔扩展(SCE)分析得出的强迫函数。该实现能够计算由于三维穿透事件而引起的弹丸的结构和部件响应。针对直径为7.11毫米,长度为74.7毫米的球形鼻,真空电弧重熔(VAR)4340钢弹丸进行了仿真,该弹丸穿透了6061-T6511铝靶。从模拟获得的最终弹丸配置与从相应实验获得的测试后射线照相进行比较。结果表明,在大范围的打击速度下,由于入射俯仰和偏航,模拟可以准确地预测三维载荷下的永久弹丸变形。

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