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Numerical Investigations on the Impact of Hemi Spherically Tipped Projectiles on Thin Plates

机译:关于薄板上半周尖头射孔影响的数值研究

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Numerical investigations were carried out on 1.27 mm thick 2024-O aluminum plates against hemi spherically tipped nose, steel projectiles, of 12.7 mm diameter and 37.7 gram mass. Three-dimensional numerical simulations of the problem were carried out using finite element code ABAQUS. The ABAQUS/Explicit finite element code, in conjunction with Johnson-Cook elasto-viscoplastic material model, proposed by Lesuer [1] was employed to perform the simulation. The present studies are concerned with the measurement of impact forces and permanent deflections produced by rigid projectiles during contact and perforation of the plates. The numerical results thus obtained were compared with the experimental results obtained by Levy and Goldsmith [2] and a close correlation between the two was found. The results obtained showed a consistent increase in the ballistic resistance of target with an increase in the incidence velocity. The failure mode of the target was also found to be affected by a change in the incidence velocity.
机译:数值研究了关于对半1.27毫米厚2024-O铝板球形尖鼻子,钢弹进行12.7毫米直径37.7克质量的出来。问题的三维数值模拟进行了利用有限元代码ABAQUS。的ABAQUS /显式有限元程序中,与约翰逊库克弹粘塑性材料模型,通过Lesuer提出结合[1]被用来执行仿真。本研究关注的是冲击力和由板的接触和穿孔期间刚性弹产生的永久变形的测量。这样得到的数值计算结果与由Levy和史密斯[2]和两者之间的紧密相关性,发现所获得的实验结果进行比较。获得的结果显示在目标的防弹性能持续增加与增加的发病率的速度。还发现靶的故障模式通过在发病速度的变化的影响。

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