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Deformation and perforation of cylindrical shells struck normally by blunt projectiles

机译:钝弹丸正常击中的圆柱壳的变形和穿孔

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摘要

An approximate theory is proposed in this paper to predict the deformation and perforation of metallic cylindrical shells struck normally by blunt projectiles at velocities up to 229 m 5~1 On the basis of the experimental observations ofquasi-static load-displacement characteristics, the problem of a cylindrical shell impacted normally by a blunt projectile can be tackled through the solution of an equivalent clamped circular plate struck transversely by the same projectile. It is shownthat the approximate theoretical predictions are in good agreement with the experimental results for cylindrical shells in terms of the maximum permanent transverse displacements and the critical impact velocities (ballistic limits) when material strainrate sensitivity is taken into account.
机译:本文提出了一种近似理论来预测钝性弹丸在高达229 m 5〜1的速度下正常击打的金属圆柱壳的变形和穿孔。在对准静态载荷-位移特性进行实验观察的基础上,提出了问题。可以通过解决由同一个弹丸横向撞击的等效夹紧圆盘的方法来解决通常受钝的弹丸撞击的圆柱壳。结果表明,考虑到材料应变速率敏感性,在最大永久横向位移和临界冲击速度(弹道极限)方面,近似的理论预测与圆柱壳的实验结果吻合良好。

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