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Cylindrical cavity expansion penetration model for concrete targets with shear dilatancy

机译:剪胀性混凝土靶的圆柱孔扩张渗透模型

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摘要

A dynamic cylindrical cavity expansion model is presented herein to predict the penetration of concrete targets subjected to impact by conical-nosed projectiles at normal incidence. It is assumed that cavity expansion in an infinite concrete target produces three response regions: elastic, cracked, and comminuted regions. To allow for compressibility or dilatancy of the material in the comminuted region, a dilatant-kinematic relation is introduced in this paper. A procedure is first given to calculate the radial stress at the cavity surface, and then, a numerical method is used to calculate the results of penetration with friction being taken into account. It transpires that the present model predictions are in reasonable agreement with the available experimental data.
机译:本文介绍了一种动态圆柱腔膨胀模型,以预测在法向入射时受到圆锥形弹头撞击的混凝土目标的穿透力。假定无限的混凝土目标中的型腔膨胀会产生三个响应区域:弹性,破裂和粉碎区域。为了使材料在粉碎区域中具有可压缩性或膨胀性,本文引入了膨胀运动学关系。首先给出一个程序来计算型腔表面的径向应力,然后,采用一种数值方法来计算考虑到摩擦的渗透结果。可以看出,目前的模型预测与可用的实验数据合理地吻合。

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