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Cavitation phenomenon in penetration of rigid projectiles into elastic-plastic targets

机译:刚性射弹渗透到弹性塑料靶标中的空化现象

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This paper presents an analytical study on the cavitation phenomenon during penetration of a rigid projectile into an elastic-plastic target. The developed analytical approach is based on the general solution of the quasi static and non-stationary dynamic cylindrical/spherical cavity expansion problem with assigned kinematic boundary condition at the cavity boundary (variable, time dependent radial velocity). An analytical projectile target separation criterion is developed for a projectile having an arbitrary shape and for a target described by a simplified material model with a locked equation of state and a linear shear failure relationship. This relatively simple model may represent the behavior of different materials reasonably well yet allow an analytical solution of the problem. The paper derives the analytical expression of the contact zone size using both the cylindrical and spherical cavity expansion approaches and presents the related normal contact stresses acting on the projectile nose surface that maintains contact with the target. Examples of the developed formulation is presented for ogive nose and Rankine ovoid projectiles hitting aluminum targets, with a constant shear failure envelope, at different velocities and comparisons with known analytical and numerical solutions are shown. The effect of projectile and medium properties on the size of the contact zone are studied.
机译:本文介绍了刚性射弹渗透到弹性塑料靶中的空化现象的分析研究。开发的分析方法基于准静态和非静止动态圆柱形/球形腔腔展开问题的一般解,在腔边界(可变,时间依赖性径向速度)处具有指定的运动边界条件。为具有任意形状的射弹和由具有锁定方程和线性剪切失效关系的简化材料模型描述的射弹和针对具有线性剪切失效关系的靶的射弹和针对具有任意形状的射弹和目标的射弹。这种相对简单的模型可以代表合理良好的不同材料的行为,但允许问题的分析解决方案。纸张通过圆柱形和球形腔膨胀方法产生接触区尺寸的分析表达,并呈现作用在射弹鼻表面上的相关正常接触应力,该射流鼻表面与目标保持接触。出现显影剂的实例用于初始鼻子和兰氏卵形射弹,击中铝靶标,在不同的剪切衰竭包络处,在不同的速度和与已知分析和数值溶液的比较下。研究了射弹和介质性质对接触区尺寸的影响。

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