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Efficient Method to Evaluate Critical Ricochet Angle of Projectile Penetrating into a Concrete Target

机译:评估弹丸侵彻混凝土目标的临界弹跳角的有效方法

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In this study, we propose an efficient computation method to estimate the critical ricochet angle (CRA) for oblique penetration into concrete targets which is based on the spherical cavity-expansion theory. During penetrating event, the resistance force on the projectile nose is approximated by semi-empirical function from the spherical cavity-expansion theory and projectile motion of oblique penetration is predicted to verify the proposed numerical method with the aid of finite differential approach. In order to enhance the accuracy of projectile motion, the empirical constants of the semi-empirical function are obtained with respect to the oblique angle by conducting finite element analyses of the oblique penetration. CRA is then obtained by predicting the projectile motion at the various oblique angles and verified with results of finite element analysis. Our work presents that the reliable CRA can be estimated efficiently by employing a series of the numerical simulations. We believe that our proposed numerical method will provide a useful analysis platform for designing penetrator warhead which hits the target at an oblique impact angles.
机译:在这项研究中,我们提出了一种有效的计算方法,该方法基于球形孔扩展理论,估计了斜向渗入混凝土目标的临界弹跳角(CRA)。在穿透过程中,通过球面膨胀理论的半经验函数,可以估算弹头上的阻力,并预测弹丸的斜向穿透运动,以借助有限差分方法来验证所提出的数值方法。为了提高弹丸运动的准确性,通过对斜穿度进行有限元分析,获得了相对于斜角的半经验函数的经验常数。然后,通过在各种倾斜角度预测弹丸运动来获得CRA,并通过有限元分析的结果进行验证。我们的工作表明,通过采用一系列数值模拟,可以有效地估算出可靠的CRA。我们认为,我们提出的数值方法将为设计以倾斜冲击角击中目标的穿透弹头提供有用的分析平台。

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