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Experimental and Numerical Studies on Mild Steel Plates against 7.62 API Projectiles

机译:7.62 API射弹对温和钢板的实验性和数值研究

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The ballistic resistance of 12 mm thick mild steel plates has been studied against 7.62 API projectiles through numerical simulations carried out using ABAQUS/Explicit finite element code. The incidence angle was varied as 0°, 15°, 30°, 45°, 57°and 59°. The material parameters for the JC model proposed by the Authors were employed to predict the material behavior of the target, while the material behavior of the projectile was incorporated from the available literature. The numerical results thus obtained have been compared with the experiments reported in earlier study, wherein the incidence velocities of the projectile were considered close to 820 m/s. The experimental and numerical results with respect to failure mechanism, residual projectile velocity and critical angle of ricochet have been compared. A close correlation between the experimental findings and the predicted results has been found. In general, the resistance of the target has been found to increase with increase in target obliquity.
机译:通过使用ABAQUS /显式有限元代码进行的数值模拟,研究了12mm厚的温和钢板的抗突抗性。入射角变化为0°,15°,30°,45°,57°和59°。作者提出的JC模型的材料参数被用来预测目标的材料行为,而射弹的材料行为纳入可用文献。将由此获得的数值结果与早期研究中报道的实验进行了比较,其中射弹的入射速度被认为接近820 m / s。已经比较了关于失效机构,Ricochet的残余射弹速度和临界角的实验和数值结果。发现了实验结果与预测结果之间的紧密相关性。通常,已发现靶标的抗性随着目标倾斜度的增加而增加。

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