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Penetration analysis of a projectile in ceramic composite armor

机译:陶瓷复合装甲中弹丸的侵彻分析

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In this research an armor material with constant thickness has been studied. The armor consists of two layers: one is a boron carbide ceramic and the other is Kevlar 49 fiber composite material. By using Ansys/Lsdyna software, the ballistic limit velocity of this armor has been obtained and the Heterington equation (optimum thickness of layers) has been verified for constant thickness of the armor. In this research, mechanical properties of Kevlar 49 under different strain rates are utilized and showed that consideration of the strain rate is very important for the simulation of penetration process. Results from the model have confirmed the validity of the Chocron-Galvez analytical model. Moreover, the projectile velocity prediction, especially at high velocity, shows a good agreement with numerical simulations. Finally, normal and oblique impacts of projectile to armor have been simulated and compared. The results show that the ballistic limit velocity of armor increases under oblique impact conditions.
机译:在这项研究中,已经研究了具有恒定厚度的装甲材料。装甲包括两层:一层是碳化硼陶瓷,另一层是凯夫拉尔49纤维复合材料。通过使用Ansys / Lsdyna软件,已获得了该装甲的弹道极限速度,并且已针对装甲的恒定厚度验证了Heterington方程(最佳层厚度)。在这项研究中,利用了Kevlar 49在不同应变速率下的力学性能,并表明考虑应变速率对于模拟穿透过程非常重要。该模型的结果证实了Chocron-Galvez分析模型的有效性。此外,弹丸速度的预测,特别是在高速下,与数值模拟显示出很好的一致性。最后,模拟并比较了弹丸对装甲的正常和倾斜影响。结果表明,在倾斜冲击条件下,装甲的弹道极限速度增加。

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