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Investigation on high-velocity impact performance of multi-layered alumina ceramic armors with polymeric interlayers

机译:具有聚合物夹层的多层氧化铝陶瓷装甲的高速冲击性能研究

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摘要

In this study, ballistic behavior of multi-layered ceramic armors under high velocity impact is studied numerically. The model consists of 2D-axisymmetric Lagrangian approach with Johnson-Holmquist constitutive model for alumina ceramic tiles, Mie-Gruneisen equation of state for polymeric interlayers, and Johnson-Cook constitutive relation for Armor Piercing (AP) projectile. The finite element results obtained from various armor layups show the potentiality of multi-layered ceramic armor in extending conoid fracture through the ceramic layers, thus leading to the increase in the armor performance. It is illustrated that besides ceramic armor layup, interlayers of ceramic tiles have a significant role in increasing the armor performance. Finally, the effect of different polymeric interlayers on ballistic performance of multi-layered ceramic armors against AP projectile is investigated. In order to measure the ballistic performance of the armors, various criteria are introduced. Depth of penetration of the projectile in the armor, residual velocity of the projectile, time duration in which the projectile is engaged inside the armor, projectile tip erosion during impact, and interaction volume ratio are some of these criteria. The study indicates that armor layup with thin front ceramic tiles backed by thicker tiles shows better conoid fracture extension and often better ballistic performance. Furthermore, among the polymeric interlayers used between the ceramic tiles, polystyrene causes the best and nylon causes the worst ballistic performance in the armor.
机译:在这项研究中,数值研究了多层陶瓷装甲在高速冲击下的弹道行为。该模型由2D轴对称拉格朗日方法,氧化铝瓷砖的Johnson-Holmquist本构模型,聚合物夹层的Mie-Gruneisen状态方程和Armor Piercing(AP)弹丸的Johnson-Cook本构关系组成。从各种装甲叠层获得的有限元结果表明,多层陶瓷装甲有可能使圆锥形断裂延伸穿过陶瓷层,从而提高装甲性能。可以看出,除了陶瓷铠装层外,瓷砖中间层在提高铠装性能方面也起着重要作用。最后,研究了不同聚合物夹层对多层陶瓷装甲抗AP弹道弹道性能的影响。为了测量装甲的弹道性能,引入了各种标准。这些条件包括:弹丸在装甲中的穿透深度,弹丸的剩余速度,弹丸在装甲内部啮合的持续时间,冲击过程中弹头尖端腐蚀以及相互作用体积比。研究表明,用较薄的前部瓷砖和较厚的瓷砖支撑的装甲铺层显示出更好的圆锥形断裂扩展和通常更好的弹道性能。此外,在瓷砖之间使用的聚合物中间层中,聚苯乙烯在铠装中是最好的,而尼龙则是最差的防弹性能。

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