Evaluating the performance of ceramic/fabric composite panels against simultaneous steel projectile impacts: An experimental and numerical study

IF 3.6 FirePhysChem Pub Date : 2025-03-01 Epub Date: 2024-05-14 DOI:10.1016/j.fpc.2024.05.004
M.D. Umbharatwala, S.S. Raut, Manmohan Dass Goel
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Abstract

In order to evaluate the ballistic performance of ceramic/fabric composite panels developed using 99.5 % alumina, Kevlar® and carbon fiber fabrics; a series of experiments were performed on the physical samples. The composite-projectile interaction was investigated in detail by means of finite element analysis using LS-DYNA®. The validated numerical model of the ceramic/fabric composite system was tactically modified to investigate the composite/projectile interaction for simultaneous projectile impacts at different impact velocities. The numerical model predicted the failure mechanism of the composite panel and the exit velocity of the projectile piercing through the composite accurately. This study reveals the important aspects of ballistic impact on composites under simultaneous multiple projectile impact condition which in turn, is a much more complex and critical case as compared to sequential multiple projectile impacts.

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评估陶瓷/织物复合板在同时受到钢弹冲击时的性能:实验与数值研究
为了评估使用99.5 %氧化铝,凯夫拉®和碳纤维织物开发的陶瓷/织物复合板的弹道性能;对物理样品进行了一系列实验。采用LS-DYNA有限元软件对复合材料-弹丸相互作用进行了详细研究。对已验证的陶瓷/织物复合材料系统的数值模型进行了战术修改,以研究在不同冲击速度下复合材料与弹丸同时碰撞时的相互作用。数值模型准确地预测了复合材料板的破坏机理和弹丸击穿复合材料板的出射速度。该研究揭示了复合材料在多弹同时冲击条件下的弹道冲击的重要方面,而这种情况又比连续多弹冲击更为复杂和关键。
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