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The effect of thin membrane restraint on the ballistic performance of armor grade ceramic tiles

机译:薄膜约束对装甲级瓷砖防弹性能的影响

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Incorporation of ceramics in hybrid armor systems has resulted in significant weight reductions. They are an excellent prospect for the next-generation energy absorbing systems for vehicular protection. In this paper, it is demonstrated that the ballistic efficiency of ceramic tiles can be vastly improved by judiciously restraining them with membranes of polymeric composites or metal sheets. Experiments have been conducted to study the ballistic performance and failure of armor grade Al_2O_3 and SiC tiles. The comparative effects of restraint by materials such as E-glass/epoxy, carbon-fiber/epoxy and Ti-3%Al-2.5%V alloy and their varying thicknesses have been studied. WHA (tungsten heavy alloy) was used as the penetrator material at an impact velocity of 900 ms~(-1). It was observed that by restraining the impact-face of ceramic tiles with a membrane of suitable tensile strength, the ballistic efficiency can be improved by nearly 25% for a mere 2.5% increase in areal density. High-speed photography, flash radiography and microscopy provide insight into the failure mechanisms that underpin this improvement.
机译:在混合装甲系统中掺入陶瓷材料可以大大减轻重量。它们是用于车辆保护的下一代能量吸收系统的极好前景。在本文中,证明了通过用聚合物复合材料或金属板的膜明智地限制瓷砖,可以极大地提高瓷砖的弹道效率。已经进行了实验研究装甲等级的Al_2O_3和SiC瓷砖的弹道性能和破坏。研究了诸如E-玻璃/环氧树脂,碳纤维/环氧树脂和Ti-3%Al-2.5%V合金以及它们的不同厚度的约束的比较效果。 WHA(钨重合金)用作渗透材料,冲击速度为900 ms〜(-1)。观察到,通过用合适的抗拉强度的膜约束瓷砖的冲击面,弹道效率可以提高近25%,而面密度仅增加2.5%。高速摄影,闪光灯射线照相和显微镜检查有助于深入了解支持这种改进的故障机制。

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