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The design of mosaic armour: The influence of tile size on ballistic performance

机译:镶嵌盔甲的设计:瓷砖尺寸对弹道性能的影响

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Silicon carbide square tiles of different areal geometries and manufactured via two different processing routes have been bonded to polycarbonate layers to evaluate their ballistic performance. Four ceramic tile sizes were tested: 85 mm, 60 mm, 50 mm and 33 mm. In each case the residual depth-of-penetration into a polycarbonate semi-infinite backing was recorded. To elucidate the penetration and failure mechanisms, a computational model using the JH-1 ceramic model [Holmquist TJ, Johnson GR. Response of silicon carbide to high velocity impact. J Appl Phys 2002:91:5858-66] of the projectile used in the experimental study penetrating into a silicon carbide-faced polycarbonate was implemented in the hydrocode AUTODYN-2D. This paper shows that there is a critical dimension of tile that should be used in a silicon carbide-based ceramic-faced mosaic armour system design to ensure optimum system performance when each tile is struck centrally.
机译:通过两种不同的加工路线制造的不同面积几何形状的碳化硅方砖已粘结到聚碳酸酯层上,以评估其弹道性能。测试了四种瓷砖尺寸:85 mm,60 mm,50 mm和33 mm。在每种情况下,记录到聚碳酸酯半无限背衬中的残余渗透深度。为了阐明渗透和破坏机理,使用了JH-1陶瓷模型的计算模型[Holmquist TJ,Johnson GR。碳化硅对高速冲击的响应。 [J Appl Phys 2002:91:5858-66]在液压代码AUTODYN-2D中实现了用于实验研究的弹丸,该弹丸渗入了面对碳化硅的聚碳酸酯。本文表明,在基于碳化硅的陶瓷饰面马赛克装甲系统设计中应使用瓷砖的一个关键尺寸,以确保在中心敲打每个瓷砖时获得最佳的系统性能。

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