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Ballistic performance of composite metal foams

机译:复合金属泡沫的弹道性能

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The application of advance materials to manufacture hard armor systems has led to high performance ballistic protection. Due to its light-weight and high impact energy absorption capabilities, composite metal foams have shown good potential for applications as ballistic armor. A high-performance lightweight composite armor system has been manufactured using boron carbide ceramics as the strike face, composite metal foam processed by powder metallurgy technique as a bullet kinetic energy absorber interlayer, and aluminum 7075 or Kevlar (TM) panels as backplates with a total armor thickness less than 25 mm. The ballistic tolerance of this novel composite armor system has been evaluated against the 7.62 x 51 mm M80 and 7.62 x 63 mm M2 armor piercing projectiles according to U.S. National Institute of Justice (NIJ) standard 0101.06. The results showed that composite metal foams absorbed approximately 60-70% of the total kinetic energy of the projectile effectively and stopped both types of projectiles with less depth of penetration and backplate deformation than that specified in the NIJ 0101.06 standard guidelines. Finite element analysis was performed using Abaqus/Explicit to study the failure mechanisms and energy absorption of the armor system. The results showed close agreement between experimental and analytical results. (C) 2015 Elsevier Ltd. All rights reserved.
机译:先进材料在制造硬质装甲系统中的应用导致了高性能的弹道防护。由于其轻质和高冲击能量吸收能力,复合金属泡沫材料已显示出作为防弹装甲应用的良好潜力。使用碳化硼陶瓷作为打击面,通过粉末冶金技术处理的复合金属泡沫材料作为子弹动能吸收层,铝7075或凯夫拉尔(TM)面板作为背板,制造了一种高性能的轻型复合装甲系统。装甲厚度小于25毫米。根据美国国家司法学院(NIJ)标准0101.06,已经针对7.62 x 51毫米M80和7.62 x 63毫米M2穿甲弹的射弹评估了这种新型复合装甲系统的弹道容限。结果表明,复合金属泡沫有效吸收了弹丸总动能的60-70%,并且与NIJ 0101.06标准指南中规定的相比,两种类型的弹丸的穿透深度和背板变形都更小。使用Abaqus / Explicit进行了有限元分析,以研究装甲系统的失效机理和能量吸收。结果表明实验结果与分析结果之间有着密切的一致性。 (C)2015 Elsevier Ltd.保留所有权利。

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