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Ballistic behavior of epoxy matrix composites reinforced with piassava fiber against high energy ammunition

机译:高能量弹药加固环氧基质复合材料的弹道行为

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Multilayered Armor Systems are low density plates used in personal protection against high impact energy ammunition. Such system promotes effective protection, by dissipating the projectile energy and preventing the penetration of fragments. Kevlar (TM) is commonly used as one of the layers. However, recently, cost-effectives composites reinforced with natural fibers have been considered as an alternative. This work aimed to evaluate the performance of epoxy matrix composites reinforced with stiffer natural piassava fibers as a standing alone target against high energy ammunition. Composites with up to 50 vol of piassava fibers were produced by press molding. The influence of the volume fraction in the main failure mode observed and the limit velocity ballistic parameter were determined. Macro and microscopically analyses were performed to determinate the failure mechanism. Statistical analyses were used to evaluate the results obtained. It was verified that the 50 vol reinforced composites were those that presented the best performance, which was found comparable to the results obtained for Kevlar (TM). (C) 2019 The Authors. Published by Elsevier B.V.
机译:多层护甲系统是用于个人保护的低密度板,免受高冲击能源弹药。这种系统通过消散射弹能量并防止碎片渗透来促进有效保护。 Kevlar(TM)通常用作层之一。然而,最近,用天然纤维增强的成本效应复合材料被认为是替代品。这项工作旨在评估用富有的天然Piassava纤维增强的环氧基质复合材料的性能作为抵抗高能弹药的独立目标。通过压模生产高达50体吡喹氏纤维的复合材料。确定了观察到的主故障模式和极限速度弹道参数的体积分数的影响。进行宏观和显微镜分析以确定失效机制。使用统计分析来评估获得的结果。验证了50体积增强复合材料是那些呈现最佳性能的那些,发现与kevlar(TM)的结果相当。 (c)2019年作者。 elsevier b.v出版。

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