首页> 外文会议>Characterization of minerals, metals, and materials 2018 >Limit Speed Analysis and Absorbed Energy in Multilayer Armor with Epoxy Composite Reinforced with Mallow Fibers and Mallow and Jute Hybrid Fabric
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Limit Speed Analysis and Absorbed Energy in Multilayer Armor with Epoxy Composite Reinforced with Mallow Fibers and Mallow and Jute Hybrid Fabric

机译:锦葵纤维和锦葵黄麻混合纤维增强环氧树脂复合材料多层装甲的极限速度分析和吸收能

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摘要

Epoxy matrix composites reinforced with up to 10, 20 and 30 vol% of continuous and aligned natural mallow fibers and 30 vol% of mallow and jute hybrid fabric were for the first time ballistic tested as personal armor against class III 7.62 mm FMJ ammunition. The ballistic efficiency of these composites was assessed by measuring the dissipated energy and residual velocity after the bullet perforation. The results were compared with that in similar tests of aramid fabric (Kevlar™) commonly used in vests for personal protections. Visual inspection and scanning electron microscopy analysis of impact-fractured samples revealed failure mechanisms associated with fiber pullout, rupture and layers delamination. When compared to Kevlar~(™), the mallow fiber and hybrid fabric composite displayed practically the same ballistic efficiency. However, there is a reduction in both weight and cost, which makes both, mallow fiber and hybrid fabric composites, a promising material for personal ballistic protection.
机译:首次以10、20和30%(体积)的连续和对齐的天然锦葵纤维以及30%(体积)的锦葵和黄麻混合纤维增强的环氧树脂基复合材料作为个人装甲进行了弹道测试,以对抗III.7.62毫米FMJ弹药。这些复合材料的弹道效率是通过测量子弹穿孔后的耗散能量和残余速度来评估的。将结果与通常用于个人防护背心的芳纶织物(Kevlar™)的类似测试进行了比较。目视检查和冲击断裂样品的扫描电子显微镜分析揭示了与纤维拉出,断裂和层离层相关的失效机理。与Kevlar〜™相比,锦葵纤维和混合纤维复合材料实际上具有相同的弹道效率。但是,重量和成本都降低了,这使得锦葵纤维和混合织物复合材料成为一种用于个人防弹保护的有前途的材料。

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