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Evaluation of the Absorbed Energy and Velocity Limits of Reinforced Epoxy Composites with Mallow Natural Fibers Used in Ballistic Protection

机译:用锦葵保护蛋白肺天然纤维的增强环氧树脂复合材料的吸收能量和速度限制评价

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In the present work, natural fibers of mallow (Urena Lobata, Linn) were used in percentages of 0, 10, 20, and 30% vol. for ballistic application in epoxy matrix composites. The ballistic efficiency of these composites was evaluated through the measurement of the absorbed energy and the velocity limit, after impact of 7.62 mm ammunition, in order to compare with work that used composites with other natural fibers and traditional materials, such as aramid fabrics, used in vests for individual protection. The results showed through visual analysis and scanning electron microscopy (SEM) indicate the main mechanism of rupture acting in the composites was the delamination of layers. In all cases analyzed in this work, the parameters obtained for the residual velocity test were higher than those found for aramid tissue. This fact evidences the viability of the fibers/mallow fabric for use in dynamic applications, especially those related to ballistic protection.
机译:在目前的工作中,使用锦葵(Urena Lobata,Linn)的天然纤维以0,10,20和30%Vol的百分比使用。用于环氧基质复合材料的弹道应用。通过测量吸收的能量和速度极限来评估这些复合材料的弹道效率,以便在7.62mm弹药的冲击后进行评估,以便与使用与其他天然纤维的复合材料和传统材料(如芳纶织物)的工作进行比较在背心进行个人保护。通过视觉分析和扫描电子显微镜(SEM)显示结果表明,复合材料中的破裂的主要机制是层的分层。在本作作品中分析的所有情况下,对残留速度试验获得的参数高于针对芳族聚酰胺组织的参数。这一事实证明了纤维/锦葵织物用于动态应用的可行性,尤其是与弹道保护有关的可行性。

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