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Ballistic behavior of a hybrid composite reinforced with curaua and aramid fabric subjected to ultraviolet radiation

机译:姜黄和芳纶纤维增强杂化复合材料的紫外线辐射性能

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Mobile ballistic armors, particularly those intended for personal protection, are also designed with lowest possible weight. Composite materials are the best choice for this kind of application, especially laminated composites reinforced with high-performance fibers or fabrics. Owing to environmental problems, research works on hybrid composites based on natural instead of synthetics fibers is already a promising line of investigation. These composites, when used outdoors, are exposed to ultraviolet (UV) radiation and some properties and applied behavior may change. Therefore, this work investigated the ballistic behavior of a thermoset polyester resin laminated hybrid composite reinforced with a natural fiber mat and aramid fabric after exposure to UV radiation. The mat was produced with curaua fiber, one of the strongest natural fibers. Infrared spectroscopy analysis and determination of the degree of cross-linking, to identify possible structural changes in the curaua mat, are performed after two different exposure times to UV radiation The mechanism of failure related to the ballistic impact is analyzed by visual inspection. The results show that the composite is influenced by UV radiation, which affects the ballistic performance due to delamination on the interface of plies as well as chain scission on curaua fibers and increasing crosslinking of the polyester resin. The delamination was attributed to a low interfacial energy between the polyester matrix and curaua fibers.
机译:移动防弹装甲,尤其是用于个人防护的防弹装甲,也设计有尽可能轻的重量。复合材料是此类应用的最佳选择,尤其是用高性能纤维或织物增强的层压复合材料。由于环境问题,基于天然纤维而不是合成纤维的混合复合材料的研究工作已经成为很有前途的研究领域。这些复合材料在户外使用时会暴露在紫外线(UV)下,某些性能和应用行为可能会发生变化。因此,这项工作研究了天然纤维毡和芳纶纤维增强的热固性聚酯树脂层压复合复合材料在暴露于紫外线辐射后的弹道性能。该垫子是用最坚固的天然纤维之一姜黄纤维制成的。在紫外光照射两次不同的时间后,进行红外光谱分析和交联度的确定,以识别可能的结构变化,然后通过目测检查与弹道冲击有关的失效机理。结果表明,复合材料受紫外线辐射的影响,这归因于层界面上的分层以及姜黄纤维上的断链和聚酯树脂交联的增加,从而影响弹道性能。脱层归因于聚酯基质和姜黄纤维之间的界面能低。

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