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The response of natural fibre composites to ballistic impact by fragment simulating projectiles

机译:片段模拟弹丸对天然纤维复合材料对弹道冲击的响应

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摘要

While plenty of work has been published on ballistic properties of high performance fibres such as ultra high molecular weight polyethylene (UHMWPE) and aramid, and their composites, literature on the ballistic impact potential of natural fibre composites is almost non-existent. In this paper, the ballistic properties of flax, hemp and jute fabric reinforced polypropylene composites processed by hot compression moulding are investigated. The composites' ballistic limit (V_(50)) was determined by subjecting the material to ballistic impact loading by fragment simulating projectiles (FSPs) using a block manometric cannon interchangeable (BMCI) gun. The composites' ballistic effect was further examined by investigating the ballistic limit of composite-steel hybrid systems prepared by gluing thin mild steel plates on the face and rear of the natural fibre composites. Flax composites exhibited better energy absorption than hemp and jute composites. The composites failed by shear cut-out, delamination and fibre fracture. It was found that the ballistic properties of the hemp composites increased significantly when a mild steel plate was used as facing and backing.
机译:尽管已经发表了许多有关高性能纤维(如超高分子量聚乙烯(UHMWPE)和芳纶纤维)及其复合材料的弹道性能的工作,但几乎没有关于天然纤维复合材料的弹道冲击潜力的文献。本文研究了亚麻,麻和黄麻织物增强聚丙烯复合材料经热压成型加工后的弹道性能。复合材料的弹道极限(V_(50))是通过使用块状测压可互换大炮(BMCI)枪对碎片进行弹丸模拟(FSP)使材料承受弹道冲击载荷而确定的。通过研究通过在天然纤维复合材料的正面和背面胶合薄软钢板制备的复合钢混合体系的弹道极限,进一步检查了复合材料的弹道效应。亚麻复合材料比大麻和黄麻复合材料表现出更好的能量吸收。复合材料由于剪切剪切,分层和纤维断裂而失效。发现当使用低碳钢板作为饰面和背衬时,大麻复合材料的弹道性能显着提高。

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