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Low Velocity Impact on Woven Kenaf Fiber Reinforced Composites

机译:对织造keNaf纤维增强复合材料的低速冲击

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This paper presents the experimental investigations on the low velocity impact response of woven kenaf fiber reinforced composites. Kenaf yarns are weaved with an orientation of 00 of warp and 900 of weft to form woven kenaf mat. Three woven kenaf mats are stacked together to achieve the specified sequences. The woven stacked kenaf mats are hardened with polymeric resin and compressed to squeeze off any excessive resin and to minimize voids content. The hardened composite plates are perforated using different impact velocities. Impact responses of the composite plates are examined according to stacking sequences, impact velocities and fragmentation patterns. According to the present results, the impact strength is strongly related with the impact velocity. If higher impact velocity is used, the performances of load bearing are reduced. It is obvious that no significant features of composite fragmentations occurred from the perforated holes. However, relatively larger area of mechanical damages is found distributed around the holes, indicating the capability of composites to absorb energy effectively.
机译:本文提出了对织造棉草纤维增强复合材料的低速冲击响应的实验研究。 Kenaf Yarns以00 00的纱线和900纬,以形成编织kenaf垫。三个编织的keNaf垫堆叠在一起以达到指定的序列。编织堆叠的keNaf垫用聚合物树脂硬化并压制以挤出任何过量的树脂并最小化空隙含量。硬化的复合板使用不同的冲击速度穿孔。根据堆叠序列,冲击速度和碎片模式检查复合板的冲击响应。根据目前的结果,冲击强度与冲击速度密切相关。如果使用更高的冲击速度,则减小负载轴承的性能。显而易见的是,从穿孔孔发生的复合碎片的显着特征。然而,发现相对较大的机械损坏区域围绕孔分布,表示复合材料的能力有效地吸收能量。

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