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Effect of nanoclay and graphene inclusions on the low-velocity impact resistance of Kevlar-epoxy laminated composites

机译:纳米粘土和石墨烯夹杂物对凯夫拉尔-环氧层压复合材料低速冲击性能的影响

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This experimental study shows the effectiveness of geometries (1D and 2D) and surface energies of nanofillers on the impact resistance, damage tolerance and environmental degradation resistance of Kevlar fiber-reinforced Epoxy (KE) composites. In this study, nanofillers up to 10 wt% were added to 70/30 vol% 16-ply KE composites. Impact tests were performed on the composites using a low-velocity impactor, followed by damage area analysis using the C-scan technique. Drop weight tests were performed with the weight of 6.27 kg and 32 J of potential energy. The damaged test panels were exposed to ultraviolet light and moisture for 0, 4 and 8 days. Then water contact angles around the damaged area of each damaged composite panel were measured. Analysis showed that nanoclay (NC) is more effective than graphene (G) in impact resistance (26.9% increase vs 7.5% increase) and the absorption of impact energy (15% increase vs 11.37% decrease). The penetration analysis showed that nanoclay is better at preventing penetration than graphene. The damage area analysis showed the risk mitigation of catastrophic damage with the inclusion of nanofillers, especially NC, due to high impact and penetration resistance which resulted from the uniform distribution of NC and high packing density of NC-filled composites.
机译:这项实验研究表明,纳米填料的几何形状(一维和二维)和表面能对芳纶纤维增强环氧树脂(KE)复合材料的耐冲击性,耐损伤性和耐环境降解性具有有效性。在这项研究中,将高达10 wt%的纳米填料添加到70/30 vol%的16层KE复合材料中。使用低速冲击器对复合材料进行冲击测试,然后使用C扫描技术进行损伤区域分析。使用6.27公斤的重量和32焦耳的势能进行落重测试。将损坏的测试板暴露于紫外线和湿气中0、4和8天。然后,测量每个受损复合板受损区域周围的水接触角。分析表明,纳米粘土(NC)在抗冲击性(增加26.9%,增加7.5%)和吸收冲击能量(增加15%,减少11.37%)方面比石墨烯(G)更有效。渗透分析表明,纳米粘土在阻止渗透方面比石墨烯更好。损伤面积分析表明,由于NC分布均匀且NC填充复合材料的堆积密度高,因此具有较高的抗冲击性和抗穿透性,因此加入纳米填料(尤其是NC)可减轻灾难性损害的风险。

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