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An experimental investigation on the effect of incorporating graphene nanoplatelets on the low-velocity impact behavior of fiber metal laminates

机译:掺入石墨烯纳米片对纤维金属层合板低速冲击行为影响的实验研究

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摘要

ABSTR A C T In this study, experimental investigations are implemented to evaluate the effect of incorporation of graphene nanoplatelets (GNPs) on the low-velocity impact behavior of composites and fiber metal laminates (FMLs). The hand layup technique is employed to fabricate composite specimens and FML panels with 2/1 configuration. Impact response and damage patterns of unmodified and modified specimens subjected to various impact energy levels are compared. The results reveal that the incorporating 0.2 wt of GNPs strengthens the impact resistance of FMLs so that the modified panels possess higher bending stiffness, peak load, energy absorption and SEA compared to the unreinforced ones. Visual inspections and SEM images exhibit that the inclusion of GNPs enhances the adhesion between resin/fibers as well as composite plies, thereby reducing damage area and increasing penetration threshold of FMLs. In addition, reinforcing composite panels considerably improves the impact behavior in comparison with the unmodified composites.
机译:在这项研究中,通过实验研究来评估掺入石墨烯纳米片(GNPs)对复合材料和纤维金属层压板(FMLs)低速冲击行为的影响。手糊技术用于制造具有 2/1 配置的复合试样和 FML 面板。比较了未改性和改性试样在不同冲击能级下的冲击响应和损伤模式。结果表明,添加0.2 wt%的GNPs可以增强FMLs的抗冲击性能,使改性板比未增强板具有更高的抗弯刚度、峰值载荷、吸能和SEA。目视检查和SEM图像表明,GNPs的加入增强了树脂/纤维和复合层之间的附着力,从而减少了损伤面积并提高了FMLs的穿透阈值。此外,与未改性的复合材料相比,增强复合板大大改善了冲击性能。

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