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Significant Fatigue Life Enhancement in Multiscale Doubly-Modified Fiber/Epoxy Nanocomposites with Graphene Nanoplatelets and Reduced-Graphene Oxide

机译:多尺度双改性纤维/环氧纳米复合材料的显着疲劳寿命增强,具有石墨烯纳米型和石墨烯氧化物

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摘要

We report the fatigue behavior of a novel multiscale fiberglass/epoxy composite modified with reduced-graphene oxide (rGO) and graphene nanoplatelets (GNP). A novel and cost-effective fabrication method based on vacuum assisted resin transfer molding (VARTM) method was used for manufacturing the composite laminates. Morphological and mechanical analysis of composites showed a successful dispersion of nano-fillers and a remarkable improvement in fatigue life of the nanocomposites. The experimental results revealed that all rGO concentrations resulted in a significant increase in fatigue life of the nanocomposites. These enhancements can be explained by the creation of stronger links between the nanoparticles fiberglass and epoxy. The experimental results also showed that lower concentrations of GNPs lead to an increase in fatigue life of nanocomposites; however, a decrease in their fatigue life can be seen at higher loadings.
机译:我们报道了用氧化石墨烯(RGO)和石墨烯纳米克(GNP)改性的新型多尺度玻璃纤维/环氧复合物的疲劳行为。基于真空辅助树脂转移成型(Vartm)方法的新型和经济高效的制造方法用于制造复合层压板。复合材料的形态学和力学分析显示纳米填料的成功分散,纳米复合材料的疲劳寿命显着改善。实验结果表明,所有RGO浓度导致纳米复合材料的疲劳寿命显着增加。这些增强可以通过在纳米颗粒玻璃纤维和环氧树脂之间产生更强的联系来解释。实验结果还表明,较低浓度的GNPS导致纳米复合材料的疲劳寿命的增加;然而,在更高的载荷中可以看到疲劳寿命的减少。

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