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Fabrication and Characterization of Carbon Nanotube/Carbon Fiber/Polycarbonate Multiscale Hybrid Composites

机译:碳纳米管/碳纤维/聚碳酸酯多尺度杂化复合材料的制备与表征

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摘要

Multiscale hybrid composites, which consist of polymeric resins, microscale fibers and nanoscale reinforcements, have drawn significant attention in the field of advanced, high-performance materials. Despite their advantages, multiscale hybrid composites show challenges associated with nanomaterial dispersion, viscosity, interfacial bonding and load transfer, and orientation control. In this paper, carbon nanotube(CNT)/carbon fiber(CF)/ polycarbonate(PC) multiscale hybrid composite were fabricated by a solution process to overcome the difficulties associated with controlling the melt viscosity of thermoplastic resins. The dependence of CNT loading was studied by varying the method to add CNTs, i.e., impregnation of CF with CNT/PC/solvent solution and impregnation of CNTcoated CF with PC/solvent solution. In addition, hybrid composites were fabricated through surfactant-aided CNT dispersion followed by vacuum filtration. The morphologies of the surfaces of hybrid composites, as analyzed by scanning electron microscopy, revealed the quality of PC impregnation depends on the processing method. Dynamic mechanical analysis was performed to evaluate their mechanical performance. It was analyzed that if the position of the value of tan δ is closer to the ideal line, the adhesion between polymer and carbon fiber is stronger. The effect of mechanical interlocking has a great influence on the dynamic mechanical properties of the composites with CNTcoated CF, which indicates that coating CF with CNTs is a suitable method to fabricate CNT/CF/PC hybrid composites.
机译:由聚合物树脂,微米级纤维和纳米级增强材料组成的多级混合复合材料在先进的高性能材料领域引起了极大的关注。尽管具有优势,但多尺度杂化复合材料仍显示出与纳米材料分散,粘度,界面结合和负载转移以及取向控制相关的挑战。本文通过溶液法制备了碳纳米管(CNT)/碳纤维(CF)/聚碳酸酯(PC)多尺度杂化复合材料,克服了控制热塑性树脂熔融粘度的难题。通过改变添加CNT的方法,即用CNT / PC /溶剂溶液浸渍CF和用PC /溶剂溶液浸渍CNT涂布的CF,研究了CNT负载的依赖性。此外,通过表面活性剂辅助的CNT分散体,然后进行真空过滤,制备了杂化复合材料。通过扫描电子显微镜分析,杂化复合材料表面的形貌表明,PC浸渍的质量取决于加工方法。进行动态力学分析以评估其机械性能。据分析,如果tanδ值的位置更接近理想线,则聚合物与碳纤维之间的粘合力会更强。机械互锁的影响对具有CNT涂层的CF复合材料的动态力学性能有很大影响,这表明用CNT涂层CF是制造CNT / CF / PC杂化复合材料的合适方法。

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