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Shape Memory Polymer Carbon Nanocomposites Based on Carbon Nanopaper

机译:基于碳纳米纸的形状记忆聚合物碳纳米复合材料

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Shape-memory polymers (SMP) composites have attracted significant attention from both industrial and academic researchers due to their useful and fascinating functionality. Generally, SMP can be actuated by heat, electricity, water and chemicals. A large amount of work has been done on the shape recovery of shape memory polymers blended with conductive filler triggered by electrical resistive heating. However, the conductive filler will dramatically undermine the shape memory behavior and there is no effective way to increase the conductivity without compromise on the shape memory behavior.In this work, carbon nanofiber (CNF) paper and bucky paper were introduced to actuate shape memory polymer, respectively. The shape recovery of polymer was carried out by electrical resistive heating generated by CNF paper and bucky paper which were attached to the surface of the SMP composites. Also, both of them possess excellent heat conductive properties which can serve as a conductive layer to transmit heat through the polymer. It was found that using this kind of structure the recoverability approximated to 100%. In addition, the geometry position in the composites of both types of paper was optimized to acquire the most efficient heat transfer rate from the paper to the SMP.After that, the structures of both CNF paper and bucky paper have been characterized by scanning electronic microscopy. Also, the electrical volume resistivity of the nanocomposite incorporated with different volume fractions of carbon nanofiber paper was measured by four-point probe method. The shape recovery process of the composites driven by resistive heating was recorded. The thermo-mechanical properties of the nanocomposites with respect to various volume fractions of carbon nanofiber paper were analyzed by dynamic mechanical analysis (DMA).
机译:形状记忆聚合物(SMP)复合材料因其有用的功能和令人着迷的功能而引起了工业和学术研究人员的极大关注。通常,SMP可以由热,电,水和化学物质驱动。关于通过电阻加热触发的,与导电填料混合的形状记忆聚合物的形状恢复,已经进行了大量工作。然而,导电填料将极大地破坏形状记忆行为,并且没有有效的方法来增加电导率而不损害形状记忆行为。 在这项工作中,分别引入了碳纳米纤维(CNF)纸和巴基(bucky)纸来驱动形状记忆聚合物。聚合物的形状恢复是通过附着在SMP复合材料表面的CNF纸和巴基纸产生的电阻加热进行的。而且,它们两者都具有优异的导热性能,可以用作将热量传递通过聚合物的导电层。发现使用这种结构的可回收性接近100%。此外,优化了两种纸张复合材料中的几何位置,以获得从纸张到SMP的最有效的传热速率。 之后,通过扫描电子显微镜对CNF纸和巴基纸的结构进行了表征。此外,通过四点探针法测量了掺入了不同体积分数的碳纳米纤维纸的纳米复合材料的体积电阻率。记录了由电阻加热驱动的复合材料的形状恢复过程。通过动态力学分析(DMA)分析了纳米复合材料相对于碳纳米纤维纸的各种体积分数的热机械性能。

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