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Fabrication of free-standing octagon-shaped carbon nanofibre assembly for electrical actuation of shape memory polymer nanocomposites

机译:用于形状记忆聚合物纳米复合材料的电致动的独立八边形碳纳米纤维组件的制造

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摘要

Purpose - The purpose of this paper is a study aimed at overcoming the interface issue between nanopaper and polymer matrix in shape-memory polymer (SMP) composite laminates caused by their large dissimilarity in electrical/thermal conductive properties. The study attempted to develop an effective approach to fabricate free-standing carbon nanofibre (CNF) assembly in octagon shape formation. The structure design and thermal conductive performance of the resulting octagon-shaped CNF assembly were optimised and simulated. Design/methodology/approach - The CNF nanopaper was prepared based on a filtration method. The SMP nanocomposites were fabricated by incorporating these CNF assemblies with epoxy-based SMP resin by a resin-transfer modelling technique. Thermal conductivity of the octagon-shaped CNF assembly was simulated using the ANSYS FLUENT software for structure design and optimisation. The effect of the octagon-shaped CNF on the thermomechanical properties and thermally responsive shape-memory effect of the resulting SMP nanocomposites were characterised and interpreted. Findings - The CNF template incorporated with SMP to achieve Joule heating triggered shape recovery at a low electric voltage of 3-10 V, due to which the electrical resistivity of SMP nanocomposites was significantly improved and lowered to 0.20 O·cm by the CNF template. It was found that the octagon CNF template with 2 mm width of skeleton presented a highest thermally conductive performance to transfer resistive heat to the SMP matrix. Research limitations/implications - A simple way for fabricating electro-activated SMP nanocomposites has been developed by using an octagon CNF template. Low electrical voltage actuation in SMP has been achieved. Originality/value - The fabricated CNF template, the structure design and analysis of dynamic thermomechanical properties of SMP are novel.
机译:目的-本文的目的是研究克服形状记忆聚合物(SMP)复合层压板中的纳米纸与聚合物基质之间的界面问题,这是由于它们的导电/导热特性差异很大。该研究试图开发一种有效的方法来制造八边形形状的独立式碳纳米纤维(CNF)组件。优化并模拟了所得八角形CNF组件的结构设计和导热性能。设计/方法/方法-基于过滤方法制备CNF纳米纸。通过将这些CNF组件与基于环氧树脂的SMP树脂通过树脂转移建模技术结合在一起,来制造SMP纳米复合材料。使用ANSYS FLUENT软件对八角形CNF组件的导热系数进行了仿真,以进行结构设计和优化。表征并解释了八边形CNF对所得SMP纳米复合材料的热机械性能和热响应形状记忆效应的影响。发现-与SMP结合以实现焦耳加热的CNF模板在3-10 V的低电压下触发了形状恢复,因此,SNP纳米复合材料的电阻率得到了显着改善,并被CNF模板降低到0.20 O·cm。发现骨架宽度为2 mm的八边形CNF模板具有最高的导热性能,可将电阻热传递到SMP基质。研究局限/意义-通过使用八边形CNF模板,已经开发出一种简单的制造电活化SMP纳米复合材料的方法。 SMP中实现了低电压驱动。原创性/价值-制备的CNF模板,SMP的结构设计和动态热力学性能分析是新颖的。

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