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Electrically and Thermally Conductive Carbon Fibre Fabric Reinforced Polymer Composites Based on Nanocarbons and an In-situ Polymerizable Cyclic Oligoester

机译:基于纳米碳和原位可聚合的环状低聚酯的导电和导热碳纤维织物增强的聚合物复合材料

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摘要

There is growing interest in carbon fibre fabric reinforced polymer (CFRP) composites based on a thermoplastic matrix, which is easy to rapidly produce, repair or recycle. To expand the applications of thermoplastic CFRP composites, we propose a process for fabricating conductive CFRP composites with improved electrical and thermal conductivities using an in-situ polymerizable and thermoplastic cyclic butylene terephthalate oligomer matrix, which can induce good impregnation of carbon fibres and a high dispersion of nanocarbon fillers. Under optimal processing conditions, the surface resistivity below the order of 10+10 Ω/sq, which can enable electrostatic powder painting application for automotive outer panels, can be induced with a low nanofiller content of 1 wt%. Furthermore, CFRP composites containing 20 wt% graphene nanoplatelets (GNPs) were found to exhibit an excellent thermal conductivity of 13.7 W/m·K. Incorporating multi-walled carbon nanotubes into CFRP composites is more advantageous for improving electrical conductivity, whereas incorporating GNPs is more beneficial for enhancing thermal conductivity. It is possible to fabricate the developed thermoplastic CFRP composites within 2 min. The proposed composites have sufficient potential for use in automotive outer panels, engine blocks and other mechanical components that require conductive characteristics.
机译:对基于热塑性基质的碳纤维织物增强聚合物(CFRP)复合材料的兴趣日益增长,这种复合材料易于快速生产,修复或回收。为了扩展热塑性CFRP复合材料的应用,我们提出了一种使用可原位聚合的热塑性环状对苯二甲酸丁二醇酯低聚物基体来制造具有改善的电导率和导热率的导电CFRP复合材料的方法,该方法可以诱导碳纤维的良好浸渍和高分散性纳米碳填料。在最佳工艺条件下,可以以1 wt%的低纳米填料含量诱发低于10 +10 Ω/ sq数量级的表面电阻率,该电阻率可用于汽车外板的静电粉末喷涂。 。此外,发现含有20%(重量)石墨烯纳米片(GNP)的CFRP复合材料具有13.7 W / m·K的优异导热性。将多壁碳纳米管掺入CFRP复合材料中对于提高电导率更有利,而将GNP掺入对提高导热率更有利。可以在2分钟内制造出开发的热塑性CFRP复合材料。提出的复合材料具有足够的潜力,可用于汽车外板,发动机缸体和其他需要导电特性的机械部件。

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