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OUT-OF-OVEN CURING OF POLYMERIC COMPOSITES VIA RESISTIVE MICROHEATERS COMPRISED OF ALIGNED CARBON NANOTUBE NETWORKS

机译:通过对准碳纳米管网络的阻燃微加热器对聚合物复合材料进行外壳固化

摘要

The broader adoption of composite materials in next-generation aerospace architectures is currently limited by the geometrical constraints and high energy costs of traditional manufacturing techniques of PMCs such as autoclave and vacuum-bag-only oven curing techniques. Here, an in situ curing technique for PMCs using a resistive heating film comprised of an aligned carbon nanotube (A-CNT) network is presented. A carbon fiber reinforced plastic (CFRP) prepreg system is effectively cured via a single-side CNT network heater incorporated on the outer surface of the laminate without using an autoclave. Evaluation of the curing efficacy shows that composites cured by A-CNT film heaters can achieve degrees of cure that are equivalent or better than composites cured by an autoclave. This manufacturing technique enables highly efficient curing of PMCs while adding multifunctionality to finished composites.
机译:目前,复合材料在下一代航空航天体系结构中的广泛采用受到传统PMC制造技术(例如高压釜和仅真空袋烤箱固化技术)的几何约束和高能源成本的限制。在此,提出了一种使用由取向碳纳米管(A-CNT)网络组成的电阻加热膜的PMC原位固化技术。碳纤维增强塑料(CFRP)预浸料系统可通过并入层压板外表面的单面CNT网络加热器有效固化,而无需使用高压釜。固化效果的评估表明,通过A-CNT薄膜加热器固化的复合材料可以达到与通过高压釜固化的复合材料相同或更好的固化程度。这项制造技术可实现PMC的高效固化,同时为成品复合材料增加多功能性。

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