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Structural carbon fibre composite/PET capacitors - Effects of dielectric separator thickness

机译:结构碳纤维复合材料/ PET电容器-电介质隔板厚度的影响

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This paper presents an approach towards realising novel multifunctional polymer composites with combined structural and electric energy storing ability. A series of structural capacitors were made using three thicknesses of DuPont Mylar A thermoplastic PET as a dielectric separator employing carbon fibre/ epoxy pre-pregs as structural electrodes. Plasma treatment was used as a route for improved epoxy/PET adhesion. The manufactured materials were mechanically and electrically tested to evaluate their multifunctional efficiency.The multifunctional materials developed show good potential for replacing steel, aluminium and other materials with lower specific mechanical properties but do not match the high specific mechanical and electrical performance of monofunctional composites and capacitors.
机译:本文提出了一种实现兼具结构和电能存储能力的新型多功能聚合物复合材料的方法。使用三种厚度的杜邦Mylar A热塑性PET作为电介质隔板,使用碳纤维/环氧预浸料作为结构电极,制成了一系列结构电容器。等离子体处理被用作改善环氧树脂/ PET附着力的途径。所制造的材料经过机械和电气测试以评估其多功能效率。开发的多功能材料具有替代钢,铝和其他比机械性能较低的材料的良好潜力,但与单功能复合材料和电容器的高比机械和电气性能不匹配。

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