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Nitrogen-Doped Carbon Fiber Paper by Active Screen Plasma Nitriding and Its Microwave Heating Properties

机译:主动屏等离子体氮化掺氮碳纤维纸及其微波加热性能

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摘要

In this paper, active screen plasma nitriding (ASPN) treatment was performed on polyacrylonitrile carbon fiber papers. Electric resistivity and microwave loss factor, of carbon fiber were described to establish the relationship between processing parameters and fiber's ability to absorb microwaves. The surface processing effect of carbon fiber could be characterized by dynamic thermal mechanical analyzer testing on composites made of carbon fiber. When the process temperature was at 175 degrees C, it was conducive to obtaining good performance of dynamical mechanical properties. The treatment provided a way to change microwave heating properties of carbon fiber paper by performing different treatment conditions, such as temperature and time parameters. Atomic force microscope, scanning electron microscope, and X-ray photoelectron spectroscopy analysis showed that, during the course of ASPN treatment on carbon fiber paper, nitrogen group was introduced and silicon group was removed. The treatment of nitrogen-doped carbon fiber paper represented an alternative promising candidate for microwave curing materials used in repairing and heating technology, furthermore, an efficient dielectric layer material for radar-absorbing structure composite in metamaterial technology.
机译:在本文中,对聚丙烯腈碳纤维纸进行了主动筛分等离子体氮化(ASPN)处理。描述了碳纤维的电阻率和微波损耗因子,以建立加工参数与纤维吸收微波能力之间的关系。碳纤维的表面处理效果可以通过对碳纤维制成的复合材料进行动态热机械分析仪测试来表征。当工艺温度为175℃时,有利于获得良好的动态力学性能。该处理提供了一种通过执行不同的处理条件(例如温度和时间参数)来改变碳纤维纸的微波加热性能的方法。原子力显微镜,扫描电子显微镜和X射线光电子能谱分析表明,在碳纤维纸上进行ASPN处理的过程中,引入了氮基并去除了硅基。掺氮碳纤维纸的处理代表了用于维修和加热技术的微波固化材料的另一种有前途的候选方法,此外,它还是一种用于超材料技术中用于雷达吸收结构复合材料的有效介电层材料。

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