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Effect Of Carbon Nanofibres Dispersion On The Microwave Absorbing Properties Of Cnf/epoxy Composites

机译:碳纳米纤维分散对Cnf /环氧树脂复合材料吸波性能的影响

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Since mid-twentieth century filled polymers have been largely studied for electromagnetic (e.m.) applications, including wave absorbing materials, showing good promise. A certain knowledge was gained in the field of carbon particles filled polymers, even if there is still a lack of understanding the relationship between material microstructure and macroscopic electromagnetic performance. Moreover, the recent discover of carbon nanofibres and nanotubes, with their potentiality, introduces new field of investigation. In this work carbon nanofibers were used to increase permittivity of neat resin, in order to achieve better absorbing performance in the 8-20 GHz range. Carbon nanofibers were chosen as a way of lowering filler content, while increasing the dielectric properties of the resulting composite. Key factor is the nanofiller dispersion process: in this paper two different dispersion methods were used, both employing an organic solvent that was removed either via evaporation or filtration. The resulting microstructures, composed of well dispersed CNF as well as of microaggregates, lead to materials that, on equal filler content, present different dielectric properties and absorbing performance. Microstructures were analyzed by SEM.
机译:自二十世纪中叶以来,已对填充聚合物进行了电磁学(e.m.)应用的大量研究,包括吸波材料,显示出良好的前景。即使仍然缺乏对材料微观结构和宏观电磁性能之间关系的了解,在填充碳颗粒的聚合物领域也获得了一定的知识。而且,碳纳米纤维和纳米管的最新发现及其潜力为研究提供了新的领域。在这项工作中,碳纳米纤维被用来增加纯净树脂的介电常数,以便在8-20 GHz范围内获得更好的吸收性能。选择碳纳米纤维作为降低填料含量,同时增加所得复合材料介电性能的一种方法。关键因素是纳米填料的分散过程:在本文中,使用了两种不同的分散方法,两种方法均使用通过蒸发或过滤除去的有机溶剂。由良好分散的CNF以及微聚集体组成的最终微结构会导致材料在相同的填料含量下呈现出不同的介电性能和吸收性能。通过SEM分析微结构。

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