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The use of noncovalently modified carbon nanotubes for preparation of hybrid polymeric composite materials with electrically conductive and lightning resistant properties

机译:使用非共价改性的碳纳米管,用于制备具有导电和耐雷性能的杂化聚合物复合材料

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In this work, approach to use of noncovalently modified carbon nanotubes is given for preparation of functional hybrid polymeric composite materials (HPCM) based on epoxy resin. Conductive glass-fiber plastics with resistivity in transverse and lengthwise direction 9.0boldx /bold10(2) and 30-50 Ohmcm, respectively, were obtained. The tetrafluoroethylene telomer and fluorocontaining organosilicon copolymer with amino groups were used as modifiers for carbon nanotubes. Thermal, electrical, and mechanical properties of the obtained materials were studied. The mechanism of the effect of noncovalent modification of carbon nanotubes on functional properties of HPCM was discussed. It was found, that type of modifier significantly affects the level of functional properties. The use of fluorocontaining organosilicon copolymer is more optimal in comparison with tetrafluoroethylene telomer. Thus, HPCM with carbon-fiber filler and this modifier has higher electrical conductivity and lightning strike resistance in comparison with nonmodified HPCM. This approach is promising to impart antistatic properties for glass-fiber plastics and increase lightning resistance of carbon-fiber plastics. (c) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018, 135, 46108.
机译:在这项工作中,给出了使用非共价修饰的碳纳米管的方法,用于制备基于环氧树脂的功能性杂化聚合物复合材料(HPCM)。导电玻璃纤维塑料具有横向和长度方向的电阻率9.0&粗体,分别获得10(2)和30-50 ohmcm。用氨基的四氟乙烯端粒和含氟有机硅共聚物用作碳纳米管的改性剂。研究了所得材料的热,电和力学性能。讨论了碳纳米管非价改型对HPCM功能性质的影响。发现,这种改性剂显着影响功能性质的水平。与四氟乙烯端终点相比,使用氟层有机硅共聚物更为最佳。因此,具有碳纤维填料的HPCM和该改进剂具有更高的导电性和雷击性,与非副化的HPCM相比。这种方法很有希望赋予玻璃纤维塑料的抗静电性能,并增加碳纤维塑料的雷电阻。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2018,135,46108。

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