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Electrophysical properties of epoxy-based composites with graphite nanoplatelets and magnetically aligned magnetite

机译:石墨纳米型磁纳米型和磁对准磁铁矿石复合材料的电神理性质

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Novel graphite nanoplatelets/magnetite (GNP/Fe3O4)/epoxy composites with aligned under external magnetic field fillers and random fillers distribution have been developed. The influence of loading content of GNP nanoparticles and viscosity of composite medium on the alignment degree of fillers and electrical conductivity, shielding properties of GNP/Fe3O4/epoxy composites were considered. The results showed that Fe3O4 addition to the composite is reflected in increase in electrical conductivity by 3-5 orders of magnitude for the investigated composites with binary filler with random fillers distribution in comparison with composites with monofiller (GNP). Shielding properties of GNP/Fe3O4/epoxy composites were significantly improved due to increase in absorption.
机译:开发了新型石墨纳米孔/磁铁矿(GNP / FE3O4)/环氧复合材料,其在外部磁场填充物和随机填料分布下进行了对齐。 考虑了GNP纳米颗粒的负载含量和复合介质粘度对填料的对准程度的影响,考虑了GNP / Fe3O4 /环氧复合材料的屏蔽性能。 结果表明,复合材料的加入Fe3O4在具有随机填料分布的具有随机填料分布的二元填料的研究组复合材料的增加的电导率增加3-5个级的增加。 由于吸收增加,GNP / Fe3O4 /环氧复合材料的屏蔽性能显着改善。

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