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Enhancement of magnetic losses in hybrid polymer composites with MnZn-ferrite and conductive fillers

机译:含锰锌铁氧体和导电填料的杂化聚合物复合材料的磁损耗增强

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摘要

Polymer composites (PCs) with a polyurethane (PU) matrix filled with magnetic filler (MnZn ferrite) and hybrid polymer composites (HPCs) consisting of this magnetic filler and various types of conductive fillers (carbon black, carbon fibers, aluminum powder, polypyrrole) are prepared. The matrix structure of a HPC is formed (i) by a polymer filled with conductive filler, which forms the skeleton of an infinite cluster, and (ii) by ferrite particles that are larger than conductive particles. Thus, an HPC represents an ensemble of ferrite particles each of which is surrounded by a conductive medium and can be considered as a “core–shell” structure. The development of a core–shell structure is evidenced by the lower electric percolation threshold in an HPC compared with that in PU filled with conductive filler. Magnetic and dielectric spectra of PCs and HPCs are studied in the frequency range from 1 MHz to 10 GHz. Hybrid systems exhibit a considerable enhancement of magnetic losses compared with PCs. The enhancement of magnetic losses in HPCs is due to the conduction currents that are induced in the conductive shell by a microwave magnetic field.
机译:具有填充有磁性填料(MnZn铁氧体)的聚氨酯(PU)基体的聚合物复合材料(PC)和由该磁性填料和各种类型的导电填料(炭黑,碳纤维,铝粉,聚吡咯)组成的杂化聚合物复合物(HPC)准备好了。 HPC的基质结构是(i)由填充有导电填料(形成无限簇的骨架)的聚合物形成的;(ii)由大于导电颗粒的铁氧体颗粒形成。因此,HPC代表了一组铁氧体颗粒,每个铁氧体颗粒都被导电介质包围,可以被视为“核-壳”结构。与填充导电填料的聚氨酯相比,HPC中较低的电渗透阈值证明了核-壳结构的发展。在1 MHz至10 GHz的频率范围内研究了PC和HPC的电磁谱和介电谱。与PC相比,混合动力系统的磁损耗显着提高。 HPC中磁损耗的增加归因于微波磁场在导电外壳中感应的导电电流。

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  • 来源
    《Journal of Materials Science 》 |2007年第22期| 9480-9490| 共11页
  • 作者单位

    Polymer Centre Faculty of Technology Tomas Bata University in Zlin 76272 Zlin Czech Republic;

    Polymer Centre Faculty of Technology Tomas Bata University in Zlin 76272 Zlin Czech Republic;

    Polymer Centre Faculty of Technology Tomas Bata University in Zlin 76272 Zlin Czech Republic;

    Polymer Centre Faculty of Technology Tomas Bata University in Zlin 76272 Zlin Czech Republic;

    Polymer Centre Faculty of Technology Tomas Bata University in Zlin 76272 Zlin Czech Republic;

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