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Dielectric properties of polypropylene loaded with synthetic organoclay

机译:合成有机粘土负载聚丙烯的介电性能

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The incorporation of synthetic silica nanoparticles into polypropylene is shown to increase the ac breakdown strength compared to unfilled material. This breakdown strength stays unchanged during application of a 40 kV/mm dc field for up to 500 h at both, room temperature and 90°C. Dielectric spectroscopy shows an increase of dielectric loss factor, tanδ, with nanoflller concentration and a distinct relaxation around 60°C. The increase of tanδ caused by nanoparticles is moderate and thus manageable in practical applications. Subjecting specimens to a dc field did not significantly change the dielectric loss spectra. The dc conductivity of the materials with nano-filler was found to be higher than for unfilled materials. This is believed to be caused by the overlapping of the diffuse double layers surrounding nanoparticles, which provide a path for the migration of electric charge. Aging nanocomposites in a dc field resulted in the increase of conductivity but the increments were significantly smaller than those observed in the material without organoclay.
机译:与未填充的材料相比,将合成的二氧化硅纳米粒子掺入聚丙烯中可提高交流击穿强度。在室温和90°C的条件下,在40 kV / mm dc磁场下施加长达500 h的过程中,这种击穿强度均保持不变。介电谱显示介电损耗因子tanδ随纳米填料浓度的增加而增加,并在60°C附近明显弛豫。由纳米颗粒引起的tanδ的增加是中等的,因此在实际应用中是可以控制的。使样品经受直流电场并没有显着改变介电损耗谱。发现具有纳米填料的材料的直流电导率高于未填充材料的直流电导率。据信这是由于围绕纳米颗粒的扩散双层的重叠而造成的,这为电荷的迁移提供了路径。在直流场中老化纳米复合材料会导致电导率增加,但其增加幅度明显小于没有有机粘土的材料。

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