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Multifractal Analysis of Particle Dispersion and Interphase Percolation in Nanocomposites

机译:纳米复合材料中颗粒分散和相间渗流的多重分形分析

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The dispersion of nanoparticles in nanocomposites of an epoxy matrix reinforced with alumina (10nm) and zinc oxide (100nm) is analyzed using FIB/FESEM images, varying the volumetric fraction of fillers from 0.2 % to 6.0 %. The nanofillers dispersion images were transformed to binary files and the multifractal spectrum was calculated. From these data the relation between agglomerate and individual particle dimensionalities related to the interphase percolation was investigated. Interphase percolation of nanocomposites should be achieved when the dimensionality of agglomerations is greater than the dimensionality of individual particles. The actual percolation state of the interphase is determined, matching the experimental nanocomposites behavior for electrical behavior at AC and dielectric breakdown at DC.
机译:使用FIB / FESEM图像分析纳米颗粒在用氧化铝(10nm)和氧化锌(100nm)增强的环氧基质的纳米复合材料中的分散度,将填料的体积分数从0.2%更改为6.0%。将纳米填料分散图像转换为二进制文件,并计算多重分形光谱。根据这些数据,研究了团聚体和与相间渗滤有关的单个颗粒尺寸之间的关系。当团聚的尺寸大于单个颗粒的尺寸时,应实现纳米复合材料的相间渗透。确定相的实际渗透状态,使其与交流电性能和直流电击穿性能的实验纳米复合材料行为相匹配。

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