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Estimation of interphase thickness of epoxy-based nanocomposites

机译:环氧基纳米复合材料相间厚度的估算

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摘要

Recent literature attributes the improvement often seen in the properties of nanocomposites to the interphase layer between the polymer matrix and the filler material. However, an understanding of the interphase in nanocomposites is still elusive. The present work aims at estimating the interphase thickness of epoxy based nanocomposites. For experimental studies, epoxy resin is used as the base polymer, and aluminium oxide (Al2O3) particles with an average size of 50 nm are used as fillers. The nanocomposites are characterized in terms of space charge density, conductivity, permittivity, and breakdown strength. All properties are measured for different nanofiller loadings (0.5 vol. % to 2 vol. %). The experimental findings reveal a correlation between interphase volume fraction and change in dielectric properties. It is assumed that the greatest change in property is achieved at that filler loading where the interphase volume fraction is maximized, provided adequate dispersion is achieved at all filler loadings. An approximate interphase thickness is estimated for epoxy alumina nanocomposites by using experimental results in conjunction with a simulation model. Accuracy of the estimated interphase thickness is seen to be dependent on the scatter in particle size and the uniformity of particle dispersion in the polymer matrix.
机译:最近的文献将经常在纳米复合材料的性能中看到的改进归因于聚合物基质和填充材料之间的中间层。然而,对纳米复合材料中相间相的了解仍然难以捉摸。本工作旨在估计环氧基纳米复合材料的相间厚度。为了进行实验研究,环氧树脂被用作基础聚合物,平均粒径为50 nm的氧化铝(Al2O3)颗粒被用作填充剂。纳米复合材料的特征在于空间电荷密度,电导率,介电常数和击穿强度。针对不同的纳米填料装载量(0.5体积%至2体积%)测量所有性能。实验发现揭示了相间体积分数与介电性能变化之间的相关性。假设在所有相间体积分数都达到足够的分散的前提下,在相间体积分数最大的填料载荷下,性能得到了最大的改变。通过使用实验结果和模拟模型,可以估算出环氧氧化铝纳米复合材料的近似相间厚度。可以看出,估计的相间厚度的准确性取决于粒度的分散以及聚合物基质中颗粒分散的均匀性。

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