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Influence of interface on the electrical properties of silicone nanocomposites

机译:界面对硅氧烷纳米复合材料电性能的影响

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The interface between filler and matrix affects the properties of nanocomposites because of the high ratio of surface area to volume of nano fillers. To understand the role of interface, silicone nanocomposites containing two different types of hydrophobic fumed silica with different specific surface areas of 160 and 260 m2/g in silicone rubber (RTV 615) matrix are investigated using frequency domain spectroscopy. The spectroscopy measurements are carried out in the frequency range of 10-4 to 103 Hz, at various excitation levels. Effects of filler concentration, filler surface treatment, and mixing method on the dielectric properties are investigated. The results show that the level of filler dispersion plays a major role in determining the effective permittivity and loss factor as it considerably alters the volume of interface region and bonding of fillers to the polymer.
机译:填充物和基质之间的界面由于纳米填料的表面积与体积的高比例而影响纳米复合材料的性质。要了解界面的作用,使用频域研究含有两种不同类型的疏水性气相二氧化硅,其中硅橡胶(RTV 615)基质中的不同比表面积为160和260μm 2℃的硅纳米复合材料光谱学。光谱测量在10 -4 / sup>至10 3 hz的频率范围内进行,在各种激发水平下进行。研究了填料浓度,填料表面处理和混合方法对电介质性质的影响。结果表明,填充分散水平在确定有效介电常数和损耗因素时起着重要作用,因为它显着改变了界面区域的体积和填料与聚合物的键合。

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