首页> 外文会议>2010 Annual Report Conference on Electrical Insulation and Dielectric Phenomena >Dielectric response and thermal conductivity of epoxy resin filled with nanoalumina particles of different size in α, γ and δ phase
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Dielectric response and thermal conductivity of epoxy resin filled with nanoalumina particles of different size in α, γ and δ phase

机译:填充有不同尺寸的α,γ和δ相纳米氧化铝颗粒的环氧树脂的介电响应和导热系数

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Specific properties of insulation systems based on thermosetting and thermoplastic polymers can be enhanced by adding different types of inorganic fillers. The focus of this paper is on the effect of the filler size and modifications of the crystallinity of aluminum oxide (Al2O3) nanoparticles on the dielectric and thermal properties of epoxy-based composites. Nanoalumina in the α, γ and δ phases with different average particle size were introduced into epoxy resin, using a conventional mechanical mixing method and ultrasonication processing. Surface treatment of the particles was realized by silanization, in order to improve the compatibility of the host polymer and the ceramic filler, by organizing physical and chemical bonding between the dissimilar materials. This was done to obtain a uniform dispersion of nanoparticles in the polymer matrix. Five types of alumina-epoxy composites were fabricated with an average particle size ranging between 20 and 80 nm. The filler loading was 2 wt.% for all composites. Neat epoxy samples were used as reference. The morphology characterization of the particles and synthesized specimens was carried out by transmission electron microscopy and X-ray diffraction techniques. Dielectric spectroscopy measurement was realized in a broad frequency range between 0.01 and 10 MHz, for temperatures between -20°C and 120°C. Tentative explanations are given for the observed differences in the relative permittivity and dielectric loss factor between nanocomposites and the reference polymer.
机译:通过添加不同类型的无机填料,可以提高基于热固性和热塑性聚合物的保温系统的特殊性能。本文的重点是填料尺寸和氧化铝(Al 2 O 3 )纳米颗粒的结晶度改变对环氧树脂的介电和热性能的影响基复合材料。使用常规的机械混合方法和超声处理,将平均粒径不同的α,γ和δ相的纳米氧化铝引入环氧树脂。通过硅烷化实现颗粒的表面处理,以通过组织异种材料之间的物理和化学键合来改善主体聚合物和陶瓷填料的相容性。这样做是为了使纳米颗粒在聚合物基质中均匀分散。制备了五种类型的氧化铝-环氧复合材料,其平均粒径在20至80 nm之间。对于所有复合材料,填料填充量为2重量%。干净的环氧树脂样品用作参考。通过透射电子显微镜和X射线衍射技术进行颗粒和合成样品的形态表征。介电光谱测量是在温度介于-20°C至120°C之间的0.01至10 MHz的宽频率范围内实现的。给出了纳米复合材料与参考聚合物之间相对介电常数和介电损耗因子差异的初步解释。

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