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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Effect of nano-silica on dielectric properties and space charge behavior of epoxy resin under temperature gradient
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Effect of nano-silica on dielectric properties and space charge behavior of epoxy resin under temperature gradient

机译:纳米二氧化硅对温度梯度下环氧树脂介电性能和空间电荷行为的影响

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摘要

Epoxy resin (EP) nanodielectrics with the mass fraction of nano-silica (SiO2) between 0 and 5 wt% were manufactured. The influence of SiO2 content on the dielectric properties of EP nanodielectrics was studied. It is found that the dielectric properties are the best when the SiO2 content is 0.5 wt%. We further tested and analyzed the dielectric properties of pure EP and EP nanodielectrics with 0.5 wt% SiO2 at the temperature ranging from 40 to 200 degrees C. The results show that the complexity permittivity and space charge accumulation of the samples increase significantly at low frequency and the temperature above Tg. The complexity permittivity and space charge accumulation of the nanocomposites with the loading of 0.5 wt%, however, are smaller than that of pure EP. These results indicate that the interface area between nanosilica and EP matrix suppresses the motions of molecular chains and the migration of charge carriers.
机译:制造具有0至5wt%之间的纳米二氧化硅(SiO 2)的质量分数的环氧树脂(EP)纳米电极。 研究了SiO2含量对EP纳米电极电介质性能的影响。 发现当SiO 2含量为0.5wt%时,介电性质是最佳的。 我们进一步测试并分析了纯EP和EP纳米电极的介电性能,在40-20℃的温度下用0.5wt%SiO 2进行纯EP和EP纳米电极。结果表明,样品的复杂性介电常数和空间电荷积累在低频和下降 高于Tg的温度。 然而,纳米复合材料的复杂性介电常数和空间电荷累积为0.5wt%的载荷量小于纯EP。 这些结果表明,纳米硅和EP基质之间的界面面积抑制了分子链的运动和电荷载体的迁移。

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