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Glass transition temperatures and Charge Transport Characteristics of Epoxy/SiO2 Composites

机译:环氧/ SiO2复合材料的玻璃过渡温度和电荷传输特性

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Epoxy resin based composite insulation materials are widely used in power equipment, and they have also received extensive research. But the effects of the fillers on physical properties of epoxy resin has not yet formed a consistent law, and the mechanism has not been finalized. So, it is necessary to continue to study the characteristics of epoxy resin composites. In this paper, the epoxy/SiO2 composites were studied. By comparing the effects of different nano-SiO2 contents and the effects of the same content of micro-SiO2 and nano-SiO2, the results showed that the glass transition temperature, electrical conductivity and thermal stimulation current all exhibited novel trends. After the introduction of nano-silica, the glass transition temperature decreased, which indicated that the molecular chain was easier to move, and consequently the charge carriers were easier to migrate, leading a higher electrical conductivity. On the contrary, the effects of micro-SiO2 were not obvious.
机译:环氧树脂基复合绝缘材料广泛用于电力设备,它们也接受了广泛的研究。但填料对环氧树脂物理性质的影响尚未形成一致的法律,并且该机制尚未确定。因此,有必要继续研究环氧树脂复合材料的特性。在本文中,环氧树脂/ SIO 2 研究了复合材料。通过比较不同纳米SIO的效果 2 微观SiO的内容和效果 2 和纳米sio 2 结果表明,玻璃化转变温度,导电性和热刺激电流都表现出新的趋势。在引入纳米二氧化硅之后,玻璃化转变温度降低,表明分子链更容易移动,因此电荷载流子更容易迁移,导致较高的导电性。相反,微观SIO的影响 2 不明显。

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