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Study on charge transport mechanism and space charge characteristics of polyimide films

机译:聚酰亚胺薄膜的电荷传输机理和空间电荷特性研究

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摘要

As a core component of ac drive electric locomotive, performance of inverter-fed motor directly influences the stability and reliability of locomotive running. However, insulation early failures occur frequently. Presently, polyimide film, as a special type of engineering plastic film, widely applied in turn to turn insulation and turn to ground insulation of inverter-fed motors is a kind of basic insulating material. This paper investigates charge transport mechanism and space charge characteristics of polyimide films based on measuring and comparing space charge accumulation threshold field between corona-resistant and common polyimide films and analyzing the effect of temperature on space charge distribution. The results reveal that space charge accumulation threshold field of corona-resistant polyimide film is higher than that of common polyimide film; the adding of nano-particles effectively increases dielectric properties of corona-resistant film. Additionally, raising temperature promotes the electrode injecting charge and increases the charge energy and conductivity which gradually enhances space charge number and extends trapping position into the bulk, closely related to polyimide film insulation aging and breakdown which is an important characteristic.
机译:变频调速电机作为交流传动电力机车的核心部件,其性能直接影响机车运行的稳定性和可靠性。但是,绝缘早期故障经常发生。目前,聚酰亚胺薄膜作为一种特殊的工程塑料薄膜,被广泛地应用于逆变式电动机的匝间绝缘和地线绝缘,是一种基本的绝缘材料。本文通过测量和比较耐电晕膜和普通聚酰亚胺膜之间的空间电荷积累阈值场,并分析温度对空间电荷分布的影响,研究聚酰亚胺膜的电荷传输机理和空间电荷特性。结果表明,耐电晕聚酰亚胺薄膜的空间电荷积累阈值场高于普通聚酰亚胺薄膜;纳米粒子的添加有效地提高了耐电晕膜的介电性能。另外,升高温度会促进电极注入电荷,并增加电荷能量和电导率,从而逐渐增加空间电荷数并将捕获位置扩展到主体中,这与聚酰亚胺膜绝缘老化和击穿密切相关,这是重要的特性。

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