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Corona Aging of Polyimide Films at Different Atmospheric Relative Humidity

机译:不同大气相对湿度下聚酰亚胺薄膜的电晕老化

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In order to investigate the effect of atmospheric relative humidity (RH) on corona discharge aging of polyimide (PI) films, a tracing monitoring was performed on the different aging phases of PI film at different RH values. The experiments on discharge activities, dielectric properties and surface morphologies were carried out in this work. It revealed that as RH below 69% both discharge quantity and discharge frequency experienced rapid growth stage, stationary stage and secondary development stage, but as RH exceeds 84%, both of them increased linearly with time. Moisture content rate ($Delta$wt%) increased significantly at the beginning of the corona aging and leveled off at stationary and secondary development stages; As RH reached 84%, $Delta$wt% almost linearly increased along with the aging time; Moreover, it indicated that the electrothermal surface damage caused by corona discharge was deemed as the main cause of the rapid decrease of surface resistivity $(p_{mathrm{s}})$. With the corona erosion, water gradually entered the film, eventually leading to the sharp decrease of $ho_{mathrm{v}}$ till breakdown.
机译:为了探讨大气相对湿度(RH)对聚酰亚胺(PI)膜的电晕放电时老化的影响,对不同RH值的PI膜的不同老化相进行跟踪监测。在这项工作中进行了对放电活动,介电性质和表面形态的实验。据透露,随着RH低于69%的排放量和放电频率,经历了快速增长阶段,固定阶段和二次开发阶段,但随着RH超过84%,它们两者随着时间的推移而线性增加。水分含量($ Delta $ wt%)在电晕衰老开始时显着增加,并在静止和二次开发阶段排水;随着RH达到84%,$ delta $ wt%几乎线性的时间随着老化时间而增加;此外,它表明,电晕放电引起的电热表面损坏被认为是表面电阻率快速减少的主要原因(p _ { mathrm {s})$。随着电晕侵蚀,水逐渐进入薄膜,最终导致$ rho _ { mathrm {v}}的急剧下降。

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