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Dielectric Aging and Dielectric Degradation (Breakdown) of Polymer Films in AC Electric Fields

机译:AC电场中聚合物膜的介电老化和介电降解(分解)

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摘要

An explanation is proposed for the difference of the electric-strength properties of polymers in dc and ac electric fields. The energy release upon the recombination of electrons and holes injected into a polymer dielectric is considered as a factor accelerating the processes of electric aging of these dielectrics in an ac electric field. It is shown that the nonradiative relaxation of electron excited states, which causes the bond scission in macromolecules and the formation of free radicals, leads to the formation of deep electron traps in the polymer dielectric; as a result, the macromolecule ionization in an electric field is accelerated due to the transition of electrons into these traps. In the solid-state plasma, screening effect, which decreases the molecule ionization potential, appears. As a result, the macromolecule ionization rate, i.e., the rate of charge carrier formation, increases, which leads to a decrease in the lifetime of a polymer dielectric in an ac electric field as compared to the polymer lifetime in a dc electric field.
机译:提出了一种解释,用于DC和AC电场中聚合物的电力特性的差异。注入聚合物电介质的电子和孔的重组时的能量释放被认为是加速在AC电场中这些电介质的电老化过程的因素。结果表明,电子激发态的非辐射弛豫导致大分子中的粘合性和自由基的形成,导致聚合物电介质中的深电子阱的形成;结果,电场中的大分子电离由于电子转换为这些陷阱而被加速。在固态等离子体中,出现降低分子电离电位的筛选效果。结果,与DC电场中的聚合物寿命相比,致电荷载体形成的大分子电离率增加,这导致AC电场中的聚合物电介质中的寿命减小。

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