High temperature PD characteristics of polyimide and liquid crystal polymer

T. Okamoto, M. Kanegani, N. Hozumi, M. Ikeda
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Abstract

Partial discharge (PD) characteristics and PD degradation mechanisms of high voltage equipment have been studied by many researchers from the point of view of insulation diagnosis and insulation breakdown prediction. Since PD pulse occurrence in insulation systems is affected by many factors such as void gas, electrode materials, electrode configuration, void shape, applied electric field strength and remaining charge effect of previous PD, the relationship between PD characteristics and PD mechanism still remains ambiguous. Life time estimation of insulating material at high temperature becomes very important due to severe design condition and environmental conditions in power apparatus and electronic insulation. Unfortunately there have been few research works on PD endurance characteristics of insulating materials. The gas temperature is also a very important factor affecting PD characteristics. This paper describes some aspects of PD characteristics and PD endurance life at elevated temperature with several insulating materials such as liquid crystal polymer (Xydar), epoxy resins, polyimide and polyethylenetelephthalate (PET).
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聚酰亚胺和液晶聚合物的高温PD特性
许多研究者从绝缘诊断和绝缘击穿预测的角度对高压设备局部放电特性和局部放电退化机理进行了研究。由于绝缘系统中局部放电脉冲的发生受空洞气体、电极材料、电极结构、空洞形状、外加电场强度以及先前局部放电的剩余电荷效应等诸多因素的影响,因此局部放电特性与局部放电机理之间的关系仍然不明确。由于电力设备和电子绝缘的设计条件和环境条件的苛刻,绝缘材料的高温寿命估算变得非常重要。遗憾的是,目前对绝缘材料耐放电特性的研究工作很少。气体温度也是影响PD特性的一个非常重要的因素。本文介绍了液晶聚合物(Xydar)、环氧树脂、聚酰亚胺和聚象二甲酸乙二醇酯(PET)等几种绝缘材料对局部放电特性和局部放电高温耐久寿命的影响。
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