绝缘腔中的第一电子可用性和PD生成

G. Montanari, M. Conti, F. Ciani, A. Cavallini, G. Mazzanti, S. Serra
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引用次数: 6

摘要

本文研究了绝缘腔内局部放电随环境条件的变化规律。特别关注的是半透明隔热材料受到不同可见光强度、紫外线照射或保持在黑暗中的特殊条件。实验是在有人工缺陷的细胞上进行的,在环氧树脂中产生球形空隙。结果表明,放电起始电压不仅对战斗波长和强度敏感,而且放电平均延迟时间也有较大的变化。可以推测,起始电压主要与背景辐射或场辅助电子从缺陷表面脱陷有关,这取决于缺陷的几何形状和环境条件。
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First electron availability and PD generation in insulation cavities
An investigation on the behavior of partial discharges occurring in insulation cavities as a function of environmental conditions is presented in this paper. In particular, focus is made on peculiar conditions where semi-transparent insulation is subjected to different visible light intensity, is irradiated by UV or is kept in the dark. Experiments are carried out on cells with an artificial defect, obtained producing a spherical void in epoxy resin. It is shown that not only PD inception voltage is sensitive to fight wavelength and intensity, but also PD average delay time changes considerably. It can be speculated that inception voltage can be related prevailingly to either background radiation or field-assisted electron detrapping from defect surfaces, depending on defect geometry and environmental conditions.
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The effect of temperature and the mutual influence between two cavities of on the appearance of partial discharges in gaseous cavities contained in the insulator of high voltage Breakdown strength at the interface between epoxy resin and silicone rubber Surface change of polyamide nanocomposite caused by partial discharges Surface finish effects on partial discharge with embedded electrodes Roles of cumyl alcohol and crosslinked structure in homo-charge trapping in crosslinked polyethylene
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