Surface treeing on pressboard barriers in synthetic and natural ester liquids under AC stress

X. Yi, Z.D. Wang, F. Perrot, M. Lashbrook
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引用次数: 16

Abstract

This paper reports experimental investigations on pressboard surface treeing processes and the accompanying creepage discharge patterns. With the help of fast digital video recorder, wideband discharge current sampling resistor and commercial PD detector, it is found that the liquid impregnated pressboard as composite insulation is susceptible to erosion giving rise to white marks due to intense discharges occurring on/near to the pressboard surface. The white mark is visible after discharges evaporate the liquid and moisture and takes the form of trapped gaseous bubbles within the surface layers of pressboard. Once the white mark is formed, it can continue to grow even under a reduced voltage level until it bridges the gap and finally causes flashover. The white mark appears at a lower voltage and propagates more readily on the ester impregnated pressboard, due to more intense discharges, more gas generation and the higher viscosity of esters than mineral oil.
合成酯和天然酯液体在交流应力下的压板屏障表面树状
本文报道了对压板表面爬树过程及其伴随的爬电放电模式的实验研究。借助快速数字录像机、宽带放电电流采样电阻和商用PD检测器,发现浸渍液体作为复合绝缘材料的压板表面或附近发生强烈放电,容易受到侵蚀而产生白色痕迹。在排放物蒸发液体和水分后,白色标记是可见的,并以被困在压板表层的气体气泡的形式出现。一旦形成白色标记,即使在降低的电压水平下,它也可以继续生长,直到它弥合间隙并最终引起闪络。由于比矿物油更强烈的放电、更多的气体产生和更高的酯粘度,在较低的电压下出现白色标记,并更容易在酯浸渍的压板上传播。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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