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Effects of ZnO sputtering Layer on Surface charge and Surface discharge of Oil-impregnated Paper

机译:Zno溅射层对涂布纸表面电荷和表面排出的影响

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In order to accelerate charge dissipation and improve the surface discharge characteristics of oil-impregnated paper, a novel method to modify the surface property of the insulating paper applied in converter transformers is presented in this paper. The papers used in the experiment were sputtered with ZnO for different sputtering time of 0, 7.5, 15 and 30 min. The surface morphology of dry paper was observed by scanning electron microscopy, surface and volume conductivities of the oil-impregnated sputtered paper were measured. Moreover, the surface potential decay rate and trap distribution of sputtered papers under voltage with different polarities were studied further by means of surface potential decay (SPD). Finally, the direct current (DC) surface discharges were investigated. Obtained results showed that sputtering with ZnO had an obvious influence on the surface structure of the paper, resulting in an increase of the surface and volume conductivities. The treatment was shown to cause acceleration in the charge decay process. Furthermore, appropriate sputtering enhanced the surface discharge voltage.
机译:为了加速电荷耗散和改善油浸纸的表面放电特性,本文提出了一种改变应用中应用于转换器变压器中的绝缘纸的表面特性的新方法。在实验中使用的纸张用ZnO溅射,针对0,7.5,15和30分钟的不同溅射时间溅射。通过扫描电子显微镜观察干纸的表面形态,测量油浸渍溅射的表面和体积传导性。此外,通过表面电位衰减(SPD)进一步研究了具有不同极性电压下的溅射纸的表面电位衰减率和捕集分布。最后,研究了直流(DC)表面放电。得到的结果表明,用ZnO溅射对纸张的表面结构具有明显的影响,导致表面和体积导率的增加。该处理显示在电荷衰减过程中引起加速度。此外,适当的溅射增强了表面放电电压。

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