电极涂层对变压器油中电对流发生和发展的影响

A. Beroual, J. Fleszyński
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引用次数: 3

摘要

本文报道了不同材料的薄层电极涂层对电对流产生和发展的影响。研究是用铝球平面电极系统完成的。考虑的油样是新鲜的和陈年的。薄层是聚四氟乙烯、氧化硅和氮化硅的沉积,通过磁控溅射获得。结果表明,涂层材料的性质以及电极的几何形状和极性极大地影响了阈值电对流电压(即使液体运动所需的电压)。当两个电极都被涂层时,效果更加明显;新油对极性的影响比陈年油更显著。在高压下,与未涂覆电极相比,液体的运动速度较慢,流的层流特征在较宽的电压间隔内持续存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of electrodes coating on the initiation and development of electroconvection in transformer oils
This work reports on the influence of electrodes coating with thin layers of different materials, on the initiation and development of the electroconvection. The investigations are achieved with a sphere-plane electrode system of aluminum. The considered oil samples are fresh and aged ones. The thin layers are deposits of polytetrafluoroethylene, silicon oxide and silicon nitride, obtained by magnetron sputtering. It shown that the nature of coating materials as well as the geometry and polarity of the electrodes greatly influence the threshold electroconvection voltage (i.e., the voltage required to set the liquid in motion). The effect is more marked when both electrodes are coated; the influence of polarity is more significant with fresh oils than with aged ones. At high voltages, the liquid motion is slower and the laminar character of streaming persists within a wide interval of voltages than in the case of uncoated electrodes.
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