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Deterioration of metal oxide surge arrester element caused by internal partial discharges under polluted conditions

机译:在污染条件下内部局部放电导致金属氧化物电涌放电器元件劣化

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In order to clarify the influence of internal partial discharges on metal oxide surge arrester elements (ZnO varistors) caused under polluted conditions, tests simulating internal partial discharges were made. In the simulation tests, internal partial discharges occurred between the ZnO varistor side surface and the needle in both air and nitrogen atmospheres. It was found that the deterioration of the ZnO varistor occurs in an air atmosphere. Some aspects in the deterioration of ZnO varistors were elucidated from measurements of the V-I characteristics, analysis of the gas generated, observations by scanning electron microscope, and thermally stimulated current spectra. It is shown that the deterioration of a ZnO varistor under partial discharge conditions in air may be caused by both the erosion of the side surface of the ZnO varistor and the action of some generated gases. This deterioration may be accelerated under service conditions.
机译:为了弄清楚内部局部放电对在污染条件下引起的金属氧化物避雷器元件(ZnO压敏电阻)的影响,进行了模拟内部局部放电的测试。在模拟测试中,在空气和氮气气氛中,ZnO压敏电阻侧面和针之间都发生内部局部放电。发现在空气气氛中会发生ZnO压敏电阻的劣化。通过测量V-I特性,分析产生的气体,通过扫描电子显微镜观察和热激励电流光谱,可以阐明ZnO压敏电阻性能恶化的某些方面。结果表明,在空气中局部放电条件下,ZnO压敏电阻的劣化可能是由于ZnO压敏电阻的侧面腐蚀和某些生成气体的作用所致。在使用条件下,这种恶化可能会加速。

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