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Breakdown voltage of interelectrode gap between sphere-plane electrodes under ac voltage

机译:交流电压下球面电极之间电极间隙电极间隙的击穿电压

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The breakdown voltage in a small spacing under dc voltage application has been well described with the Paschen law. The present paper differs from the previous works in that we employ ac voltage. The electrode system employed is sphere-plane electrodes and the sphere and/or sphere electrodes are coated with an epoxy resin. The breakdown voltage of air gap of the Metal (M) - Air gap (G) - M, MG-Epoxy layer (I), IGI electrode systems is measured using the advantage of the excited particles from the previous breakdown under a fast rate-of rise of ac voltage. It is found that the breakdown voltage decreases by employing the epoxy coating on electrode in the whole range of the production Pd from 0.3 to 90 Pa·m. In the range of the small product Pd from 0.3 to 5 Pa·m, the possibility of breakdown becomes high when the polarity of brass electrode is negative for MGI electrode system. It is concluded that the epoxy coated electrode decreases the breakdown of air and enhances electric field for the small spacing.
机译:通过Paschen Lave很好地描述了DC电压应用下小间距下的击穿电压。本文与之前的作品不同,我们采用交流电压。采用的电极系统是球面电极,球体和/或球体涂有环氧树脂。金属(m) - 气隙(g) - m,mg-环氧树脂层(i),igi电极系统的空气间隙的击穿电压使用在快速速率下的激发颗粒的优点来测量IgI电极系统。交流电压升起。发现击穿电压通过在生产PD的整个范围内的电极上使用0.3至90Pa·m来降低。在0.3至5Pa·m的小产物Pd的范围内,当黄铜电极的极性对于MGI电极系统为负时,击穿的可能性变高。结论是,环氧涂覆电极降低空气的击穿,并增强小间距的电场。

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