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Gas-Insulated Self-Breakdown Spark Gaps: Aspects on Low-Scattering and Long-Lifetime Switching

机译:气体绝缘的自我击穿火花间隙:低散射和长寿命切换的方面

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摘要

The influence of the electric field distribution between the electrodes and the seed electron generation rate on the scattering of the breakdown voltage of SF_6-insulated spark gaps was investigated. The breakdown voltage scattering considerably can be reduced by applying large-gap-volume, uniform-field electrode profiles instead of spherical shaped electrodes. Moreover, uniform field electrode profiles exhibit an uniform discharge probability in the entire gap volume and following an almost uniform erosion of electrode material along the electrode's surface. This preserves electrode shape and switching performance of the spark gap for a long maintenance-free lifetime. Breakdown voltage scattering further can be reduced by increasing the seed electron generation in the gap by an auxiliary corona discharge adjacent to the main gap. The experimental observations are discussed on the basis of the volume time law for discharge initiation.
机译:研究了电极与种子电子产生率之间的电场分布对SF_6绝缘火花间隙的散射电压散射的影响。通过施加大型间隙体积,均匀 - 场电极轮廓而不是球形电极,可以显着降低击穿电压散射。此外,均匀的场电极型材在整个间隙体积中表现出均匀的放电概率,并且在沿电极表面几乎均匀的电极材料腐蚀之后。这使电极形状和开关性能​​的电极形状和开关性能​​进行了长的免维护寿命。通过在与主间隙附近的辅助电晕放电增加间隙中的种子电子产生,可以减少击穿电压散射进一步降低。在放电启动的体积时间法律的基础上讨论了实验观察。

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