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Impulse breakdown of compressed gases between dielectric-covered electrodes

机译:电介质覆盖电极之间的压缩气体的脉冲击穿

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摘要

The impulse breakdown of sulphur hexafluoride and nitrogen gas has been investigated at pressures up to 1.5MN/m2 and 5MN/m2 (15 and 50atm), respectively, for voltages up to 700kV, in order to determine the effect of covering the electrodes with insulating film, under both uniform-and coaxial-field conditions. The first breakdown fields are given, as well as the conditioned values, as these are of practical importance. In general, insulated coverings markedly increased the breakdown field; with uniform-field conditions, they enabled Paschen's law to be obeyed for fields up to 130 MV/m in sulphur hexafluoride, and 40 MV/m in nitrogen, about 50% higher than the fields for which it is normally valid with uncovered electrodes at these pressures. Dust particles were shown to have a deleterious effect, particularly at the higher pressures and fields, and could lower the breakdown field by 30%. Polarity effects on breakdown were found for both gases, with covered and uncovered electrodes.
机译:为了确定用绝缘膜覆盖电极的效果,已分别在高达1.5MN / m2和5MN / m2(15和50atm)的压力下对六氟化硫和氮气的脉冲击穿进行了研究,以达到700kV的电压。均匀和同轴场条件下的胶片。给出了第一击穿字段以及条件值,因为它们具有实际重要性。通常,绝缘覆盖层会显着增加击穿场。在均匀场条件下,它们使六氟化硫中高达130 MV / m的场和氮中高达40 MV / m的场服从帕申定律,比未覆盖电极下通常有效的场高约50%。这些压力。已显示出灰尘颗粒具有有害作用,尤其是在较高的压力和磁场下,可能会使击穿场降低30%。对于覆盖和未覆盖电极的两种气体,均发现了对击穿的极性影响。

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