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首页> 外文期刊>IEEE Transactions on Plasma Science >Distribution of Cathode Current Density and Breaking Capacity of Medium Voltage Vacuum Interrupters With Axial Magnetic Field
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Distribution of Cathode Current Density and Breaking Capacity of Medium Voltage Vacuum Interrupters With Axial Magnetic Field

机译:轴向磁场中压真空灭弧室阴极电流密度和分断能力的分布

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摘要

A high-speed photographic technique incorporating computer-aided reconstruction of the cathode current density was applied to butt solid contacts with an external axial magnetic field (AMF) at relatively low current density j < 2 kA/cm{sup}2. In the present work, we have further developed this technique. This advanced technique is applicable for the analysis of the current density distribution on the complicated electrodes of commercial vacuum interrupters (Vis) carrying currents up to J = 50 kA at current density up to j ~ 4 kA/cm{sup}2. The experiments have been carried out for three types of electrode designs generating AMFs with different configurations. The results obtained by this new technique proved a previously derived conclusion that current density tends to distribute evenly across that part of the contact surface where the AMF induction fits the inequality B{sub}Z{sup}(1) < B{sub}Z < B{sub}Z{sup}(2) where B{sub}Z{sup}(1), B{sub}Z{sup}(2) are characteristic induction fields defined in our previous work. Results of the analysis of erosion tracks on the electrodes are also in agreement with this conclusion. Slots on the electrode surface lead to substantial nonuniformity of current density distribution even if the AMF is properly configured. Comparison of the breaking capacity and distribution of current density for different electrode designs proves that interruption failure occurs at peak current density ~ 3.5 kA/cm{sup}2. This value exceeds by at least 50% previous estimates of maximum current density interruptible by a commercial VI. We have also found that changing the configuration of the AMF may substantially improve breaking capacity. In our experiments, a slight modification of the AMF distribution provides a 12% increase of the breaking capacity.
机译:高速照相技术结合了阴极电流密度的计算机辅助重建技术,以相对较低的电流密度j <2 kA / cm {sup} 2应用于具有外部轴向磁场(AMF)的对接固体触点。在当前的工作中,我们进一步开发了该技术。这项先进的技术适用于分析在电流密度高达j〜4 kA / cm {sup} 2时载流电流高达J = 50 kA的商用真空灭弧室(Vis)的复杂电极上的电流密度分布。已经针对生成具有不同配置的AMF的三种类型的电极设计进行了实验。通过这项新技术获得的结果证明了先前得出的结论,即电流密度倾向于在接触表面的AMF感应适合不等式B {sub} Z {sup}(1)

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