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Optimization of a Triggered Vacuum Switch With Multirod Electrodes System

机译:带多杆电极系统的触发式真空开关的优化

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The breakdown and triggering characteristics of triggered vacuum switch (TVS) are very important features, and they affect the operation reliability of TVS. Both of them mainly depend on the electrode material, electrode shape, gap distance, and surface condition. For an optimized electrode's geometry, finite-element method electrostatic field simulations were conducted to evaluate the effect of geometric parameters on the electrostatic field strength and distribution. The distribution of electrostatic field of the TVS with multirod system (MTVS) is calculated by the finite method. The simulation results show that the geometric enhancement factor (GEF) is decreased with the increase of the fillet radius of the edge of the rod. In case of the fillet radius for the side face of rod 3 mm and the fillet radius of the top face of the rod is 5 mm, the GEF is decrease to a minimum value of 3. The breakdown voltage of MTVS was measured by the high-voltage direct current generator after switch currents with amplitude of 63 kA and width of 13 ms with the interval time of 10–15 min. The influences of electrode materials and operation times on the breakdown voltage and trigger characteristics are also studied. The experimental results show that the breakdown voltage of the optimized MTVS is higher than that of the non-optimized MTVS. The breakdown voltage of CuCr30 is higher than that of oxygen-free copper. In addition to, the trigger characteristics of MTVS are influenced mainly by the electrode materials, the fillet radius of electrode has a little effect on the triggering characteristics of MTVS.
机译:触发式真空开关(TVS)的击穿和触发特性是非常重要的功能,它们会影响TVS的操作可靠性。它们都主要取决于电极材料,电极形状,间隙距离和表面状况。为了优化电极的几何形状,进行了有限元方法静电场仿真,以评估几何参数对静电场强度和分布的影响。采用有限元法计算了多棒系统TVS的静电场分布。仿真结果表明,随着杆边缘圆角半径的增大,几何增强因子(GEF)减小。如果杆侧面的圆角半径为3 mm,杆顶表面的圆角半径为5 mm,则GEF减小至最小值3。MTVS的击穿电压由高-直流电压发生器,其开关电流幅度为63 kA,宽度为13 ms,间隔时间为10-15分钟。还研究了电极材料和操作时间对击穿电压和触发特性的影响。实验结果表明,优化后的MTVS的击穿电压高于未优化后的MTVS。 CuCr30的击穿电压高于无氧铜的击穿电压。此外,MTVS的触发特性主要受电极材料的影响,电极的圆角半径对MTVS的触发特性影响很小。

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