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首页> 外文期刊>IEEE Transactions on Plasma Science >Optical Investigations of Dynamic Vacuum Arc Mode Changes With Different Axial Magnetic Field Contacts
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Optical Investigations of Dynamic Vacuum Arc Mode Changes With Different Axial Magnetic Field Contacts

机译:不同轴向磁场接触的动态真空电弧模式变化的光学研究

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By using a high-speed charge-coupled device (CCD) video technique, three different axial magnetic field contact systems (i.e., unipolar, bipolar, and quadrupolar systems) are investigated at an arc current of 10 kA. Video recordings were compared to computer simulations of light emission emitted at the side-on of diffuse and diffuse columnar arcs. The computer images reproduced typical trends, such as stronger light intensities in front of the cathode caused by higher-plasma densities in this region. A low-current dc vacuum arc was initiated by contact separation before the high current was injected at a fixed contact distance of 10 mm. Videos were taken from two directions perpendicular to each other to localize the vacuum arc properly. From these investigations, the transient development of vacuum arc under different axial magnetic field profiles can be visualized. The results were interpreted with respect to the behavior of the vacuum arc in the second half cycle after an eventual reignition.
机译:通过使用高速电荷耦合器件(CCD)视频技术,在10 kA的电弧电流下研究了三种不同的轴向磁场接触系统(即单极,双极和四极系统)。将视频记录与计算机模拟相比较,该计算机模拟是在扩散和扩散圆柱弧的侧面发射的光。计算机图像再现了典型的趋势,例如该区域中较高的等离子体密度导致阴极前的光强度更高。在以10 mm的固定接触距离注入大电流之前,通过接触分离引发小电流dc真空电弧。从彼此垂直的两个方向拍摄视频,以正确定位真空弧。通过这些研究,可以看到真空电弧在不同轴向磁场分布下的瞬态发展。根据最终点火后第二个半周期中真空电弧的行为来解释结果。

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