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Separation of spiral contacts and the motion of vacuum arcs at high AC currents

机译:高交流电流下螺旋触点的分离和真空电弧的运动

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A framing camera is used to photograph the vacuum arc between separating spiral-petal vacuum interrupter contacts. The rupture of the molten bridge between the contacts first leads to a high-pressure, transient arc column. This arc motion can become constricted for several milliseconds before it goes diffuse as the current decreases to zero. The current through the spiral contacts produces a magnetic field perpendicular to the arc column, which forces the arc to move outward and run along the periphery of the petals. Several vacuum arc modes occur during the half-cycle of high current arcing. Movies, gap-current curves, and arc voltage traces are used to study the development of the arc motion and how it is affected by the contact structure. This information is used to generate arc appearance diagrams in which the arc form and motion are correlated to instantaneous values of current and gap for a wide range of peak currents. Appearance diagrams are shown for two ranges of opening delay from current onset.
机译:取景摄像机用于拍摄螺旋形花瓣状真空灭弧室触点之间的真空电弧。触头之间的熔融桥的破裂首先导致高压瞬变电弧塔。随着电流减小到零,这种电弧运动在扩散之前可能会收缩数毫秒。通过螺旋形触点的电流会产生垂直于电弧柱的磁场,该磁场迫使电弧向外移动并沿着花瓣的边缘延伸。在大电流电弧放电的半周期内,会出现几种真空电弧模式。电影,间隙电流曲线和电弧电压迹线用于研究电弧运动的发展以及接触结构如何影响电弧运动。此信息用于生成电弧外观图,其中电弧形式和运动与大范围峰值电流中电流和间隙的瞬时值相关。显示了从电流开始到打开延迟的两个范围的外观图。

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