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Behavior of initial columnar arc in vacuum interrupters with axial magnetic field contacts

机译:带有轴向磁场触点的真空灭弧室的初始柱状电弧行为

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To improve current interruption capability of vacuum interrupters with axial magnetic field (AMF) contacts, it is necessary to make an initial columnar arc diffused on a larger area of the contacts as rapidly as possible after the opening of the contacts, and also to suppress local temperature rise at the arc initiation points on the contacts. We observed behavior of the initial columnar arc between AMF contacts set in a vacuum chamber using a high-speed video camera, and experimentally investigated the relation between the arc initiation point and the behavior of the initial columnar arc, employing various contacts with different contact separation points. We also found that the direction of motion of the initial columnar arc and its velocity were dependent on the arc initiation point on the contacts. It was shown that the motion of the initial columnar arc was dominated by the Lorentz force due to the arc current and the radial magnetic field (RMF) parallel to the contact surface.
机译:为了提高带有轴向磁场(AMF)触点的真空灭弧室的电流阻断能力,必须在触点打开后尽快使初始柱状电弧在触点的较大区域上扩散,并抑制局部触头上电弧起弧点的温度升高。我们使用高速摄像机观察了设置在真空室中的AMF触点之间的初始柱状电弧的行为,并通过使用具有不同触点间距的各种触点,实验研究了电弧起弧点与初始柱状电弧的行为之间的关系。点。我们还发现,初始柱状弧的运动方向及其速度取决于触点上的弧起始点。结果表明,由于电弧电流和平行于接触面的径向磁场(RMF),初始柱状电弧的运动受洛伦兹力的支配。

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