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Characteristics of DC Vacuum Arc in the Transverse Axially Symmetric Magnetic Field

机译:横向轴对称磁场中直流真空电弧的特性

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The characteristics of a dc vacuum arc in an axially symmetric magnetic field under contact opening are experimentally investigated. The magnetic field is formed with the help of the constant magnet placed on the side of the fixed contact The magnet position is chosen so that near the working area of contacts at radius ≈ 12 mm, there is mainly a transverse component of the magnetic field of about 100-150 mT. Studies revealed two burning phases of the switching-off vacuum arc. At the initial phase, the arc burns steadily, voltage slowly increases as contacts are opened, and discharge channels are concentrated inside the intercontact gap. The duration of this phase is several milliseconds. Then, the arc goes into an unstable phase characterized by a significant voltage noise. The unstable phase of arc burning is terminated by switching off the current. During this phase, the arc burns beyond the inter-contact gap. Evolution of these phases is investigated as a function of the arc current in the interval of 50-300 A.
机译:实验研究了接触断开下轴向对称磁场中直流真空电弧的特性。磁场是通过放置在固定触点侧面的恒定磁体来形成的。选择磁体位置时,应使在半径≈12 mm的触点工作区域附近,主要存在磁场的横向分量。大约100-150 mT。研究表明,关闭真空电弧有两个燃烧阶段。在初始阶段,电弧稳定燃烧,随着触点断开,电压缓慢增加,并且放电通道集中在触点间隙内。此阶段的持续时间为几毫秒。然后,电弧进入以明显的电压噪声为特征的不稳定阶段。通过关闭电流来终止电弧燃烧的不稳定阶段。在此阶段,电弧燃烧超过接触间隙。研究这些相在50-300 A间隔内的变化与电弧电流的关系。

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