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Arc Duration and Rotational Frequency of Break Arcs Driven by Radial Magnet Field in a DC42 V Resistive Circuit

机译:DC42 V电阻电路中由径向磁场驱动的断弧的电弧持续时间和旋转频率

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摘要

Break arcs are rotated with the radial magnetic field formed by a magnet embedded in the fixed contact. They are generated in a DC42 V resistive circuit. The circuit current when the contacts are closed varies from 5 A to 21 A. The strength of a radial magnetic field for rotating break arcs changes. Arc duration is investigated. Then rotational frequency, arc length and Lorentz force when the periodic rotation of break arcs starts are analyzed to investigate the conditions required to rotate break arcs. The following results are obtained. The arc length L when the rotational motion of the break arc starts is almost constant at a constant magnetic flux density with an increase in circuit current. The arc length L decreases with an increase in the magnetic flux density of the radial magnetic field. The rotational motion of break arcs starts when the arc length L reaches a certain value determined by magnetic flux density. Rotational frequency and Lorentz force increase linearly with an increase in circuit current.
机译:破坏弧随着嵌入固定触点中的磁体形成的径向磁场而旋转。它们在DC42 V电阻电路中生成。触点闭合时的电路电流在5 A至21 A之间变化。用于旋转中断电弧的径向磁场强度会发生变化。研究电弧持续时间。然后,分析了中断电弧的周期性旋转开始时的旋转频率,电弧长度和洛伦兹力,以研究旋转中断电弧所需的条件。得到以下结果。随着电路电流的增加,在中断电弧的旋转运动开始时的电弧长度L在恒定磁通密度下几乎恒定。弧长L随着径向磁场的磁通密度的增加而减小。当电弧长度L达到由磁通密度确定的特定值时,中断电弧的旋转运动开始。旋转频率和洛伦兹力随着电路电流的增加而线性增加。

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