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Vacuum arcing behavior between transverse magnetic field contacts subjected to variable axial magnetic field

机译:轴向磁场变化时横向磁场触头之间的真空电弧放电行为

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The objective of this work is to reveal the effects of an axial magnetic field (AMF) on the vacuum arc characteristics between transverse magnetic field (TMF) contacts. These vacuum arc characteristics include the vacuum arcing behavior and the arc voltage waveform. In the experiments, an external AMF was applied to a pair of TMF contacts. The external AMF flux density B-AMF can be adjusted from 0 to 110 mT. The arc current in the tests varied over a range from 0 to 20 kA rms at 45 Hz. The contact material was CuCr25 (25% Cr). A high-speed charge-coupled device video camera was used to record the vacuum arc evolution. The experimental results show that the application of the AMF effectively reduces the TMF arc voltage noise component and reduces the formation of liquid metal drops between the contacts. The diffuse arc duration increases linearly with increasing AMF flux density, but it also decreases linearly with increasing arc current under application of the external AMF. The results also indicate that the diffuse arc duration before the current zero is usually more than 1 ms under the condition that the value of the AMF per kiloampere is more than 2.0mT/kA. Finally, under application of the AMF, the arc column of the TMF contacts may constrict and remain in the center region without transverse rotation. Therefore, the combined TMF-AMF contacts should be designed such that they guarantee that the AMF is not so strong as to oppose transverse rotation of the arc column. Published by AIP Publishing.
机译:这项工作的目的是揭示轴向磁场(AMF)对横向磁场(TMF)触点之间的真空电弧特性的影响。这些真空电弧特性包括真空电弧行为和电弧电压波形。在实验中,将外部AMF应用于一对TMF触点。外部AMF通量密度B-AMF可以在0到110 mT之间调节。测试中的电弧电流在45 Hz的范围从0到20 kA rms不等。接触材料是CuCr25(25%Cr)。高速电荷耦合器件摄像机用于记录真空电弧的演变。实验结果表明,AMF的应用有效地降低了TMF电弧电压噪声分量,并减少了触点之间液态金属滴的形成。扩散电弧持续时间随着AMF磁通密度的增加而线性增加,但在施加外部AMF时,随着电弧电流的增加也逐渐减少。结果还表明,在每千安培AMF值大于2.0mT / kA的条件下,电流零之前的扩散电弧持续时间通常大于1 ms。最终,在使用AMF的情况下,TMF触头的电弧柱可能会收缩并保持在中心区域,而不会发生横向旋转。因此,组合式TMF-AMF触头的设计应确保它们确保AMF的强度不至于抵抗弧柱的横向旋转。由AIP Publishing发布。

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