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Research on influence of the magnetic arc blow in multi-break vacuum circuit breakers

机译:多断路器真空断路器中磁弧冲击的影响研究

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The paper aims to investigate the influence of the interactive magnetic field in multi-break vacuum circuit breakers (VCBs) on the arc plasma and the post-arc characteristic. The magnetic field of multi-break VCBs is asymmetric and off-center because of the interactive magnetic field, which can be called bias magnetic field (BMF). The BMF distribution of double-break VCBs is gained by electromagnetic analysis. The test circuit of the magnetic arc blow in multi-break VCBs is established by simplifying as the interaction between the vacuum arc and the BMF. The influence of the magnetic arc blow on the arc plasma is studied by the high-speed CMOS while the relationship between the post-arc dynamic dielectric recovery and the magnetic arc blow is obtained by the measurement of the post-arc current. The results indicate that the influence of the magnetic arc blow on the vacuum arc and post-arc dynamic dielectric recovery with TMF contacts is larger than that of AMF contacts. The vacuum arc with TMF contacts bends to the opposite direction of Ampere force when the BMF is below 100mT and the post-arc charge obviously varies from 9μC to 50μC. Therefore, the paper can provide the base of construct and configuration to avoid the influence of the magnetic arc blow.
机译:本文旨在研究多断路器真空断路器(VCB)中的交互磁场对电弧等离子体和电弧后特性的影响。由于交互磁场,多断裂VCB的磁场是不对称且偏心的,可以将其称为偏置磁场(BMF)。通过电磁分析获得了双断裂VCB的BMF分布。通过简化为真空电弧和BMF之间的相互作用,建立了多断路器VCB中的电弧放电测试电路。通过高速CMOS研究了电弧电弧对电弧等离子体的影响,同时通过测量电弧后电流获得了电弧后动态电介质恢复与电弧电弧之间的关系。结果表明,TMF触点的电弧吹对真空电弧和电弧后动态介电恢复的影响大于AMF触点。当BMF低于100mT时,带有TMF触点的真空电弧会向安培力的相反方向弯曲,并且电弧后电荷明显在9μC至50μC之间变化。因此,本文可以提供构造和构造的基础,从而避免电磁吹弧的影响。

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