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The Influence of TMF and AMF Components on Arc Movement Characteristics in Spiral-Slot Contacts

机译:TMF和AMF组分对螺旋槽触点弧运动特性的影响

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Spiral-slot contacts produce an axial magnetic field (AMF) and the transverse magnetic field (TMF). The magnetic field between TMF contacts will affect the breaking performance of vacuum interrupters. In order to study the effect of TMF and AMF on arcing process and movement characteristics, five contacts with different TMF and AMF, but the same ratio of TMF to AMF, were designed and experimentally investigated in a demountable vacuum chamber. The arc movement phenomenon under different TMF and AMF was obtained. It was found that increasing TMF and AMF could reduce the arc jets to the outer electrode, and arc stagnation was more likely to occur in the later stage of the movement. The influence of TMF and AMF on arc movement characteristics and the utilization of contact surfaces was investigated. With the increase in TMF and AMF, the number of arc rotations increased, and the range of arc movement and the utilization of contact surface increased first and then decreased. Simulations were performed to analyze that the influence mechanism of TMF and AMF on arc movement characteristics was investigated. With the increase in TMF and AMF, the tangential force of the concentrated arc was increased, and the radial force was reduced.
机译:螺旋槽触点产生轴向磁场(AMF)和横向磁场(TMF)。 TMF触点之间的磁场将影响真空中断器的断裂性能。为了研究TMF和AMF对电弧过程和运动特性的影响,在可拆卸的真空室中设计并实验研究了与不同TMF和AMF不同TMF和AMF相同的TMF比率的触点。获得不同TMF和AMF下的电弧运动现象。发现增加TMF和AMF可以将电弧射流减少到外电极,并且在运动的后期阶段更可能发生电弧停滞。研究了TMF和AMF对电弧运动特性的影响和接触表面的利用。随着TMF和AMF的增加,电弧旋转的数量增加,并且弧运动的范围和接触表面的利用先增加然后减少。进行了仿真以分析TMF和AMF对电弧运动特性的影响机制。随着TMF和AMF的增加,浓缩弧的切向力增加,减少了径向力。

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