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Dynamics of Arc Phenomena at Closure of Electrical Contacts in Vacuum Circuit Breakers

机译:真空断路器中电触头闭合时电弧现象的动力学

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Dynamic phenomena accompanying electrical contact closure in vacuum circuit breakers are considered as consecutive stages, including breakdown, touch, compression, restitution, bridging, and arcing at bouncing. The hybrid mathematical model is elaborated to describe dynamics of the arc and forces acting in the contact gap. The model uses experimental oscillograms of current, voltage and contact displacement and nonlinear equations for arc, anode and cathode temperature fields, and contact motion. Experiments are carried out using a standard vacuum circuit breaker with laser sensors for the measurement of contact gap. The special difference path method is applied to take into account oscillations of a fixed contact. The axisymmetric Stefan problem with two free boundaries corresponding to melting and evaporation interfaces is solved to find dynamics of contact evaporation. It is shown theoretically and confirmed experimentally that in the range of high currents, the force of metallic vapor pressure at arcing in vacuum is comparable with magnetic repulsion force and should be taken into consideration. Two mechanisms of vapor pressure formation and evolution are discussed, which occur due to explosion of micro-asperities at contact touch or due to arcing after bridge rupture at contact bouncing.
机译:真空断路器中电触点闭合所伴随的动态现象被认为是连续的阶段,包括击穿,触碰,压缩,恢复,桥接和弹跳时的电弧。阐述了混合数学模型,以描述电弧的动力学和作用在接触间隙中的力。该模型使用电流,电压和接触位移的实验波形图以及电弧,阳极和阴极温度场以及接触运动的非线性方程式。使用带有激光传感器的标准真空断路器进行实验,以测量接触间隙。应用特殊差异路径法来考虑固定触点的振荡。解决了具有对应于熔化和蒸发界面的两个自由边界的轴对称Stefan问题,以找到接触蒸发的动力学。从理论上证明并通过实验证实,在大电流范围内,真空中电弧放电时金属蒸气压的作用力与磁斥力相当,应予以考虑。讨论了蒸气压形成和逸出的两种机理,它们是由于接触时微细孔的爆炸或由于接触弹跳时桥断裂后产生电弧而产生的。

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