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配用CuCr合金电极的真空介质开关电弧阳极热过程分析

Analysis of Anode Thermal Process of Vacuum Switch Arc with CuCr Alloy Electrode

  • 摘要: 真空介质开关电弧的主要成分源于故障电流开断过程中触头电极在极间产生的金属蒸气,且真空电弧的微观动力学行为直接影响开关的开断能力。文章通过建立真空介质电弧双温磁流体动力学模型,研究配用不同配比CuCr合金触头电极材料的真空介质开关在故障电流开断下阳极热过程的变化情况,得到阳极触头表面温度和熔池范围沿径向和轴向的分布。仿真结果表明,开断故障电流的增大及电极合金材料中Cu含量的增大均会导致输入阳极的能流密度增大。在200 A电弧电流作用下,阳极表面温度未达到CuCr合金的熔点,未发生熔化;而在6 kA电弧电流作用下,阳极温度先后达到Cu和Cr的熔点,电极熔化程度随合金中Cr含量的增大而减弱。

     

    Abstract: The main component of the vacuum switch arc is the metal vapor generated between the electrodes during the fault current breaking process, and the micro dynamic behavior of the vacuum arc directly affects the breaking ability of the switch. In this paper, the two-temperature magneto hydro dynamic(MHD) model of vacuum arc is established to study the anode thermal process of vacuum switch equipped with CuCr alloy contact electrode of different proportions under fault current interruption, and the distribution of anode surface temperature and melting pool range along the radial and axial direction is obtained. The simulation results indicate that the increase in the breaking fault current and Cu content in the electrode alloy will lead to the increase of energy flow density for the input anode. Under 200 A arc current, the surface temperature of the anode did not reach the melting point of CuCr alloy and did not melt; Under 6 kA arc current, the anode temperature reached the melting points of Cu and Cr successively, and the melting degree of the electrode weakened with the increase of Cr content in the alloy.

     

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