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Experimental Study of Anode Activities in High Current Vacuum Arc Subjected to Axial Magnetic Fields Under Different Conditions

机译:不同条件下轴向磁场对大电流真空电弧阳极活性的实验研究

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In this paper, high current vacuum arc (HCVA) characteristics and anode melting pool (AMP) flow phenomena under different conditions are researched and analyzed. Particularly, rotation phenomena of AMP are observed and analyzed. First, the influence of different arc currents on arc column and anode activities is researched. Experimental results show that the rotation phenomena of AMP become more significant when arc currents are very high. Then, the influence of electrode configurations on the AMP rotation is investigated. For larger $h/D$ value electrode, vacuum arc can become more unstable and uncontrollable, the rotation of anode melting region cannot be found; for smaller $h/D$, the vacuum arc is more stable and the vacuum arc is controlled effectively by the axial magnetic field (AMF), also significant rotation of AMP has been found. For a smaller anode electrode, anode melting and rotation of AMP is more serious, which is due to the same energy inputs smaller electrode. Finally, the influence of pure Cu and CuCr30 electrode on anode melting and flow is compared and analyzed. Experimental results show that AMP rotation with pure Cu material is more significant than that with CuCr30 material for the same arc current interruption. Liquid macroparticles' diameters with pure Cu electrode are significantly larger than that with CuCr30 materials.
机译:本文研究和分析了不同条件下的大电流真空电弧(HCVA)特性和阳极熔池(AMP)流动现象。特别地,观察并分析了AMP的旋转现象。首先,研究了不同电弧电流对电弧塔和阳极活性的影响。实验结果表明,当电弧电流很高时,AMP的旋转现象变得更加明显。然后,研究了电极配置对AMP旋转的影响。对于较大的$ h / D $值电极,真空电弧会变得更加不稳定和不可控制,无法找到阳极熔化区的旋转;反之,对于较小的$ h / D $,真空电弧更稳定,真空电弧由轴向磁场(AMF)有效控制,而且AMP的旋转也很明显。对于较小的阳极电极,AMP的阳极熔化和旋转更为严重,这是由于相同的能量输入导致较小的电极。最后,比较并分析了纯Cu和CuCr30电极对阳极熔化和流动的影响。实验结果表明,在相同的电弧电流中断条件下,纯Cu材料的AMP旋转比CuCr30材料的AMP旋转更重要。纯Cu电极的液体微粒直径明显大于CuCr30材料的直径。

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