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Electrode Erosion due to High-Current Electric Arcs in Silicon and Ferrosilicon Furnaces

机译:硅和硅铁熔炉中大电流电弧引起的电极腐蚀

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The role of the electric arc in the consumption of electrodes in submerged arc furnaces has long been discussed. The environment does not make direct measurement possible, so simulation has been used to evaluate the arcs contribution to the erosion. Magnetofluiddynamic (MFD) electric arc simulations and a cathode/anode sub-model developed in order to provide boundary conditions to the arc model have been used for this purpose. In the case of high-current industrial AC arcs, arc currents are typically approx 100 kA, phase voltages approx 100 V and total furnace power approx 10-60 MW. The results show that although enormous amounts of material is evaporated, due to recondensation of vapour, less than half of the total electrode consumption in an industrial furnace can be attributed to the arc. The largest contributor is chemical corrosion. Results from this analysis indicated that there are probably more than one arc present in the crater.
机译:长期以来,人们一直在讨论电弧在埋弧炉中消耗电极中的作用。环境无法进行直接测量,因此已使用模拟来评估电弧对腐蚀的影响。为此目的,已使用磁流体动力学(MFD)电弧模拟和开发的阴极/阳极子模型来为电弧模型提供边界条件。对于大电流工业交流电弧,电弧电流通常约为100 kA,相电压约为100 V,炉膛总功率约为10-60 MW。结果表明,尽管大量材料蒸发了,但由于蒸汽的再凝结,在电弧炉中,不到工业用炉中全部电极消耗的一半。最大的贡献是化学腐蚀。该分析的结果表明,火山口中可能存在一个以上的弧。

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