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Computational Simulation of Arc Melting Process with Complex Interactions

机译:具有复杂相互作用的电弧熔化过程的计算模拟

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摘要

The real-time computational simulation of arc melting process with considering complex interactions and solid-liquid mushy zone in molten anode has been successfully conducted to provide the fundamental data for highly economical performance of arc melting process. The configuration of molten anode predicted by realistic numerical model shows the quantitative agreement with the experimental data. The effects of sulfur content concentration in molten metal, arc current and cathode vertex angle on the welding structure is discussed in detail. Finally, the heat exchange efficiency and molten cross-sectional area are evaluated under different arc currents and cathode vertex angles for optimum welding process with high efficiency.
机译:已经成功进行了考虑复杂相互作用和熔融阳极中固液糊状区的电弧熔化过程的实时计算仿真,从而为电弧熔化过程的高经济性提供了基础数据。现实数值模型预测的熔融阳极的构型与实验数据定量吻合。详细讨论了熔融金属中硫含量浓度,电弧电流和阴极顶角对焊接结构的影响。最后,在不同的电弧电流和阴极顶角下评估热交换效率和熔融横截面积,以实现最佳的高效焊接工艺。

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