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Effect of Structure Parameters on Power and Magnetic Field in Electromagnetic Soft-Contact Continuous Casting System

机译:电磁软接触连续铸造系统中结构参数对功率和磁场的影响

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摘要

To design a power source system and mold for electromagnetic soft-contact continuous casting process and to theoretically estimate the heat losses from the charges and the system power, the effect of structure parameters on system power and magnetic flux density distribution was calculated using finite element method. The results show that as for electromagnetic soft-contact continuous casting system with partial-segment type mold, the power consumption is much more than that with a full-segment type mold; about 62% of electric power is dissipated in the mold, and the effective acting range of magnetic field is relatively narrow. Optimizing mold structure is a crucial measure of remarkably reducing mold power consumption and saving electric energy. Increasing slit number, width, and length can remarkably increase the magnetic flux density in the mold and can reduce the electric energy consumption. Among structure parameters, slit number and slit width are relatively more effective to reduce energy consumption. For a round billet electromagnetic continuous casting system with diameter of 178 mm, the reasonable slit number, width, and length are about 24 - 32, 0. 5 - 1. 0 mm, and 160 mm, respectively.
机译:为了设计用于电磁软接触连续铸造过程的电源系统和模具,并从理论上估算炉料和系统功率的热损失,使用有限元方法计算了结构参数对系统功率和磁通密度分布的影响。 。结果表明,对于部分分段模具的电磁软接触连续铸造系统,其功耗要比全分段模具大得多。模具中大约消耗了62%的电能,并且磁场的有效作用范围相对较窄。优化模具结构是显着降低模具功耗和节省电能的关键措施。狭缝数量,宽度和长度的增加可以显着增加模具中的磁通密度,并可以减少电能消耗。在结构参数中,缝隙数量和缝隙宽度相对更有效地降低了能耗。对于直径为178 mm的圆坯电磁连续铸造系统,合理的缝隙数量,宽度和长度分别约为24-32、0.5-1.0 mm和160 mm。

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