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Electromagnetic torque detecting for optimization of in-mould electromagnetic stirring in the billet and bloom continuous casting

机译:电磁扭矩检测坯料和绽放连铸中模内电磁搅拌的优化

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摘要

In this paper, an electromagnetic torque device based on the theoretical model was established to determine the optimum frequency accurately and conveniently in billet and bloom continuous casting with in-mould electromagnetic stirring (M-EMS). Magnetic characteristics with M-EMS was investigated by numerical simulation and physical experiment with the application of electromagnetic torque device and gauss meter. In addition, the effects of stirring frequency with M-EMS on macro segregation and equiaxed crystal ratio were compared and analysed for 55SiCr with 150mmx150mm billet caster and BU with 310x360mm bloom caster by a series of plant trials, respectively. The results showed that maximum magnetic flux density and maximum electromagnetic torque occurred with different frequency and same current in M-EMS, and central equiaxed crystal ratio and macro segregation has been significantly improved by optimum frequency with M-EMS.
机译:在本文中,建立了基于理论模型的电磁扭矩装置,以精确方便地确定坯料和盛开连续铸造的最佳频率(M-EMS)。 用数值模拟和物理试验研究了电磁扭矩装置和高斯计的数值模拟和物理实验研究了磁性特性。 此外,比较了搅拌频率与M-EM对宏观偏析和等轴晶系比的影响,分别用150mmx150mm坯料脚轮,分别由一系列植物试验分别用150mmx150mm坯料施法,并用310x360mm盛开施法者分析。 结果表明,通过使用M-EMS的最佳频率显着提高了M-EMS中不同频率和相同电流的最大磁通密度和最大电磁扭矩和中央等式晶比和宏观分离。

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