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Effects of Eccentric Mold Electromagnetic Stirring on Continuous Casting Large Steel Round Blooms

机译:偏心模具电磁搅拌在连续铸造大型钢圆形盛开的影响

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摘要

In this paper, a coupled 3D mathematical model is established to study the electromagnetic, flow and temperature fields of round blooms with different degrees of eccentric mold electromagnetic stirring (M-EMS). The results show that under the action of severely eccentric M-EMS, the magnetic flux density and time-averaged electromagnetic force near the external arc side of a Phi 380mm round bloom are greater than those near the inner arc side; the inertial impingement jet from the nozzle is deflected toward the external arc sides, and the temperature of molten steel on the external arc side is higher. As the degree of M-EMS eccentricity decreases, the differences in the electromagnetic, flow and temperature fields between the inner and external arc sides of the round blooms gradually decrease. The molten steel temperature on the inner arc side increases significantly after moving the nozzle position to the inner arc side of the Phi 380mm round bloom, so this method is not suitable to eliminate the effects of M-EMS eccentricity on Phi 380mm round blooms.
机译:在本文中,建立了一种耦合的3D数学模型来研究具有不同程度的偏心模具电磁搅拌(M-EMS)的圆形绽放的电磁,流量和温度场。结果表明,在严重偏心M-EMS的作用下,PHI 380mm圆形叶子的外部弧侧附近的磁通密度和时间平均电磁力大于内弧侧附近的电磁焊缝;来自喷嘴的惯性冲击射流朝向外部电弧侧偏转,并且外部弧侧的钢水温度更高。随着M-EMS偏心度的程度降低,圆形绽放的内部和外部电弧侧之间的电磁,流动和温度场之间的差异逐渐减小。在将喷嘴位置移动到Phi 380mm圆形绽放的内弧侧,内弧侧上的钢水温度显着增加,因此该方法不适合消除M-EMS偏心的效果在PHI 380mm圆形绽放上。

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