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Development and Application of Final Permanent Magnet Stirring during Continuous Casting of High Carbon Rectangular Billet

机译:高碳方坯连铸最终永磁搅拌的开发与应用

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Production of continuously cast high carbon steel that very low center macrosegregation is an important object in meeting high quality requirements. Apart from the widely known methods of reducing macrosegregation during continuous casting, final permanent magnet stirring (FPMS) provides an alternative for producing steel with low macrosegregation. The permanent magnet stirring featuring with low power dissipation and high intensity of magnetic field, which is suitable for final stirring conditions. In the present research, a three-dimensional unsteady coupled mathematical model based on the electromagnetic field analysis software Opera-3D and the flow field software Fluent has been developed to analysis the magnetic flux density, the electromagnetic force and the molten steel flow under different stirring frequencies of FPMS. The calculated results in the residual liquid pool show that the center magnetic flux density is nearly invariable equals to 1335 Gs, the maximum electromagnetic force increases from 12 kN/m~(3) to 59 kN/m~(3) and the maximum tangential velocity in the width direction various form 0.09 m/s to 0.45 m/s as the stirring frequency increases from 1 Hz to 5 Hz. The industrial trials reveal that the FPMS with a stirring frequency of 5 Hz can effectively decrease the centre carbon segregation and improve the final product quality of high carbon steel.
机译:具有非常低的中心宏观偏析的连续铸造高碳钢的生产是满足高质量要求的重要对象。除了减少连铸过程中宏观偏析的广为人知的方法外,最终永磁搅拌(FPMS)为生产低宏观偏析的钢提供了一种选择。永磁搅拌具有低功耗和高磁场强度的特点,适用于最终搅拌条件。在本研究中,基于电磁场分析软件Opera-3D和流场软件Fluent的三维非定常耦合数学模型已经开发出来,以分析不同搅拌下的磁通密度,电磁力和钢水流动FPMS的频率。残余液池中的计算结果表明,中心磁通密度几乎恒定不变,等于1335 Gs,最大电磁力从12 kN / m〜(3)增加到59 kN / m〜(3),最大切向随着搅拌频率从1Hz增加到5Hz,宽度方向上的最大速度从0.09m / s变化到0.45m / s。工业试验表明,搅拌频率为5 Hz的FPMS可以有效减少中心碳偏析并改善高碳钢的最终产品质量。

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