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Optimization of strand and final electromagnetic stirrers of round bloom casters with multiple sections

机译:多段圆形砂轮脚轮和最终电磁搅拌器的优化

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Strand electromagnetic stirring (S-EMS) and final electromagnetic stirring (F-EMS) are the main methods used to improve the center porosity and segregation for round blooms. To optimize the stirring conditions, nail shooting tests were conducted for three sections of large round blooms with diameters of I center dot 380 mm, I center dot 450 mm, and I center dot 600 mm. Acid leaching and sulfur print tests were used to investigate the shell thickness. Based on the results of nail shooting tests, a mathematical model of solidification was established, and the variation of shell thickness and the central solid fraction were exactly calculated by the model. By taking all sections into account, the locations of S-EMS and F-EMS were optimized for each section. In the results, the macro-segregation of various sections is improved after the locations of S-EMS and F-EMS systems are changed.
机译:绞线电磁搅拌(S-EMS)和最终电磁搅拌(F-EMS)是用于改善圆形绽放的中心孔隙率和偏析的主要方法。 为了优化搅拌条件,对大圆形盛开的三个部分进行指甲拍摄测试,直径为I中心点380 mm,I中心点450mm,我中心点600 mm。 酸浸出和硫印刷试验用于研究壳体厚度。 基于指甲射击试验的结果,建立了凝固的数学模型,并通过模型恰好计算了壳厚度和中心固体级分的变化。 通过考虑所有部分,对每个部分进行了优化了S-EMS和F-EMS的位置。 在结果中,在S-EMS和F-EMS系统的位置改变后,各个部分的宏观偏析得到改善。

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