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首页> 外文期刊>Ironmaking & Steelmaking >Reduction in macrosegregation on 380 mm x 490 mm bloom caster equipped combination M plus F-EMS by optimising casting speed
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Reduction in macrosegregation on 380 mm x 490 mm bloom caster equipped combination M plus F-EMS by optimising casting speed

机译:通过优化浇铸速度,减少配备M + F-EMS的380 mm x 490 mm大方坯连铸机的宏观偏析

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摘要

Based on the plant trials and the developed coupled mathematical model of electromagnetism, turbulent fluid flow, heat and solute transport, the effect of F-EMS position on the degree of bloom macrosegregation cast with combination stirring (M+F-EMS) has been evaluated and compared for medium carbon steel, 40Cr, and high carbon steel, GCr15. The optimum F-EMS position is mainly related to the solidification characteristic of the molten steel in the liquid pool that depends on the average natural convection velocity and solidification time during the final solidification stage. For a given steel grade and a given F-EMS position, the trend of centre porosity and shrinkage cavity variations is to first decrease and then increase with increasing casting speed. The optimal solidification ratio at the F-EMS centre is increased as the carbon content increases due to the increasing solidification time, where the optimal solidification ratios for GCr15 and 40Cr are 72 and 68% respectively.
机译:基于工厂试验和已开发的电磁,湍流,热和溶质运移的耦合数学模型,评估了F-EMS位置对组合搅拌铸造的大块坯大偏析度(M + F-EMS)的影响并与中碳钢40Cr和高碳钢GCr15进行了比较。最佳F-EMS位置主要与液池中钢水的凝固特性有关,该特性取决于最终凝固阶段的平均自然对流速度和凝固时间。对于给定的钢种和给定的F-EMS位置,中心孔隙率和收缩腔变化的趋势是随着铸造速度的提高先减小然后增大。随着碳含量的增加,由于凝固时间的增加,F-EMS中心的最佳凝固率也随之增加,其中GCr15和40Cr的最佳凝固率分别为72%和68%。

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