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Mathematical Modelling of Change in Composition of Mold Flux in Continuous Casting of Steels

机译:钢连铸结晶器熔剂成分变化的数学模型

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A mathematical model of the reaction between mold flux and molten steel has been newly developed to estimate the change in composition of the mold flux during the continuous casting of steels and to design an optimum flux composition. The model takes into account mass transfer in the molten steel and molten flux and equilibrium reaction at the interface. On the reactidn, the activities of the practical mold flux components like CaO, SiO_2, Al_2O_3, CaF_2, Na_2O are estimated by a statistical thermodynamic model of slag, called cell model. Comparison of calculated composition change with data obtained in the practical casting experiment of high titanium steel showed that the mathematical model is useful for the estimation of the reaction between the mold flux and the molten steel and for the design of the mold flux composition to minimize change in composition due to that reaction.
机译:铸模助熔剂与钢水之间反应的数学模型已经得到了新的发展,以估计在连续铸造过程中铸模助熔剂的成分变化并设计出最佳的焊剂成分。该模型考虑了钢水中的传质和熔融通量以及界面处的平衡反应。在反应堆上,通过炉渣的统计热力学模型(称为胞室模型)估算实际的助熔剂组分(如CaO,SiO_2,Al_2O_3,CaF_2,Na_2O)的活性。将计算出的成分变化与在高钛钢的实际铸造实验中获得的数据进行比较表明,该数学模型可用于估算保护渣和熔融钢之间的反应,并有助于设计保护渣的组成以最大程度地减少变化由于该反应而在组成上

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