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MATHEMATICAL MODEL OF SOLIDDJTCATION DURING ELECTROSLAG CASTING OF PILGER ROLL

机译:夹梁辊电渣铸造期间SolidDjtcation的数学模型

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摘要

A mathematical model for describing the interaction of multiple physical fields in slag bath and solidification process in ingot during pilger roll casting with variable cross-section which is produced by the electroslag casting (ESC) process was developed. The commercial software ANSYS was applied to calculate the electromagnetic field, magnetic driven fluid flow, buoyancy-driven flow and heat transfer. The transportation phenomenon in slag bath and solidification characteristic of ingots are analyzed for variable cross-section with variable input power under the conditions of 9Cr3NiMo steel and 70%CaF_2 -30%Al_2O_3 slag system. The calculated results show that characteristic of current density distribution, velocity patterns and temperature profiles in the slag bath and metal pool profiles in ingot have distinct difference at variable cross-sections due to difference of input power and cooling condition. The pool shape and the local solidification time (LST) during Pilger roll ESC process are analyzed.
机译:用于描述皮尔格轧辊与由电渣铸造制造的变截面铸造期间在铸块炉渣浴,凝固过程中的多个物理字段的相互作用的数学模型(ESC)过程开发的。商业软件ANSYS被应用于计算电磁场,磁驱动的流体的流动,浮力驱动的流动和热传递。在渣池和锭凝固特性的运输现象被分析9Cr3NiMo钢和70%-30 CaF_2%Al_2O_3的熔渣系统的条件下,可变横截面可变的输入功率。计算结果表明电流密度分布,速度模式和温度分布在锭的渣熔池和金属池型材的特征在于具有以可变的横截面显着差异,由于输入功率和冷却​​条件的差异。池的形状和在皮尔格轧辊ESC过程局部凝固时间(LST)进行了分析。

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