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Comprehensive model for a slag bath in electroslag remelting process with a current-conductive mould

机译:具有电流导电模具的电子卸载过程中炉渣浴综合模型

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摘要

A mathematical model was developed to describe the interaction of multiple physical fields in a slag bath during electroslag remelting (ESR) process with a current-conductive mould. The distributions of current density, magnetic induction intensity, electromagnetic force, Joule heating, fluid flow and temperature were simulated. The model was verified by temperature measurements during remelting 12CrMoVG steel with a slag of 50wt%-70wt% CaF_2, 20wt%-30wt% CaO, 10wt%-20wt% Al_2O_3, and <10wt% SiO_2 in a 600 mm diameter current-conductive mould. There is a good agreement between the calculated temperature results and the measured data in the slag bath. The calculated results show that the maximum values of current density, electromagnetic force and Joule heating are in the region between the corner electrodes and the conductivity element. The characteristics of current density distribution, magnetic induction intensity, electromagnetic force, Joule heating, velocity patterns and temperature profiles in the slag bath during ESR process with current-conductive mould were analyzed.
机译:开发了数学模型,以描述在用电流导电模具的电渣重熔(ESR)过程中炉渣浴中多个物理场的相互作用。模拟了电流密度,磁感应强度,电磁力,焦耳加热,流体流动和温度的分布。通过在600mm直径电流导电模具中释放50wt%-70wt%caf_2,0wt%-20wt%的CaO,10wt%-20wt%Al_2O_3和<10wt%SiO_2的炉渣期间通过温度测量验证了模型。 。计算的温度结果与炉渣浴中的测量数据之间存在良好的一致性。计算结果表明,电流密度,电磁力和焦耳加热的最大值位于角电极和导电元件之间的区域中。在ESR过程中,分析了电流密度分布,磁感应强度,电磁力,焦耳加热,焦耳加热,电流导电模具的ESR过程中的特性。

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