简介概要

Effect of slag on oxide inclusions in carburized bearing steel during industrial electroslag remelting

来源期刊:International Journal of Minerals Metallurgy and Materials2019年第3期

论文作者:Shi-jian Li Guo-guang Cheng Zhi-qi Miao Lie Chen Xin-yan Jiang

文章页码:291 - 300

摘    要:Industrial experiments with three types of slags were performed to investigate the effect of slag on oxide inclusions during electroslag remelting(ESR) process. G20CrNi2Mo bearing steel was used as the consumable electrode and remelted using a 2400-kg industrial furnace. The results showed that most inclusions in the electrode were low-melting-point CaO-MgO-Al2O3. After ESR, all the inclusions in ingots were located outside the liquid region. When the slag consisted of 65.70 wt% CaF2, 28.58 wt% Al2O3, and 4.42 wt% CaO was used, pure Al2O3 were the dominant inclusions in ingot, some of which presented a clear trend of agglomeration. When the ingot was remelted by a multi-component slag with 16.83 wt% CaO, a certain amount of sphere CaAl4O7 inclusions larger than 5 μm were generated in ingot. The slag with 8.18 wt% CaO exhibited greater capacity to control the inclusion characteristics. Thermodynamic calculations indicated that the total Ca and Mg in ingots were attributed from the relics in electrode and strongly influenced by the slag composition. The formation of ingot inclusions was calculated by FactSageTM 7.0, and the results were basically in accordance with the observed inclusions, indicating that a quasi-thermodynamic equilibrium could be obtained in the metal pool.

详情信息展示

Effect of slag on oxide inclusions in carburized bearing steel during industrial electroslag remelting

Shi-jian Li1,Guo-guang Cheng1,Zhi-qi Miao1,Lie Chen2,Xin-yan Jiang2

1. State Key Laboratory of Advanced Metallurgy, University of Science and Technology Beijing2. Xining Special Steel Group, Co., Ltd.

摘 要:Industrial experiments with three types of slags were performed to investigate the effect of slag on oxide inclusions during electroslag remelting(ESR) process. G20CrNi2Mo bearing steel was used as the consumable electrode and remelted using a 2400-kg industrial furnace. The results showed that most inclusions in the electrode were low-melting-point CaO-MgO-Al2O3. After ESR, all the inclusions in ingots were located outside the liquid region. When the slag consisted of 65.70 wt% CaF2, 28.58 wt% Al2O3, and 4.42 wt% CaO was used, pure Al2O3 were the dominant inclusions in ingot, some of which presented a clear trend of agglomeration. When the ingot was remelted by a multi-component slag with 16.83 wt% CaO, a certain amount of sphere CaAl4O7 inclusions larger than 5 μm were generated in ingot. The slag with 8.18 wt% CaO exhibited greater capacity to control the inclusion characteristics. Thermodynamic calculations indicated that the total Ca and Mg in ingots were attributed from the relics in electrode and strongly influenced by the slag composition. The formation of ingot inclusions was calculated by FactSageTM 7.0, and the results were basically in accordance with the observed inclusions, indicating that a quasi-thermodynamic equilibrium could be obtained in the metal pool.

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