首页> 外文会议>7th International Conference on Electromagnetic Processing of Materials >Study on transport of oxygen through CaO-MgO-Al2O3 slag from Molten Ultra-low Carbon Steel by Chronoamperometry
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Study on transport of oxygen through CaO-MgO-Al2O3 slag from Molten Ultra-low Carbon Steel by Chronoamperometry

机译:计时安培法研究熔融超低碳钢中氧通过CaO-MgO-Al2O3渣的传输

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摘要

The deoxidization reaction at the interface between slag and metal is one of the most important reactions in the iron and steel making.The interface reaction and transport characteristics of Molten Ultra-low Carbon Steel with CaO-MgO-Al2O3 slag system under different over potential conditions of the system was studied.The electrochemical reduction mechanism at the interface between the molten slag and molten steel was investigated.The results showed that Chronoamperometry method is very useful for the study of interfacial reaction in the slag-metal system.The current of interfacial reaction decreases approximately linearly with t-1/2,and the diffusion coefficient of oxygen in molten slag calculated by Cottrell equation increased dramatically with over potential.In the open circuit potential,the diffusion coefficient of oxygen in the slag is about 10-8m2/s.
机译:渣与金属界面处的脱氧反应是钢铁生产中最重要的反应之一。不同电位条件下,熔融超低碳钢与CaO-MgO-Al2O3渣系统的界面反应和输运特性研究了熔渣与钢水界面的电化学还原机理,结果表明计时安培法对研究熔渣-金属体系中的界面反应非常有用。随t-1 / 2线性减小,并且通过Cottrell方程计算出的熔渣中氧的扩散系数随过电位而急剧增加。在开路电位下,熔渣中氧的扩散系数约为10-8m2 / s 。

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