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首页> 外文期刊>Kawasaki Steel Technical Report >Analysis of Decarburization Reaction in RH Degasser and Its Application to Ultra-low Carbon Steel Production
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Analysis of Decarburization Reaction in RH Degasser and Its Application to Ultra-low Carbon Steel Production

机译:RH脱气机脱碳反应分析及其在超低碳钢生产中的应用

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Theoretical and experimental studies were carried out to quantify the effects of the fluid flow, reaction sites, and geometry of the vacuum vessel on the decarburization characteristics of the RH degasser. The distribution of carbon concentration in the ladle was calculated throughout treatment. The maximum value, found near the bottom of the ladle, was double the minimum value, but this difference was shown to have no effect on the decarburization rate. The ratio of the decarburization rate at the bath surface to the total rate in the RH was greatest in the ultra-low carbon region, while that at the molten steel-refractory interface was the smallest. The maximum decarburization rate and minimum final carbon content between 6 and 12 ppm were attained with the largest vacuum vessel (cross-sectional area, 5.1 m~2; inner diameter of snorkel, 1.0 m). On the basis of theoretical and experimental analyses, a procedure was established for determining the geometry of the RH vacuum vessel required to obtain a specified aimed carbon content.
机译:进行了理论和实验研究,以量化流体流量,反应部位和真空容器的几何形状对RH脱气机的脱碳特性的影响。在整个处理过程中计算出钢包中碳浓度的分布。在钢包底部附近发现的最大值是最小值的两倍,但是该差异对脱碳率没有影响。在超低碳区域,熔池表面的脱碳速率与RH中总速率的比率最大,而在钢水-耐火材料界面处的脱碳速率最小。最大的真空容器(横截面积为5.1 m〜2;通气管的内径为1.0 m)可实现最大脱碳速率和最小最终碳含量在6至12 ppm之间。在理论和实验分析的基础上,建立了确定RH真空容器几何形状的程序,以获得所需的目标碳含量。

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