半钢炼钢转炉底吹工艺优化研究  被引量:4

Optimization on bottom blowing process in converter steelmaking with semi-steel

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作  者:陈均[1] CHEN Jun(State Key Laboratory of Vanadium and Titanium Resources Comprehensive Utilization,Pangang Group Research Institute Co.,Ltd.,Panzhihua 617000,China)

机构地区:[1]攀钢集团研究院有限公司,钒钛资源综合利用国家重点实验室,四川攀枝花617000

出  处:《炼钢》2020年第5期21-26,36,共7页Steelmaking

摘  要:针对西昌钢钒半钢冶炼钢水及炉渣氧化性高带来的透气砖侵蚀快、底吹效果不佳的问题,通过对底吹供气元件优选、优化透气砖布置方案以及热更换方案,提高了全炉役底吹搅拌效果。工业应用表明,底吹工艺参数优化后,透气砖热更换时间平均缩短95 min,炼钢转炉全炉役钢-渣间LP由78.0提高到92.5,终渣TFe质量分数由19.7%降低到18.6%,终点钢水碳氧积由0.0028降低到0.0023,在提高转炉生产效率的同时,降低了冶炼成本。To solve the problem of low bottom blowing effect and fast erosion of bottom tuyeres caused by high oxidability of slag during semi-steel steelmaking in Pangang Group Xichang Vanadium&Steel Co.,Ltd.,measures such as application of new bottom blowing tuyeres,optimization of bottom tuyeres arrangement and optimization of thermal-replacement scheme were adopted.Bottom blowing effect during the converter campaign was improved.Industrial application indicated that after the optimization of bottom blowing process,mean thermal-replacement time was shorten by 95 min,average phosphor distribution ratio(LP)between steel-slag during the whole converter campaign was improved from 78.0 to 92.5,mean TFe mass fraction in end-point slag was reduced form 19.7%to 18.6%,and average carbon-oxygen concentration product at end-point was reduced from 0.0028 to 0.0023.Production efficiency of converter steelmaking was improved and cost of BOF blowing was reduced as well.

关 键 词:半钢冶炼 数值模拟 底吹 碳氧积 

分 类 号:TF729.3[冶金工程—钢铁冶金]

 

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