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减少方坯中心偏析的冶金手段 被引量:11
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作者 陈超 阎朝红 康复 《宝钢技术》 CAS 2001年第4期53-57,27,共6页
讨论了连铸方坯中心偏析的成因 ,介绍了电磁搅拌、机械应力压下和二冷强冷模式等减少中心偏析的冶金技术 ,分析了铸坯断面大小对中心偏析的影响 。
关键词 方坯连铸 中心偏析 电磁搅拌 软压下 热应力压下
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Comparison and integration of final electromagnetic stirring and thermal soft reduction on continuous casting billet 被引量:8
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作者 Yan-shen Han Wei Yan +3 位作者 Jiang-shan Zhang Jun Chen Wei-qing Chen Qing Liu 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2021年第2期160-167,共8页
Final electromagnetic stirring(F-EMS)and thermal soft reduction(TSR)are techniques that improve the inner quality of continuous casting billets,but they have rarely been applied simultaneously.The application effects ... Final electromagnetic stirring(F-EMS)and thermal soft reduction(TSR)are techniques that improve the inner quality of continuous casting billets,but they have rarely been applied simultaneously.The application effects of F-EMS and TSR were compared,and a process integrating F-EMS and TSR was adopted for a billet continuous caster.A heat transfer model was established to calculate the thermal behavior of 82A tire cord steel billet.The locations of F-EMS and TSR were determined,followed by conducting a series of plant trials,involving F-EMS alone,TSR alone,and the integrated process of F-EMS and TSR.The results showed that F-EMS or TSR could effectively improve the inner quality of the billet under their respective suitable working conditions.Moreover,F-EMS was found to be more helpful in terms of improving central segregation,while TSR tended to improve V-segregation,central porosity,and pipe.The integration of F-EMS and TSR allowed the advantages of each technique to be utilized,thereby better improving the inner quality.Among all the working conditions,82A steel billet showed optimum inner quality when the current of F-EMS was 240 A and the cooling intensity of TSR was 2.2 m^(3) h^(−1).These findings demonstrate that the integration of F-EMS and TSR is promising for application on continuous casting billets. 展开更多
关键词 Billet continuous casting Final electromagnetic stirring thermal soft reduction Central segregation Inner quality
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板坯连铸轻压下压下力的解析计算法 被引量:1
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作者 杨昌霖 《炼钢》 CAS 北大核心 2021年第2期30-36,共7页
针对板坯连铸轻压下过程,对铸坯单元体建立力学平衡方程,结合温度的计算结果,分析了钢种和压下位置对铸坯受力和变形量的影响。结果表明,轻压下过程中铸坯边部受到的应力明显高于宽面中心受到的应力,表层受到的应力最大超过100 MPa。随... 针对板坯连铸轻压下过程,对铸坯单元体建立力学平衡方程,结合温度的计算结果,分析了钢种和压下位置对铸坯受力和变形量的影响。结果表明,轻压下过程中铸坯边部受到的应力明显高于宽面中心受到的应力,表层受到的应力最大超过100 MPa。随着压下的进行,铸坯表层受到的应力逐渐减小,心部受到的应力逐渐增加。在总压下量一定的情况下,钢种和压下位置对铸坯心部的位移量影响不明显,但对铸坯受到的压下力影响较大,在中心固相率相同的位置,不锈钢受到的单辊压下力大于普通碳钢,而且越靠近凝固末端,受到的压下力越大。 展开更多
关键词 连铸 轻压下 热力耦合模型 压下力
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