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作 者:王复越 任毅 田永久 张哲睿 李新玲[3] WANG Fuyue;REN Yi;TIAN Yongjiu;ZHANG Zherui;LI Xinling(State Key Laboratory of Metal Material for Marine Equipment and Application,Anshan 114009,Liaoning,China;Ansteel Iron&Steel Research Institutes,Anshan 114009,Liaoning,China;Bayuquan Branch of Angang Steel Co.,Ltd.,Yingkou 115007,Liaoning,China)
机构地区:[1]海洋装备用金属材料及其应用国家重点实验室,辽宁鞍山114009 [2]鞍钢集团钢铁研究院,辽宁鞍山114009 [3]鞍钢股份有限公司鲅鱼圈分公司,辽宁营口115007
出 处:《鞍钢技术》2023年第6期134-139,共6页Angang Technology
摘 要:针对鞍钢股份有限公司鲅鱼圈钢铁分公司5500产线出现的批量含铌X80级别管线钢钢板心部存在裂纹的问题,利用扫描电子显微镜、能谱仪等检测设备对钢板裂纹缺陷进行了检测分析,发现铸坯(钢板)心部裂纹附近存在未溶铌铁颗粒。根据检测结果,聚焦炼钢环节对实际生产数据进行处理与分析,并建立基于随机森林算法的关键工艺诊断模型。分析结果表明:精炼过程中氩气搅拌流量较低、加铌铁后处理时间较短和加铌铁时温度较低是导致加入的铌铁未完全溶解的根本原因,而铸造速度过快是造成未溶的铌铁颗粒聚集在铸坯(钢板)心部的直接原因。In allusion to the problem that cracks occurred in the cores of the X80 steel plates for pipelines containing niobium manufactured in the 5500 production line of Bayuquan Branch of Angang Steel Co.,Ltd.,these cracks were detected and analyzed by such detecting equipment as scanning electron microscope and energy spectrometer,and it was found that there were undissolved niobium iron particles near the cracks in the cores of the slabs(steel plates).According to the tested results,the actual production data were processed and analyzed by focusing on the steelmaking process,and the key process diagnosis model based on random forest algorithm was established.The analysis results showed that the low argon stirring flow rate,short post-treatment time and low temperature of adding ferroniobium during refining were the funda-mental reasons for the incomplete dissolution of added ferroniobium,while the too rapid casting speed was the direct reason for the accumulation of undissolved ferroniobium particles in the cores of slabs(steel plates).
分 类 号:TG142[一般工业技术—材料科学与工程]
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