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作 者:谢杰 张陆霄 王纳 张宇 李惠[1] 王加友[1] XIE Jie;ZHANG Luxiao;WANG Na;ZHANG Yu;LI Hui;WANG Jiayou(School of Materials Science and Engineering, Jiangsu University of Science and Technology, Zhenjiang 212100, China;Jiangsu (Shagang) Iron & Steel Research Institute, Zhangjiagang 215625, China)
机构地区:[1]江苏科技大学材料科学与工程学院,镇江212100 [2]江苏省(沙钢)钢铁研究院,张家港215625
出 处:《江苏科技大学学报(自然科学版)》2020年第5期21-25,共5页Journal of Jiangsu University of Science and Technology:Natural Science Edition
摘 要:针对两种不同成分的正火钢Q370qE,利用EPMA测定焊接接头熔合线附近的元素分布,采用金相显微镜观察热影响区组织,利用Pro Imaging软件测定组织占比及晶粒度大小,分析母材合金元素和焊接工艺对焊接接头组织及性能的影响机理.结果表明:含Ni量较高的Q370qE在焊接过程中,熔合区附近Cu、Ni、Nb和V元素迁移,细化了铁素体晶粒;C曲线右移,生成细小均匀分布的粒状贝氏体,从而提高了热影响区的低温冲击韧性.In this paper,normalized steel Q370qE with two different components are studied.The element distribution in the fusion zone(FZ)of welded joints is measured by EPMA.The structure of the HAZ is observed by metallographic microscope.The tissue proportion and grain size are calculated by Pro Imaging software.The influence mechanism of parent metal alloy elements and welding process on the structure and performance of welded joints is analyzed.The results show that during welding process of Q370qE with high Ni content,the migrations of Cu,Ni,Nb and V elements in the FZ of welded joints refine the ferrite grains.The right shift of C curve promotes the formation and uniform distribution of granular bainite in the coarse crystal zone,and these improve the low temperature impact toughness.
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