1.河钢集团石家庄钢铁有限责任公司,石家庄 050199
2.河北科技大学机械工程学院,石家庄 050018
3.河钢材料技术研究院, 石家庄 052165
聂志水(1985—),男,硕士,高级工程师;E-mail: niezhishui@sina.com;
收稿:2026-01-23,
修回:2026-02-27,
录用:2026-03-03,
纸质出版:2026-07-30
移动端阅览
聂志水,杨敏超,张付祥等.成分调控与轧制工艺对高强度焊丝钢组织及性能的影响[J].特殊钢,2026,47(04):10-17.
Nie Zhishui,Yang Minchao,Zhang Fuxiang,et al.Effect of Composition Control and Rolling Process on the Microstructure and Properties of High-Strength Welding Wire Steel[J].Special Steel,2026,47(04):10-17.
针对ER55-D2-Ti高强度焊丝钢
<math id="M1"><mi>ϕ</mi></math>
https://html.publish.founderss.cn/rc-pub/api/common/picture?pictureId=112282795&type=
https://html.publish.founderss.cn/rc-pub/api/common/picture?pictureId=112282807&type=
2.03200006
2.87866688
5.5 mm线材在拉拔过程中因抗拉强度偏高导致的断裂问题,在全废钢电弧炉冶炼条件下,系统开展了残余元素精细化控制、钢水纯净度提升及控轧控冷工艺协同优化研究。通过建立废钢配料控制模型并优化精炼与RH真空脱气工艺,将Sn、As、Sb成分(质量分数)分别控制到≤0.035%、≤0.004 0%、≤0.002 0%,钢水
w
[O]降至15×10
-6
以内,A类夹杂物控制在≤0.5级,同时通过调节在线冷却强度进而收窄吐丝温度至800~815 ℃,并降低风冷线冷却速率,延长铁素体相变过程时间。工艺协同优化后焊丝钢显微组织转变为铁素体+粒状贝氏体双相组织,铁素体体积分数由约10%提高至40%左右,晶粒明显细化。线材抗拉强度平均降低115 MPa,同圈强度极差由93 MPa降至50 MPa以内,改善和提升了焊丝钢线材的拉拔性能,拉拔断丝现象显著减少,焊接飞溅率由4.78%降低至1.33%。研究表明,通过成分调控、纯净度提升与控轧控冷工艺的协同调节,可实现高强度焊丝钢组织与性能的协调优化,为全废钢冶炼条件下焊丝钢稳定生产与质量提升提供了有效技术路径。
To address the fracture of
<math id="M2"><mi>ϕ</mi></math>
https://html.publish.founderss.cn/rc-pub/api/common/picture?pictureId=112282828&type=
https://html.publish.founderss.cn/rc-pub/api/common/picture?pictureId=112282796&type=
2.03200006
2.87866688
5.5 mm high-strength welding wire steel ER55-D2-Ti rods during drawing caused by excessively high tensile strength, a systematic synergistic optimization of residual element control, steel cleanliness improvement, and controlled rolling and controlled cooling processes was conducted under full scrap electric arc furnace conditions. By establishing a precise scrap charging model and optimizing refining and RH vacuum degassing processes, the contents of Sn, As, and Sb were controlle withind 0.035%, 0.004 0%, and 0.002 0%, respectively. Meanwhile, the oxygen content in molten steel was decreased to below 15 ppm, and the type A inclusion level was controlled below 0.5. In addition,by adjusting the on-line cooling i
ntensity,the laying temperature was narrowed to 800 ℃–815 ℃, and the cooling rate was reduced, thereby prolonging the ferrite phase transformation process. After the synergistic process optimization, the microstructure of the welding wire steel transformed into a dual-phase structure consisting of ferrite and granular bainite, with the ferrite volume fraction increasing from approximately 10% to about 40% and a pronounced grain refinement. The average tensile strength of the wire rod decreased by 115 MPa, while the strength variation within the same coil was reduced from 93 MPa to below 50 MPa. Consequently, the drawing performance of welding wire steel rods was improved ,wire breakage during drawing was significantly alleviated, and the welding spatter rate decreased from 4.78% to 1.33%. The results demonstrate that the coordinated regulation of chemical composition, steel cleanliness, and thermo-mechanical processing effectively enables the synergistic optimization of microstructure and mechanical properties of high-strength welding wire steel, providing an efficient technical pathway for stable production and quality improvement under full scrap electric arc furnace conditions.
张敏敏 , 李 达 , 朱腾辉 , 等 . 800 MPa及以上高强钢焊材的研究现状及展望 [J]. 热加工工艺 , 2016 , 45 ( 21 ): 5 - 9+13 .
Guo W , Crowther D , Francis J A , et al . Microstructure and mechanical properties of laser welded S960 high strength steel [J]. Materials & Design , 2015 , 85 : 534 - 548 .
徐云龙 , 王志福 . 焊丝钢ER70S-6化学成分的优化 [J]. 炼钢 , 2010 , 26 ( 6 ): 6 - 9 .
吕 刚 , 杨鲁明 , 赵晓敏 . 600 MPa级高强焊丝用盘条控冷工艺研究 [J]. 包钢科技 , 2021 , 47 ( 5 ): 72 - 75 .
王 刚 , 李学东 , 赵晓敏 , 等 . BGER60Ti-1焊丝钢拉拔断裂问题分析及改进措施 [J]. 包钢科技 , 2023 , 49 ( 6 ): 81 - 84 .
于 荣 , 左茂方 , 周明军 , 等 . ER50-6焊丝钢热轧盘条的开发生产实践 [J]. 山东冶金 , 2015 , 37 ( 4 ): 14 - 16 .
马志军 . ER50-6盘条拉拔断丝及焊丝焊接飞溅原因探讨 [J]. 金属制品 , 2014 , 40 ( 6 ): 44 - 47 .
谢 帆 , 陈伟庆 , 王艳伍 , 等 . 气保焊丝钢ER70S-G过冷奥氏体的连续冷却转变 [J]. 金属热处理 , 2016 , 41 ( 3 ): 100 - 104
吴炳智 , 荆 文 , 徐玉君 , 等 . 960 MPa级熔敷金属组织及冲击韧性分析 [J]. 焊接学报 , 2015 , 36 ( 6 ): 77 - 80+117 .
Pavlina E J , Van Tyne C J . Correlation of yield strength and tensile strength with hardness for steels [J]. Journal of Materials Engineering and Performance , 2008 , 17 ( 6 ): 888 - 893 .
潘 鑫 , 张 宇 , 王银柏 , 等 . 成分和冷却工艺对耐候焊丝钢盘条组织和性能的影响 [J]. 轧钢 , 2023 , 44 ( 1 ): 89 - 95 .
宋朝琦 , 赵海涛 , 汪水泽 , 等 . 钢中的残余元素 [J]. 钢铁 , 2025 , 60 ( 7 ): 206 - 226 .
李素芹 , 李士琦 , 熊国宏 , 等 . 钢中残余有害元素对油井管质量的影响 [J]. 特殊钢 , 2003 , 24 ( 4 ): 31 - 33 .
李 皓 , 张亚运 , 郭慧英 , 等 . 焊丝钢ER70S-6氧化铁皮机械剥离性能研究 [J]. 特殊钢 , 2019 , 40 ( 4 ): 66 - 70 .
郭慧英 , 张亚运 , 王纳 , 等 . 吐丝温度对高硅焊丝钢氧化皮结构及剥离性的影响 [J]. 上海金属 . 2019 , 41 ( 6 ): 29 - 33 .
Melfo W , Bolt H , Rijnders M , et al . Experimental study on primary scale formation and descalability on steels containing Ni and Ni+Si [J]. ISIJ International , 2013 , 53 ( 5 ): 866 - 873 .
王 煜 . 高碳钢盘条轧后冷却过程氧化铁皮生成模拟及工艺优化 [D]. 武汉 : 武汉科技大学 , 2016 .
彭 玉 . 72A高碳钢盘条氧化铁皮组织结构及机械剥离性控制研究 [D]. 武汉 : 武汉科技大学 , 2018 .
朱 玲 , 史义民 . 高钛合金焊丝钢控制轧制技术研究 [J]. 冶金自动化 , 2021 , 45 ( S1 ): 353 - 356 .
0
浏览量
0
下载量
0
CSCD
0
CNKI被引量
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621