Institutional Repository of Coll Mat Sci & Engn
Weldability and distortion of Mg AZ31-to-galvanized steel SPOT plug welding joint by cold metal transfer method | |
Cao, R.1; Xu, Q. W.1; Zhu, H. X.1; Mao, G. J.1; Lin, Q.1; Chen, J. H.1; Wang, Pei-Chung2 | |
2017-02-01 | |
发表期刊 | Journal of Manufacturing Science and Engineering, Transactions of the ASME |
ISSN | 10871357 |
卷号 | 139期号:2 |
摘要 | In this study, cold metal transfer (CMT) plug welding of 1 mm thick Mg AZ31 to 1 mm thick hot-dipped galvanized mild steel (i.e., Q235) was studied. Welding tests were performed and the process variables optimized with Mg AZ61 wire and 100% argon shielding gas for a plug weld located in the center of the 25 mm overlap region. It was found that it is feasible to join 1 mm thick Mg AZ31 workpiece to 1 mm thick galvanized mild steel using CMT plug welding. The optimized process variables for CMT plug welding Mg AZ31-to-galvanized mild steel were a wire feed speed of 10.5 m/min, a predrilled hole with a diameter of 8 mm in Mg AZ31 workpiece and a welding time of 0.8 s. CMT plug welded Mg AZ31-to-galvanized mild steel joints were composed of the fusion zone between Mg AZ31 base metal and Mg weld metal, Mg weld metal (i.e., combined base metal, filler wire and Zn coating), and the brazing interface between magnesium weld metal and galvanized mild steel. The brazing interface mainly consisted of Al, Zn, Mg, Si intermetallic compounds and oxides (i.e., Fe3Al, Mg2Si, MgZn, and MgZn2), and magnesium solid solution. The static strength of CMT welded-brazed Mg AZ31-galvanized steel was determined primarily by the strength and area of the brazed interface and thickness of the intermetallic reaction layer. © 2017 by ASME. |
关键词 | Aluminum alloys Binary alloys Brazing Galvanized metal Galvanizing Hardness Intermetallics Low carbon steel Magnesium compounds Metals Microstructure Phase interfaces Silicon compounds Soldered joints Steel Weldability Welding Welds Wire Zinc alloys Brazing interface Cold metal transfers Galvanized steels Hot-dipped galvanized Intermetallic reaction Pre-drilled holes Process Variables tensile |
DOI | 10.1115/1.4034009 |
收录类别 | EI ; SCIE |
语种 | 英语 |
WOS研究方向 | Engineering |
WOS类目 | Engineering, Manufacturing ; Engineering, Mechanical |
WOS记录号 | WOS:000393881400001 |
出版者 | American Society of Mechanical Engineers (ASME) |
EI入藏号 | 20163602770858 |
EI主题词 | Magnesium alloys |
EI分类号 | 531.1 Metallurgy - 535.2 Metal Forming - 538.1.1 Soldering - 538.2 Welding - 541.2 Aluminum Alloys - 542.2 Magnesium and Alloys - 545.3 Steel - 546.3 Zinc and Alloys - 801.4 Physical Chemistry - 951 Materials Science |
来源库 | Compendex |
分类代码 | 531.1 Metallurgy - 535.2 Metal Forming - 538.1.1 Soldering - 538.2 Welding - 541.2 Aluminum Alloys - 542.2 Magnesium and Alloys - 545.3 Steel - 546.3 Zinc and Alloys - 801.4 Physical Chemistry - 951 Materials Science |
引用统计 | |
文献类型 | 期刊论文 |
条目标识符 | https://ir.lut.edu.cn/handle/2XXMBERH/114612 |
专题 | 材料科学与工程学院 学报编辑部 |
通讯作者 | Cao, R. |
作者单位 | 1.Lanzhou Univ Technol, State Key Lab Adv Proc & Recycling Nonferrous Met, Langongping 287 Rd, Qilihe Dist 730050, Peoples R China; 2.Gen Motors Global Res & Dev Ctr, Mfg Syst Res Lab, MC 480-106-RA2,30500 Mound Rd, Warren, MI 48090 USA |
第一作者单位 | 省部共建有色金属先进加工与再利用国家重点实验室 |
通讯作者单位 | 省部共建有色金属先进加工与再利用国家重点实验室 |
第一作者的第一单位 | 省部共建有色金属先进加工与再利用国家重点实验室 |
推荐引用方式 GB/T 7714 | Cao, R.,Xu, Q. W.,Zhu, H. X.,et al. Weldability and distortion of Mg AZ31-to-galvanized steel SPOT plug welding joint by cold metal transfer method[J]. Journal of Manufacturing Science and Engineering, Transactions of the ASME,2017,139(2). |
APA | Cao, R..,Xu, Q. W..,Zhu, H. X..,Mao, G. J..,Lin, Q..,...&Wang, Pei-Chung.(2017).Weldability and distortion of Mg AZ31-to-galvanized steel SPOT plug welding joint by cold metal transfer method.Journal of Manufacturing Science and Engineering, Transactions of the ASME,139(2). |
MLA | Cao, R.,et al."Weldability and distortion of Mg AZ31-to-galvanized steel SPOT plug welding joint by cold metal transfer method".Journal of Manufacturing Science and Engineering, Transactions of the ASME 139.2(2017). |
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