Investigating the microstructural evolution and interfacial morphology of laser- and arc-brazed ZnAlMg coated steel

被引:12
作者
Sarmast-Ghahfarokhi, Shadab [1 ]
Khan, M. Shehryar [1 ]
Cho, Yong Hwan [1 ]
Lee, Mok-Young [2 ]
Benoit, Michael J. [1 ,3 ]
Zhou, Norman [1 ]
机构
[1] Univ Waterloo, Dept Mech & Mechatron Engn, 200 Univ Ave West, Waterloo, ON N2L 3G1, Canada
[2] POSCO, Welding & Joining Res Grp, 100 Songdogwahak Ro, Incheon 21985, South Korea
[3] Univ British Columbia, Sch Engn, Kelowna, BC V1V 1V7, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
ZnAlMg coating; CuSi 3 Mn filler material; Phase evolution; Precipitates; Intermetallic compounds; Weld-brazing; Laser-brazing; Arc-brazing; MECHANICAL-PROPERTIES; ALUMINUM; FILLER; JOINTS; MIG;
D O I
10.1016/j.jmatprotec.2023.117943
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
ZnAlMg coatings are highly corrosion resistant due to their unique microstructure and have shown promise as a next-generation coating material for automotive structures. Despite the extensive research conducted on the corrosion behavior of these coatings, the microstructural evolution of the coatings during further manufacturing processes, such as welding and brazing, has not been fully explored. This study presents a comprehensive assessment of the impact of heat source on the microstructural evolution and interfacial morphology of laser- and arc-brazed ZnAlMg coated steel using a CuSi3Mn filler material. The results showed that although a high density of FeSi(Cu) precipitates was detected at the center of the arc-brazed specimen, a limited number of precipitates were observed in the same region of the laser-brazed specimen. It was shown that the arc-brazed sample had a solid solution structure with a high degree of Zn and Cu gradient at the tail region. In contrast, the laser-brazed specimen showed a distinct microstructure in the same area with eutectic structures, a dendritic transition zone, and a Cu-based microstructure. The present work provides new insight into developing the application of ternary ZnAlMg coatings in the automotive industry.
引用
收藏
页数:16
相关论文
共 42 条
[11]   Microstructure and Mechanical Properties of Plasma Arc Brazed AISI 304L Stainless Steel and Galvanized Steel Plates [J].
Jin, Yajuan ;
Li, Ruifeng ;
Yu, Zhishui ;
Wang, Yu .
JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2016, 25 (04) :1327-1335
[12]   The Effect of Zinc Coating Type on the Morphology, Joint Geometry, and Mechanical Properties of Weld-Brazed Thin-Gauge Automotive Steel [J].
Khan, M. Shehryar ;
Cho, Y-H ;
Zhang, S. ;
Goodwin, F. ;
Biro, E. ;
Zhou, Y. N. .
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2023, 54 (01) :179-195
[13]   A systematic study on the effect of coating type and surface preparation on the wettability of Si-Bronze brazing filler material on GI and GA-coated DP600 [J].
Khan, M. Shehryar ;
Cho, Y-H ;
Alfano, M. ;
Goodwin, F. ;
Biro, E. ;
Zhou, Y. .
SURFACE & COATINGS TECHNOLOGY, 2021, 425
[14]   A Review of Research Progress on Dissimilar Laser Weld-Brazing of Automotive Applications [J].
Krishnaja, Devireddy ;
Cheepu, Muralimohan ;
Venkateswarlu, D. .
INTERNATIONAL CONFERENCE ON RECENT ADVANCES IN MATERIALS, MECHANICAL AND CIVIL ENGINEERING, 2018, 330
[15]   Influence of Arc Brazing Parameters on Microstructure and Joint Properties of Electro-Galvanized Steel [J].
Lee, Soon Jae ;
Sharma, Ashutosh ;
Jung, Do Hyun ;
Jung, Jae Pil .
METALS, 2019, 9 (09)
[16]   Dynamic spreading and interfacial reactions during the laser-induced wetting process of aluminum on stainless steel [J].
Li, H. Y. ;
Li, L. Q. ;
Zhang, Z. S. ;
Meng, X. Y. ;
Xia, H. B. ;
Chen, B. ;
Tan, C. W. ;
Song, X. G. .
APPLIED SURFACE SCIENCE, 2022, 587
[17]   Influence of laser energy input mode on joint interface characteristics in laser brazing with Cu-base filler metal [J].
Li-qun, Li ;
Feng Xiao-song ;
Chen Yan-bin .
TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2008, 18 (05) :1065-1070
[18]  
Lowke J.J., 2018, Handbook of Thermal Science and Engineering, P2657
[19]   Study of surface tension and viscosity of Cu-Fe-Si ternary alloy using a thermodynamic approach [J].
Mehta, U. ;
Yadav, S. K. ;
Koirala, I. ;
Koirala, R. P. ;
Shrestha, G. K. ;
Adhikari, D. .
HELIYON, 2020, 6 (08)
[20]   COHESION IN ALLOYS - FUNDAMENTALS OF A SEMI-EMPIRICAL MODEL [J].
MIEDEMA, AR ;
DECHATEL, PF ;
DEBOER, FR .
PHYSICA B & C, 1980, 100 (01) :1-28