Microstructural Characterization of Laser Weld of Hot-Stamped Al-Si Coated 22MnB5 and Modification of Weld Properties by Hybrid Welding

被引:3
作者
Sebestova, Hana [1 ]
Hornik, Petr [1 ]
Mikmekova, Sarka [1 ]
Mrna, Libor [1 ]
Dolezal, Pavel [2 ]
Novotny, Jan [1 ]
机构
[1] Czech Acad Sci, Inst Sci Instruments, Kralovopolska 147, Brno 61264, Czech Republic
[2] Brno Univ Technol, Inst Mat Sci & Engn, Fac Mech Engn, Tech 2896-2, Brno 61669, Czech Republic
关键词
22MnB5; laser welding; hybrid welding; cooling rate; tensile strength; microstructure; microhardness; PRESS-HARDENED STEEL; MECHANICAL-PROPERTIES; DELTA-FERRITE; STRENGTH; HARDENABILITY; SHEETS; CARBON;
D O I
10.3390/ma14143943
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The presence of Al-Si coating on 22MnB5 leads to the formation of large ferritic bands in the dominantly martensitic microstructure of butt laser welds. Rapid cooling of laser weld metal is responsible for insufficient diffusion of coating elements into the steel and incomplete homogenization of weld fusion zone. The Al-rich regions promote the formation of ferritic solid solution. Soft ferritic bands cause weld joint weakening. Laser welds reached only 64% of base metal's ultimate tensile strength, and they always fractured in the fusion zone during the tensile tests. We implemented hybrid laser-TIG welding technology to reduce weld cooling rate by the addition of heat of the arc. The effect of arc current on weld microstructure and mechanical properties was investigated. Thanks to the slower cooling, the large ferritic bands were eliminated. The hybrid welds reached greater ultimate tensile strength compared to laser welds. The location of the fracture moved from the fusion zone to a tempered heat-affected zone characterized by a drop in microhardness. The minimum of microhardness was independent of heat input in this region.
引用
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页数:15
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