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Microstructural evolution and mechanical properties of laser-welded joints of medium manganese steel 被引量:2
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作者 Yang Cao Chong Luo +6 位作者 Lin Zhao Yun Peng Liang Song Cheng-yong Ma Zhi-ling Tian Min-lin Zhong Yan-jie Wang 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2020年第1期75-87,共13页
The cold-rolled 5% medium Mn steel was butt-welded using a fiber laser.The microstructure,distribution of microhardness,and tensile properties of the base metal(BM)and welded joint were investigated.The results showed... The cold-rolled 5% medium Mn steel was butt-welded using a fiber laser.The microstructure,distribution of microhardness,and tensile properties of the base metal(BM)and welded joint were investigated.The results showed that the fusion zone of the welded joint had the highest microhardness due to the formatio n of 100%marten site.A finely mixed microstructure of martensite,ferrite,and austenite was formed in the heat-affected zone,and there was no softened zone in this area.The tensile test results indicated that the ultimate tensile sirength and yield strength were higher for the joint than for BM.The joint efficiency was approximately 100%.All samples of the welded joirn failed at the location of BM during tensile deformation.The fracture surfaces of the BM and welded joint were mainly ductile fractures.The BM and welded joint exhibited strain rate independence of the tensile strength and yield strength at strain rates of 0.01-1 s_1,while the yield strength of the BM and welded joint increased rapidly when the strain rate reached 5 s_1 due to changes in the dislocation moveme nt mechanisms.The uniform elongation of the BM and welded joint decreased with in creasing strain rate. 展开更多
关键词 MEDIUM Mn steel-microstructure MICROHARDNESS TENSILE property LASER welding
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