Improved mechanical properties of V-microalloyed dual phase steel by enhancing martensite deformability

被引:2
|
作者
Jingbin Zhang [1 ]
Yinrui Sun [1 ]
Zhijie Ji [1 ]
Haiwen Luo [2 ]
Feng Liu [1 ,3 ]
机构
[1] State Key Laboratory of Solidification Processing, Northwestern Polytechnical University
[2] University of Science and Technology Beijing
[3] Analytical & Testing Center, Northwestern Polytechnical University
基金
国家重点研发计划; 中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TG142.1 [钢的组织与性能];
学科分类号
080502 ;
摘要
A good combination of ultimate tensile strength(UTS) up to 1365 MPa and total strain to failure(StF)to 15.5 % has been achieved due to deformable martensite in the invented vanadium-microalloyed dual-phase(DP) steel, which was manufactured by two-stage annealing of cold rolled steel strip. The employed extensive characterizations revealed that the ductile martensitic phase in this DP steel differentiated from ordinarily low-carbon martensitic lath in both morphology and lattice structure. Complex coherent orientation relationships between ferrite, reverse austenite, martensitic phase and vanadium carbide(VC) do exist, leading to a new martensitic transformation mechanism and resultant dual-phase microstructure. Besides, a detailed characterization including essential phase transformation analysis in combination with in situ TEM observation, shows that, all the essential processing including recrystallization, reverse austenitic and martensitic transformation, in debt to the particular effects of VC, can be recognized as phase transformations with higher thermodynamic driving force and higher kinetic energy barrier as compared to previously common processing, which actually changes the microstructure and,indirectly leads to higher strength and higher ductility. This synergy of thermodynamics and kinetics can be generalized to improve mechanical properties of present steels.
引用
收藏
页码:139 / 153
页数:15
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