The critical impact of intercritical deformation on variant pairing of bainite/martensite in dual-phase steels

被引:21
|
作者
Sun, M. Y. [1 ]
Wang, X. L. [1 ]
Wang, Z. Q. [1 ]
Wang, X. M. [1 ]
Li, X. C. [1 ]
Yan, L. [2 ]
Misra, R. D. K. [3 ]
机构
[1] Univ Sci & Technol Beijing, Collaborat Innovat Ctr Steel Technol, Beijing 100083, Peoples R China
[2] State Key Lab Met Mat Marine Equipment & Applicat, Anshan 114000, Peoples R China
[3] Univ Texas El Paso, Lab Excellence Adv Steel Res, Mat Sci & Engn Program, Dept Met Mat & Biomed Engn, 500 W Univ Ave, El Paso, TX 79968 USA
来源
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING | 2020年 / 771卷 / 771期
关键词
Variant pairing; Dual-phase steel; Intercritical deformation; Microstructure; HEAT-AFFECTED ZONE; MECHANICAL-PROPERTIES; GRAIN-REFINEMENT; FERRITE; MICROSTRUCTURE; TRANSFORMATION; MARTENSITE; CRYSTALLOGRAPHY; AUSTENITE; TOUGHNESS;
D O I
10.1016/j.msea.2019.138668
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
We elucidate here the critical impact of intercritical deformation on variant pairing of bainite/martensite in dual-phase steels. Intercritical deformation was instrumental in significantly increasing the content of ferrite and accelerated the diffusion of carbon from ferrite to untransformed austenite, which finally transformed to martensite on quenching. In contrast, the untransformed austenite with lower enrichment of carbon transformed to bainite. Furthermore, the increase of carbon concentration In untransformed austenite, the length fraction of V1/V2 pair was increased to accommodate the strain associated with the bainite transformation. When the phase transformation product changed from bainite to martensite, all six variants with high fraction belonging to the same closed-packed (CP) group formed to accommodate the higher strain associated with martensite transformation. The steel with the lowest percentage of ferrite (25%) had the highest yield strength (583 MPa), while the yield strength (574 MPa) of steel with 58% ferrite continued to be high because of dislocation strengthening caused by intercritical deformation. Additionally, the uniform elongation was increased and yield strength to tensile strength ratio was reduced with the increase of content of ferrite in the studied steels.
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页数:10
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