板条
材料科学
马氏体
微观结构
奥氏体
铁氧体(磁铁)
冶金
延伸率
极限抗拉强度
电子探针
贝氏体
复合材料
作者
Cainian Jing,Qiteng Lei,Tao Lin,Daomin Ye,Cong Wu,Jingrui Zhao,Shubo Xu
标识
DOI:10.17222/mit.2020.181
摘要
In this paper, the TRIP590 steel was used for C-Mn partitioning. The influence of C-Mn partitioning on the microstructure and mechanical properties of the steel was studied. SEM, EPMA, XRD and tensile tests were used to characterize the microstructure of the tested steel, calculate the content of retained austenite, and analyze the enrichment of C atoms and Mn atoms and mechanical properties. The results show that there was a lot of lath martensite and scattered ferrite in the microstructures of the Q&P steel and C-Mn partitioning steel. After C-Mn partitioning, the content of ferrite was increased. The enrichment of C and Mn in the C-Mn partitioning steel was relatively apparent, and the concentration of the atoms in the center of martensite was significantly higher than at the boundary between martensite and ferrite. Mn-rich areas were also C-rich areas. Compared with the Q&P steel, the C-Mn partitioning steel had a larger amount of retained austenite, higher elongation and PSE.
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