材料科学
马氏体
双相钢
退火(玻璃)
冶金
奥氏体
复合材料
铁氧体(磁铁)
包辛格效应
延伸率
延展性(地球科学)
可塑性
极限抗拉强度
蠕动
微观结构
作者
Bo Gao,Rong Hu,Zhiyi Pan,Xuefei Chen,Yi Liu,Lirong Xiao,Yang Cao,Yusheng Li,Qingquan Lai,Hao Zhou
标识
DOI:10.1016/j.jmst.2020.03.083
摘要
Abstract The steels with excellent strength and ductility are expected to be achieved by tailoring the microstructural features. In this work, laminate dual-phase (DP) steels with high martensite content (laminate HMDP steels) were produced by a combination of warm rolling and intercritical annealing. Influence of rolling strain and annealing temperature on the microstructural evolution and mechanical properties of laminate HMDP steels were systematically studied. The strength of HMDP steels was significantly improved to ∼1.6 GPa associated with a high uniform elongation of 7%, as long as the laminate structure is maintained. The strengthening and ductilizing mechanisms of laminate HMDP steels are discussed based on the influence of laminate structure and the high martensite content, which promote the development of internal stresses and can be correlated to the Bauschinger effect as measured by the cyclic loading-unloading-reloading experiments. Detailed transmission electron microscopy (TEM) observation was applied to characterize the dislocation structure in the deformed ferrite.
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