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Effects of overaging temperature on the microstructure and properties of 600 MPa cold-rolled dual-phase steel

     

摘要

C–Mn steels prepared by annealing at 800°C for 120 s and overaging at 250–400°C were subjected to pre-straining (2%) and bak-ing treatments (170°C for 20 min) to measure their bake-hardening (BH2) values. The effects of overaging temperature on the microstructure, mechanical properties, and BH2 behavior of 600 MPa cold-rolled dual-phase (DP) steel were investigated by optical microscopy, scanning electron microscopy, and tensile tests. The results indicated that the martensite morphology exhibited less variation when the DP steel was overaged at 250–350°C. However, when the DP steel was overaged at 400°C, numerous non-martensite and carbide particles formed and yield-point elongation was observed in the tensile curve. When the overaging temperature was increased from 250 to 400°C, the yield strength increased from 272 to 317 MPa, the tensile strength decreased from 643 to 574 MPa, and the elongation increased from 27.8%to 30.6%. Furthermore, with an increase in overaging temperature from 250 to 400°C, the BH2 value initially increases and then decreases. The maximum BH2 value of 83 MPa was observed for the specimen overaged at 350°C.

著录项

  • 来源
    《矿物冶金与材料学报》|2016年第8期|943-948|共6页
  • 作者单位

    State Key Laboratory of Vanadium and Titanium Resources Comprehensive Utilization, Research Institute of Pangang Group, Panzhihua 617000, China;

    State Key Laboratory of Vanadium and Titanium Resources Comprehensive Utilization, Research Institute of Pangang Group, Panzhihua 617000, China;

    State Key Laboratory of Vanadium and Titanium Resources Comprehensive Utilization, Research Institute of Pangang Group, Panzhihua 617000, China;

    State Key Laboratory of Vanadium and Titanium Resources Comprehensive Utilization, Research Institute of Pangang Group, Panzhihua 617000, China;

    Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China;

    Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China;

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