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Microstructure Evolution and Mechanical Properties of Medium Carbon Martensitic Steel during Warm Rolling and Annealing Process
Authors:Guolong Liu  Jingbao Liu  Jie Zhang  Minghe Zhang  Yunli Feng
Institution:1.College of Metallurgy and Energy, North China University of Science and Technology, Tangshan 063210, China; (G.L.); (M.Z.);2.Technology Center, HBIS Group Tangsteel Company, Tangshan 063016, China; (J.L.); (J.Z.)
Abstract:The microstructure evolution and mechanical properties of medium carbon martensitic steel during the warm rolling and annealing process were studied by scanning electron microscope (SEM), electron back scattering diffraction (EBSD), and electronic universal testing machine. The results showed that the microstructure of ferrite matrix with mass dispersive cementite particles was obtained by decomposition of martensitic in medium-carbon martensitic steel after warm rolling. The grain size of ferrite was ~0.53 μm, the yield strength and tensile strength were 951 MPa and 968 MPa, respectively, and the total elongation rate was 11.5% after warm rolling at 600 °C. Additionally, after the next 4 h of annealing, the grain size of ferrite and particle size of cementite increased to ~1.35 μm and ~360 nm and the yield strength and tensile strength decreased to 600 MPa and 645 MPa, respectively, with a total elongation increases of 20.9%. The strength of the material increased with increasing strain rate in tension, and the yield-to-tensile strength ratio increased from 0.92 to 0.94 and maintained good plasticity.
Keywords:medium carbon martensitic steel  warm rolling  annealing  microstructure  mechanical properties
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