Microstructure evolution and strengthening mechanism of air-hardening steel subjected to the austenitizing annealing treatment

被引:3
|
作者
Yang, Yonggang [1 ]
Luo, Xiang [2 ]
Lei, Minggang [3 ]
Fang, Xing [1 ]
Li, Shouhua [3 ]
Wu, Yanxin [1 ]
Mi, Zhenli [1 ]
机构
[1] Univ Sci & Technol Beijing, Natl Engn Res Ctr Adv Rolling & Intelligent Mfg, Beijing 100083, Peoples R China
[2] Xinyu Iron & Steel Grp Co Ltd, Xinyu 338001, Jiangxi, Peoples R China
[3] Handan Iron & Steel Grp Co Ltd, Fuxin 056015, Hebei, Peoples R China
基金
中国国家自然科学基金;
关键词
air-hardening steel; microstructure; strengthening mechanism; austenitizing annealing; mechanical properties; BEHAVIOR;
D O I
10.1088/2053-1591/acfd88
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The microstructure evolution and mechanical properties of air-hardening steel subjected to different austenitizing annealing treatments were investigated in this study and, especially, the precipitation behavior of the steel was analyzed, as well as the strengthening mechanism of the steel was elucidated on the basis of systematic microstructural characterization. Results reveal that a ferrite + martensite dual-phase structure with about 700 MPa tensile strength and 20% elongation can be obtained by austenitizing the experimental steel in the range of 750 similar to 800 degrees C; while austenitizing between 850 degrees C and 950 degrees C results in granular bainite + lath bainite with about 950 MPa tensile strength and 12% elongation. The experimental steel has the highest strength after austenitizing at 900 degrees C with lots of nano-scale (Ti, Mo, V)C particles distributed in its matrix. Quantitative calculation results illustrate that the main strengthening factors are grain refinement strengthening, dislocation strengthening and precipitation strengthening. In addition, due to the potential interaction effect between different strengthening factors, a modified strengthening model is proposed to describe the strengthening behavior of the air-hardening steel when it is heat-treated in the two-phase region.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Effect of Continuous Annealing on Microstructure and Bake Hardening Behavior of Low Carbon Steel
    Chun-fu KUANG
    Jian WANG
    Jun LI
    Shen-gen ZHANG
    Hua-fei LIU
    Hong-lin YANG
    JournalofIronandSteelResearch(International), 2015, 22 (02) : 163 - 170
  • [32] Effect of Continuous Annealing on Microstructure and Bake Hardening Behavior of Low Carbon Steel
    Kuang, Chun-fu
    Wang, Jian
    Li, Jun
    Zhang, Shen-gen
    Liu, Hua-fei
    Yang, Hong-lin
    JOURNAL OF IRON AND STEEL RESEARCH INTERNATIONAL, 2015, 22 (02) : 163 - 170
  • [33] Effects of Austenitizing Temperature on Microstructure Evolution and Corrosion Resistance of High Cr Ferritic/Martensitic Steel
    Huang, Xiaoyu
    Wang, Heng
    Chen, Jianguo
    Dang, Lihua
    Ma, Zhongqiang
    Cui, Shibo
    INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2022, 17 (08):
  • [34] Effect of Continuous Annealing on Microstructure and Bake Hardening Behavior of Low Carbon Steel
    Chun-fu Kuang
    Jian Wang
    Jun Li
    Shen-gen Zhang
    Hua-fei Liu
    Hong-lin Yang
    Journal of Iron and Steel Research International, 2015, 22 : 163 - 170
  • [35] Effect of Austenitizing Heat Treatment on the Microstructure and Hardness of Martensitic Stainless Steel AISI 420
    L. D. Barlow
    M. Du Toit
    Journal of Materials Engineering and Performance, 2012, 21 : 1327 - 1336
  • [36] Effect of Austenitizing Heat Treatment on the Microstructure and Hardness of Martensitic Stainless Steel AISI 420
    Barlow, L. D.
    Du Toit, M.
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2012, 21 (07) : 1327 - 1336
  • [37] Nanoscale Cu particle evolution and its impact on the mechanical properties and strengthening mechanism in precipitation-hardening stainless steel
    Sun, Huili
    Li, Dongdong
    Diao, Yupeng
    He, Yang
    Yan, Luchun
    Pang, Xiaolu
    Gao, Kewei
    MATERIALS CHARACTERIZATION, 2022, 188
  • [38] Microstructure evolution and crack formation mechanism of high-nitrogen bearing steel subjected to warm deformation
    Sun, Mengli
    Wang, Feng
    Qian, Dongsheng
    Liu, Xiaoyu
    Wu, Min
    MATERIALS & DESIGN, 2023, 228
  • [39] Microstructure evolution in a pearlitic steel subjected to progressive plastic deformation
    Toribio, J
    Ovejero, E
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 1997, 234 : 579 - 582
  • [40] Microstructure evolution and strengthening mechanism of rolled Mo-ZrO2 alloy plates after high temperature annealing
    Xu, Zhaoning
    Jiao, Zhaolin
    Wei, Shizhong
    Zhou, Yucheng
    Wang, Changji
    Fang, Hong
    Yang, Jinghong
    Xu, Liujie
    INTERNATIONAL JOURNAL OF REFRACTORY METALS & HARD MATERIALS, 2023, 113