Microstructural evolution and constitutive models of 9CrMoCoB heat-resistant steel during high-temperature deformation

被引:0
|
作者
Chao-hang Jia
Chen-xi Liu
Yong-chang Liu
Chong Li
Hui-jun Li
机构
[1] Tianjin University,Key Lab of Hydraulic Engineering Simulation and Safety, School of Materials Science and Engineering
关键词
9CrMoCoB steel; Hot deformation behavior; Dynamic recrystallization; Arrhenius-type constitutive model; Modified Zerilli-Armstrong model;
D O I
暂无
中图分类号
学科分类号
摘要
In order to research the hot deformation behavior of 9CrMoCoB heat-resistant steel, hot compression tests were performed over a wide range of temperatures from 850 to 1150 °C and strain rates from 0.01 to 10.00 s−1. The flow stress appears to increase with the decrease in deformation temperature and the increase in strain rate. The relationship between microstructural evolution and deformation parameters was studied, indicating that both low strain rate and high deformation temperature appear to promote the dynamic recrystallization, while excessively high temperature with low strain rate would result in the high non-uniformity of grain size. The experimental stress–strain data was applied to calculate the material constants involved in the Arrhenius-type constitutive model and the modified Zerilli-Armstrong (MZA) model, and feasibility of these two models was evaluated. The results show that the MZA model is more accurate to predict the high-temperature flow behavior of the experimental steel than the Arrhenius-type constitutive equation.
引用
下载
收藏
页码:1228 / 1239
页数:11
相关论文
共 50 条
  • [31] Physical Aspects of the Hardening of Heat-Resistant Steel Formed by High-Temperature Plasma in Nitrogen
    Malushin, N.N.
    Romanov, D.A.
    Steel in Translation, 2022, 52 (04) : 422 - 428
  • [32] Physical Aspects of the Hardening of Heat-Resistant Steel Formed by High-Temperature Plasma in Nitrogen
    Malushin N.N.
    Romanov D.A.
    Steel in Translation, 2022, 52 (4) : 422 - 428
  • [33] Effect of Aluminum on Microstructure and High-Temperature Oxidation Resistance of Austenitic Heat-Resistant Steel
    Gu, Chang
    Liu, Ruizhuo
    Wang, Chengduo
    Sun, Yufu
    Zhang, Shaojun
    METALS, 2020, 10 (02)
  • [34] Effects of Al on Microstructure and High-Temperature Wear Properties of Austenitic Heat-Resistant Steel
    Yan Zhang
    Yu-fu Sun
    Jing-yu Zhao
    Shao-kang Guan
    Journal of Iron and Steel Research International, 2012, 19 : 62 - 66
  • [35] Microstructural evolution and mechanical behavior of cast heat-resistant steels subjected to high service temperature
    Garin, J. L.
    Mannheim, R. L.
    Manriquez, F. J.
    REVISTA DE METALURGIA, 2008, 44 (04) : 355 - 366
  • [36] Effects of Al on Microstructure and High-Temperature Wear Properties of Austenitic Heat-Resistant Steel
    ZHANG Yan1
    2. School of Materials Science and Engineering
    Journal of Iron and Steel Research(International), 2012, 19 (03) : 62 - 66
  • [37] Effects of Al on Microstructure and High-Temperature Wear Properties of Austenitic Heat-Resistant Steel
    Zhang Yan
    Sun Yu-fu
    Zhao Jing-yu
    Guan Shao-kang
    JOURNAL OF IRON AND STEEL RESEARCH INTERNATIONAL, 2012, 19 (03) : 62 - 66
  • [38] High-temperature oxidation behavior of 9Cr-5Si-3Al ferritic heat-resistant steel
    Jun-jun Yan
    Xue-fei Huang
    Wei-gang Huang
    International Journal of Minerals, Metallurgy and Materials, 2020, 27 : 1244 - 1250
  • [39] Microstructural evolution and the effect on hardness and plasticity of S31042 heat-resistant steel during creep
    Yang, Yahong
    Zhu, Lihui
    Wang, Qijiang
    Zhu, Changchun
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2014, 608 : 164 - 173
  • [40] Hardness Variation in P92 Heat-Resistant Steel based on Microstructural Evolution during Creep
    Jiang, Jun
    Zhu, Lihui
    Wang, Yanfeng
    STEEL RESEARCH INTERNATIONAL, 2013, 84 (08) : 732 - 739