An Empirical Approach to Analyze Creep Rupture Behavior of P91 Steel

被引:0
|
作者
Aslam, Muhammad Junaid [1 ]
Gur, Cemil Hakan [1 ,2 ]
机构
[1] Middle East Tech Univ, Dept Met & Mat Engn, Ankara, Turkey
[2] Middle East Tech Univ, Welding Technol & NDT Res Applicat Ctr, Ankara, Turkey
来源
KOREAN JOURNAL OF MATERIALS RESEARCH | 2021年 / 31卷 / 05期
关键词
P91; Type; 2; steel; creep life; creep damage; creep work density; strain energy density; TERM CREEP; DEFORMATION; EVOLUTION;
D O I
10.3740/MRSK.2021.31.5.255
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
P91 steel has been a highly researched material because of its applicability for high-temperature applications. Considerable efforts have been made to produce experimental creep data and develop models for creep life prediction. As creep tests are expensive and difficult to conduct, it is vital to develop authenticated empirical methods from experimental results that can be utilized for better understanding of creep behavior and can be incorporated into computational models for reliable prediction of creep life. In this research, a series of creep rupture tests are performed on the P91 specimens within a stress range of 155 MPa to 200 MPa and temperature range of 640 degrees C (913 K) to 675 degrees C (948 K). The microstructure, hardness, and fracture surfaces of the specimens are investigated. To analyze the results of the creep rupture tests at a macro level, a parameter called creep work density is derived. Then, the relationships between various creep parameters such as strain, strain rate, time to rupture, creep damage tolerance factor, and creep work density are investigated, and various empirical equations are obtained.
引用
收藏
页码:255 / 263
页数:9
相关论文
共 50 条
  • [41] Microstructural changes in creep exposed P91 steel weld joint
    Jandova, Dagmar
    Kasl, Josef
    MATERIALS AT HIGH TEMPERATURES, 2011, 28 (02) : 137 - 146
  • [42] Creep deformation behavior and residual life prediction of low hardness P91 steel welded joints
    Wang, Denghui
    Tu, Bo
    Yan, Kai
    Gao, Fei
    Shen, Zihao
    Zhang, Zheng
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2024, 31 : 3570 - 3579
  • [43] A study of creep rupture life prediction for P91 steel with machine learning method: Model selection and sensitivity analysis
    Chen, Jie
    Liu, Xinbao
    Zhu, Lin
    Fan, Ping
    Chen, Hongtao
    Xie, Yuxuan
    Yue, Lingxin
    INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING, 2025, 216
  • [44] Calculation of Residual Life for P91 Material Based on Creep Rate and Time to Rupture
    Osocha, Przemyslaw
    TEROTECHNOLOGY, 2017, 2018, 5 : 177 - 182
  • [45] Modelling the strain and stress state under creep conditions in P91 steel
    Duda, Piotr
    Felkowski, Lukasz
    Dobrzanski, Janusz
    Purzynska, Hanna
    MATERIALS AT HIGH TEMPERATURES, 2016, 33 (01) : 85 - 93
  • [46] Microstructural evolution of P91 steel after long term creep tests
    Bianchi, P
    Bontempi, P
    Benvenuti, A
    Ricci, N
    MICROSTRUCTURAL STABILITY OF CREEP RESISTANT ALLOYS FOR HIGH TEMPERATURE PLANT APPLICATIONS, 1998, (02): : 107 - 116
  • [47] Damage characterization of a P91 steel weldment under uniaxial and multiaxial creep
    Ogata, Takashi
    Sakai, Takyuki
    Yaguchi, Masatsugu
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2009, 510-11 : 238 - 243
  • [48] Creep behaviour of P91 welds.
    Maile, K
    Theofel, H
    Bendick, W
    Zschau, M
    STAHL UND EISEN, 1997, 117 (08): : 101 - 105
  • [49] Creep Modelling of P91 Steel for High Temperature Power Plant Applications
    Nandi, Somnath
    Vikrant, K. S. N.
    Pavan, A. H., V
    Singh, Kulvir
    Ghosh, R. N.
    6TH INTERNATIONAL CONFERENCE ON CREEP, FATIGUE AND CREEP-FATIGUE INTERACTION, 2013, 55 : 751 - 755
  • [50] Finite Element Modeling of Ultrasonic Nonlinearity for Creep Damage of P91 Steel
    Liu, Yanyan
    Zhang, Linwen
    Yuan, Haojie
    Ma, Shiwei
    2016 IEEE INTERNATIONAL ULTRASONICS SYMPOSIUM (IUS), 2016,