Development of generic creep-fatigue life prediction models

被引:38
|
作者
Goswami, T [1 ]
机构
[1] Ohio No Univ, TJ Smull Coll Engn, Dept Engn Mech, Ada, OH 45810 USA
来源
MATERIALS & DESIGN | 2004年 / 25卷 / 04期
关键词
creep-fatigue; life prediction; fatigue life; high temperature materials;
D O I
10.1016/j.matdes.2003.11.001
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This paper presents a data bank that was compiled from published and unpublished sources. Using these data, low cycle fatigue curves were generated under a range of test conditions showing the effect of test parameters on the Coffin-Manson behavior of steel alloys. Phenomenological methods of creep-fatigue life prediction are Summarized in a table showing number of material parameters required by each method and type of tests needed to generate such parameters. Applicability of viscosity method was assessed with creep-fatigue data on 1Cr-Mo-V, 2.25Cr-Mo and 9Cr-1Mo steels. Generic equations have been developed in this paper to predict the creep-fatigue life of high temperature materials. Several new multivariate equations were developed to predict the creep-fatigue life of following alloy groups; (1) Cr-Mo steels, (2) stainless steels and (3) generic materials involving the materials from the following alloy groups, solder, copper, steels, titanium, tantalum and nickel-based alloys. Statistical analyses were performed in terms of coefficient of correlation (R-2) and normal distribution plots and recommended these methods in the design of components operating Lit high temperatures. (C) 2003 Elsevier Ltd. All rights reserved.
引用
收藏
页码:277 / 288
页数:12
相关论文
共 50 条
  • [41] Evaluation of creep-fatigue life by fraction of cavity area
    Kim, Bumjoon
    Lim, Byeongsoo
    INTERNATIONAL JOURNAL OF MODERN PHYSICS B, 2006, 20 (25-27): : 4237 - 4242
  • [42] Research On Creep-Fatigue Life Prediction For P92 Steel Under Stress-Controlled State
    Wang, Dexian
    Ji, Dongmei
    Ren, Jianxing
    ENERGY DEVELOPMENT, PTS 1-4, 2014, 860-863 : 972 - +
  • [43] A modified energy model including mean stress and creep threshold stress effect for creep-fatigue life prediction
    Song, Kai
    Zhao, Lei
    Xu, Lianyong
    Han, Yongdian
    Hao, Kangda
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2022, 45 (05) : 1299 - 1316
  • [44] Study on creep-fatigue interaction mechanism and life prediction of aero-engine turbine blade
    Sun, Debin
    Ma, Guoli
    Wan, Zhenhua
    Gao, Jinhai
    ENGINEERING FAILURE ANALYSIS, 2023, 154
  • [45] Creep-fatigue damage and life prediction in P92 alloy by focused ultrasound measurements
    Kim, Bum-joon
    Kim, Hak-joon
    Lim, Byeong-soo
    METALS AND MATERIALS INTERNATIONAL, 2008, 14 (04) : 391 - 395
  • [46] Creep-fatigue damage and life prediction in P92 alloy by focused ultrasound measurements
    Bum-joon Kim
    Hak-joon Kim
    Byeong-soo Lim
    Metals and Materials International, 2008, 14
  • [47] Accuracy of the predicting for creep-fatigue cyclic life based on parameters in a characteristic cycle
    Ding, Biao
    Ren, Weili
    Zhong, Yunbo
    Yuan, Xiaotan
    Peng, Jianchao
    Zheng, Tianxiang
    Shen, Zhe
    Guo, Yifeng
    Xuan, Weidong
    Yu, Jianbo
    Brnic, Josip
    Liaw, Peter K.
    ENGINEERING FRACTURE MECHANICS, 2021, 255
  • [48] Life prediction for the titanium alloy IMI 834 under high temperature creep-fatigue loadings
    Kordisch, T
    Nowack, H
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 1998, 21 (01) : 47 - 63
  • [49] Life prediction of 316FR stainless steel under creep-fatigue loading with elastic follow-up
    Isobe, N
    Sakurai, S
    Yorikawa, M
    Imou, K
    Takahashi, Y
    INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING, 2000, 77 (13) : 817 - 823
  • [50] A Novel Creep-Fatigue Life Prediction Model for P92 Steel on the Basis of Cyclic Strain Energy Density
    Ji, Dongmei
    Ren, Jianxing
    Zhang, Lai-Chang
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2016, 25 (11) : 4868 - 4874