Study of load history effects on the high cycle fatigue properties of high-strength low-alloy steel from self-heating measurements

被引:2
|
作者
Louge, Julien [1 ,2 ]
Doudard, Cedric [1 ]
Calloch, Sylvain [1 ]
Weber, Bastien [2 ]
机构
[1] ENSTA Bretagne, Inst Rech Dupuy Lome FRE 3744, UBS, UBBO,ENIB, 2 Rue Francois Verny, F-29806 Brest 9, France
[2] ArcelorMittal Maizieres Res, Voie Romaine, F-57283 Maizieres Les Metz, France
关键词
D O I
10.1051/matecconf/201816514016
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
In the context of high cycle fatigue (HCF), the experimental characterization of the fatigue properties is often performed by using specimens in a virgin state (i.e., without preliminary loading), and with a constant stress amplitude for each specimen. However, the load history applied to a real structure is more complex and the fatigue life prediction remains a difficult task because of the time dedicated to the classical fatigue tests (i.e., the specimen is loaded until failure) and the dispersion of fatigue lives. The load history effects on the HCF properties is characterized using an alternative method: self-heating measurements under cyclic loadings. This method is based on the observation of the mean steady state temperature evolution of a specimen under a successive series of cyclic loadings with increasing stress amplitude for each loading series. A probabilistic two-scale model was developed from the self-heating method able to predict HCF properties. Some self-heating tests are performed to study the influence of a load history effects. It seems that the plasticity is the most influential factor. So, the evolution of the plasticity is observed at the surface of the material under cyclic loading. There is a significant evolution in function of the plastic pre-strain.
引用
收藏
页数:7
相关论文
共 50 条
  • [1] Self-heating measurements under cyclic loading to identify history effects on HCF properties of high-strength low-alloy steel: Part II-Modeling
    Louge, Julien
    Moyne, Sylvain
    Doudard, Cedric
    Calloch, Sylvain
    Weber, Bastien
    Munier, Remi
    [J]. FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2022, 45 (12) : 3524 - 3534
  • [2] LOW-CYCLE FATIGUE BEHAVIOR OF A LOW-ALLOY HIGH-STRENGTH STEEL
    SINGH, V
    RAJU, PVSS
    NAMBOODHIRI, TKG
    RAO, PR
    [J]. INTERNATIONAL JOURNAL OF FATIGUE, 1990, 12 (04) : 289 - 292
  • [3] Self-heating measurements under cyclic loading to identify history effects on HCF properties of high-strength low-alloy steel: Part I-Experimental investigations
    Louge, Julien
    Moyne, Sylvain
    Doudard, Cedric
    Calloch, Sylvain
    Weber, Bastien
    Munier, Remi
    [J]. FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2023, 46 (01) : 171 - 181
  • [4] FATIGUE FRACTURE IN A HIGH-STRENGTH LOW-ALLOY STEEL
    THOMPSON, KR
    ARAKI, T
    UCHIYAMA, I
    [J]. JOURNAL OF THE IRON AND STEEL INSTITUTE, 1969, 207 : 1624 - +
  • [5] HIGH STRAIN FATIGUE BEHAVIOR OF A HIGH-STRENGTH LOW-ALLOY STEEL
    GARG, SK
    SINGH, V
    RAO, PR
    [J]. SCRIPTA METALLURGICA, 1977, 11 (07): : 593 - 596
  • [6] FATIGUE CRACK NUCLEATION IN A HIGH-STRENGTH LOW-ALLOY STEEL
    BOETTNER, RC
    [J]. TRANSACTIONS OF THE METALLURGICAL SOCIETY OF AIME, 1967, 239 (07): : 1030 - &
  • [7] STEEL VARIABILITY EFFECTS ON LOW-CYCLE FATIGUE BEHAVIOR OF A SINGLE GRADE OF HIGH-STRENGTH LOW-ALLOY STEEL
    AICHBHAUMIK, D
    [J]. METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1979, 10 (03): : 269 - 278
  • [8] Residual Strength Degradation Model for Low-Alloy Steel in High Cycle Fatigue Load
    Wang, Na
    Xie, Liyang
    Song, Wanli
    Cho, Chongdu
    [J]. MATERIALS AND PRODUCT TECHNOLOGIES, 2010, 118-120 : 474 - +
  • [9] Fatigue life assessment of high-strength, low-alloy steel at high frequency
    Marines-Garcia, Israel
    Galvan-Montiel, Damaris
    Bathias, Claude
    [J]. ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING, 2008, 33 (1B) : 237 - 247
  • [10] Fatigue fracture behavior of high-strength low-alloy steel for flexible marine riser in the high cycle fatigue regime
    Zhang, Dazheng
    Gao, Xiuhua
    Wang, Mingming
    Li, Weijuan
    Guo, Jing
    Teng, Yingxue
    Zhang, Wanshun
    [J]. MATERIALS RESEARCH EXPRESS, 2022, 9 (07)