Influence of microstructures on fatigue crack initiation and propagation in low-carbon steel

被引:0
|
作者
Kitano, T
Tagawa, T
Aihara, S
Miyata, T
机构
关键词
low carbon steel; crack initiation; crack growth; threshold stress intensity factor range; crack closure; fatigue life; Stage I fatigue crack; Stage II fatigue crack;
D O I
暂无
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
The influence of microstructures on fatigue crack initiation and threshold behavior of crack growth in large fatigue crack was investigated using notched specimens and CT specimens. Three different microstructure of low carbon steels simulated heat affected zone of welds were prepared. The crack initiation behavior for each materials were also discussed from fractographic examination and in situ observation tests in SEM with notched fatigue spesimens. Bainitic microstructures showed higher threshold stress intensity factor renge for fatigue crack growth than ferritic microstructure. The difference in threshold level between microstructures tested would be mainly resulted from the crack closure, but the influence of microstructures on large fatigue crack growth could not be described only in terms of crack closure mechanism. On the other hand, the small crack region which occupied the most of fatigue life was affected by microstructures. Particularly, the effects of microstructure on the shape and growth of Stage I fatigue crack. The Stage I fatigue crack size is almost correspondent with the microstructural unit size, i.e grain size or lath packet size.
引用
收藏
页码:395 / 400
页数:6
相关论文
共 50 条
  • [41] Fatigue crack initiation on low-carbon steel pipes in a near-neutral-pH environment under potential control conditions
    Puiggali, M
    Rousserie, S
    Touzet, M
    [J]. CORROSION, 2002, 58 (11) : 961 - 970
  • [42] SHORT FATIGUE CRACK-GROWTH BEHAVIOR OF A LOW-CARBON STEEL UNDER CORROSION FATIGUE CONDITIONS
    AKID, R
    MILLER, KJ
    [J]. FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 1991, 14 (06) : 637 - 649
  • [43] Determining role of microstructure on crack arrest and propagation phenomenon in low-carbon microalloyed steel
    Wang, H. T.
    Tian, Y.
    Ye, Q. B.
    Misra, R. D. K.
    Wang, Z. D.
    Wang, G. D.
    [J]. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2019, 761
  • [44] TEMPERATURE DEPENDENCE OF FATIGUE CRACK GROWTH IN LOW-CARBON STEEL UNDER GASEOUS HYDROGEN
    Takakuwa, Osamu
    Ogawa, Yuhei
    Okazaki, Saburo
    Matsunaga, Hisao
    Matsuoka, Saburo
    [J]. PROCEEDINGS OF THE ASME PRESSURE VESSELS AND PIPING CONFERENCE, 2019, VOL 6B, 2019,
  • [45] THE EFFECTS OF WATER-VAPOR ON FATIGUE CRACK TIP PLASTICITY IN LOW-CARBON STEEL
    DAVIDSON, DL
    LANKFORD, J
    [J]. JOURNAL OF METALS, 1980, 32 (08): : 75 - 75
  • [46] EFFECTS OF NONMETALLIC INCLUSIONS AND MICROSTRUCTURES ON FATIGUE CRACK INITIATION AND PROPAGATION IN HIGH-STRENGTH CARBON-STEELS
    SHIH, T
    ARAKI, T
    [J]. TRANSACTIONS OF THE IRON AND STEEL INSTITUTE OF JAPAN, 1973, 13 (01) : 11 - 19
  • [47] THE EFFECTS OF STRESS RATIO AND GRAIN-SIZE ON NEAR-THRESHOLD FATIGUE CRACK-PROPAGATION IN LOW-CARBON STEEL
    NAKAI, Y
    TANAKA, K
    NAKANISHI, T
    [J]. ENGINEERING FRACTURE MECHANICS, 1981, 15 (3-4) : 291 - 302
  • [48] COMPARISON OF PLASTIC WORK OF FATIGUE CRACK-PROPAGATION IN LOW-CARBON STEEL MEASURED BY STRAIN-GAGES AND ELECTRON CHANNELING
    LIAW, PK
    FINE, ME
    DAVIDSON, DL
    [J]. FATIGUE OF ENGINEERING MATERIALS AND STRUCTURES, 1980, 3 (01): : 59 - 74
  • [49] Influence of Inhibitor Concentration on Corrosion Fatigue Crack Initiation and Propagation
    Zhengfu WANG
    Jin LI
    Jianqiu WANG and Wei KE(Corrosion Science Laboratory
    [J]. Journal of Materials Science & Technology, 1995, (01) : 67 - 70
  • [50] COMPARISON OF PLASTIC WORK ON FATIGUE CRACK-PROPAGATION IN LOW-CARBON STEEL MEASURED BY STRAIN-GAUGES AND ELECTRON CHANNELING
    LIAW, PK
    DAVIDSON, DL
    FINE, ME
    [J]. JOURNAL OF METALS, 1979, 31 (12): : 69 - 69