Is stored energy density the primary meso-scale mechanistic driver for fatigue crack nucleation?

被引:152
|
作者
Chen, Bo [1 ]
Jiang, Jun [1 ,2 ]
Dunne, Fionn P. E. [1 ,2 ]
机构
[1] Imperial Coll, Dept Mat, London SW7 2AZ, England
[2] Imperial Coll, Dept Mech Engn, London SW7 2AZ, England
基金
英国工程与自然科学研究理事会;
关键词
PM nickel alloys; Crystal plasticity; Fatigue; BACKSCATTER DIFFRACTION ANALYSIS; CRYSTAL PLASTICITY; NI SUPERALLOY; INITIATION; INCLUSIONS; DEFORMATION; FRACTURE; GROWTH; MODEL; SENSITIVITY;
D O I
10.1016/j.ijplas.2017.11.005
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Fatigue crack nucleation in a powder metallurgy produced nickel alloy containing a non-metallic inclusion has been investigated through integrated small-scale bend testing, quantitative characterisation (HR-DIC and HR-EBSD) and computational crystal plasticity which replicated the polycrystal morphology, texture and loading. Multiple crack nucleations occurred at the nickel matrix-inclusion interface and both nucleation and growth were found to be crystallographic with highest slip system activation driving crack direction. Local slip accumulation was found to be a necessary condition for crack nucleation, and that in addition, local stress and density of geometrically necessary dislocations are involved. Fatemi-Socie and dissipated energy were also assessed against the experimental data, showing generally good, but not complete agreement. However, the local stored energy density (of a Griffith-Stroh kind) identified all the crack nucleation sites as those giving the highest magnitudes of stored energy.
引用
收藏
页码:213 / 229
页数:17
相关论文
共 50 条
  • [41] The role of elastic anisotropy, length scale and crystallographic slip in fatigue crack nucleation
    Sweeney, C. A.
    Vorster, W.
    Leen, S. B.
    Sakurada, E.
    McHugh, P. E.
    Dunne, F. P. E.
    JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 2013, 61 (05) : 1224 - 1240
  • [42] MECHANISTIC ANALYSIS OF FATIGUE-CRACK INITIATION IN MEDIUM-DENSITY POLYETHYLENE
    SHOWAIB, E
    MOET, A
    JOURNAL OF MATERIALS SCIENCE, 1993, 28 (13) : 3617 - 3625
  • [43] A meso-scale approach to modelling stable dynamic crack propagation in glass under rate-dependent loading
    Crump, Timothy
    Mummery, Paul
    Jivkov, Andrey
    Tran, Van-Xuan
    21ST EUROPEAN CONFERENCE ON FRACTURE, (ECF21), 2016, 2 : 381 - 388
  • [44] Magnetic plucked meso-scale piezoelectric energy harvester for low-frequency rotational motion
    Chen, C. T.
    Su, W. J.
    Wu, W. J.
    Vasic, D.
    Costa, F.
    SMART MATERIALS AND STRUCTURES, 2021, 30 (10)
  • [45] Meso-scale structures of radiation belt/ring current detected by low-energy ions
    Swedish Institute of Space Physics, Box 812, S-98128 Kiruna, Sweden
    Adv Space Res, 2 (171-174):
  • [46] Meso-scale investigation of failure in the tensile splitting test: Size effect and fracture energy analysis
    Benkemoun, N.
    Poullain, Ph.
    Al Khazraji, H.
    Choinska, M.
    Khelidj, A.
    ENGINEERING FRACTURE MECHANICS, 2016, 168 : 242 - 259
  • [47] Low-density layer formation and "lifting force" effect at micro- and meso-scale levels
    Dmitriev, AI
    Zolnikov, KP
    Psakhie, SG
    Goldin, SV
    Panin, VE
    THEORETICAL AND APPLIED FRACTURE MECHANICS, 2005, 43 (03) : 324 - 334
  • [48] Experimental study and failure mechanism analysis at the meso-scale of the fatigue performance of a CFRP tendon novel composite anchorage
    Mei, Kuihua
    Li, Yu
    Wang, Yuanzhi
    Li, Xue
    Jia, Wenke
    Sun, Shengjiang
    STRUCTURES, 2023, 58
  • [49] A progressive damage model of textile composites on meso-scale using finite element method: Fatigue damage analysis
    Xu, J.
    Lomov, S. V.
    Verpoest, I.
    Daggumati, S.
    Van Paepegem, W.
    Degrieck, J.
    COMPUTERS & STRUCTURES, 2015, 152 : 96 - 112
  • [50] Conventional Meso-Scale and Time-Efficient Sub-Track-Scale Thermomechanical Model for Directed Energy Deposition
    Nain, Vaibhav
    Engel, Thierry
    Carin, Muriel
    Boisselier, Didier
    MATERIALS, 2022, 15 (12)