Fatigue crack growth of a double fillet weld

被引:8
|
作者
Benachour, M.
Benguediab, M.
Hadjoui, A.
Hadioui, F.
Benachour, N.
机构
[1] Automatic Laboratory, Faculty of Engineering Sciences, University of Tlemcen
[2] Faculty of Engineering Sciences, University of SidiBel Abbes
关键词
Fatigue; Weld; Semi-elliptical crack; Aluminum alloys; Load ratio; Aluminum alloy;
D O I
10.1016/j.commatsci.2008.04.015
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The welded structures have a broad applicability, steel constructions, car industry, aeronautical, marine, pipelines, etc. These structures are generally subjected to cyclic requests. A simple existing defect after welding can generate a catastrophic fracture. This work studies the fatigue crack growth of a double fillet weld with the existence of a semi-elliptical crack. Two types of aluminum alloys are studied with knowing the alloy 2024 T351 and the 7075 T6. Crack growth analysis uses linear elastic fracture mechanics and related crack growth material properties to determine how fast a crack or crack-like defect will grow. Fracture mechanics is based on the concept of stress intensity (K) that describes the magnitude of both the stress and strain fields around a crack. It is computed from the stress range (Delta sigma), and crack size (a) and crack shape (beta). The effect on the fatigue life of the geometrical parameters of the crack (a/c ratio), the angle of inclination of the weld bead and the level of loading are studied. In order to predict the fatigue behavior of the welded structure, a constant amplitude loading is applied where the influence of the load ratio over the fatigue life is presented. A comparative study of fatigue crack growth of the cited aluminum alloys are detailed in order to show the effect of several parameters. (C) 2008 Elsevier B.V. All rights reserved.
引用
收藏
页码:489 / 495
页数:7
相关论文
共 50 条
  • [41] Fatigue Assessment of Weld Ends Considering Crack Initiation and Crack Propagation
    Waterkotte, Ralf
    Baumgartner, Joerg
    Ai, Qingfeng
    MATERIALS TESTING, 2013, 55 (7-8) : 529 - 536
  • [42] Fatigue assessment of fillet weld in steel bridge towers considering corrosion effects
    Jiang, Chao
    Xiong, Wen
    Cai, C. S.
    Zhou, Linyun
    Zhu, Yichen
    ENGINEERING FAILURE ANALYSIS, 2023, 143
  • [43] Analysis on the location of fracture section in the fillet weld of double lap joint
    Ai, Zhaoliang
    Li, Yajiang
    Jia, Zhixin
    Ai, Dongmei
    Sun, Wenxian
    Modelling, simulation & control. B, 1995, 59 (1-3): : 27 - 36
  • [44] EFFECT OF POST-WELD TREATMENTS ON FATIGUE AT FILLET WELDED ATTACHMENTS.
    Sharp, R.P.
    1978, (78016):
  • [45] Influences of post weld heat treatment on fatigue crack growth behavior of TIG welding of 6013 T4 aluminum alloy joint (Part 1. Fatigue crack growth across the weld metal)
    Gunawan Dwi Haryadi
    Seon Jin Kim
    Journal of Mechanical Science and Technology, 2011, 25 : 2161 - 2170
  • [46] Influences of post weld heat treatment on fatigue crack growth behavior of TIG welding of 6013 T4 aluminum alloy joint (Part 1. Fatigue crack growth across the weld metal)
    Haryadi, Gunawan Dwi
    Kim, Seon Jin
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2011, 25 (09) : 2161 - 2170
  • [47] Fatigue crack growth in double cantilever beam specimen with an adhesive layer
    Abou-Hamda, MM
    Megahed, MM
    Hammouda, MMI
    ENGINEERING FRACTURE MECHANICS, 1998, 60 (5-6) : 605 - 614
  • [48] Fatigue crack growth in double cantilever beam specimen with an adhesive layer
    Cairo Univ, Cairo, Egypt
    Eng Fract Mech, 5-6 (605-614):
  • [49] Fatigue crack growth rates on the weld metal of high heat input submerged arc welding
    Soares Barbosa, Luiz Henrique
    Modenesi, Paulo Jose
    Godefroid, Leonardo Barbosa
    Arias, Ariel Rodriguez
    INTERNATIONAL JOURNAL OF FATIGUE, 2019, 119 : 43 - 51
  • [50] Investigating the spot weld fatigue crack growth proces using X-ray imaging
    Wang, G
    Barkey, ME
    WELDING JOURNAL, 2006, 85 (04) : 84S - 90S