ANALYSIS OF FATIGUE-STRENGTH ON NON-LOAD-CARRYING AND LOAD-CARRYING FILLET WELDED-JOINTS

被引:5
|
作者
LIE, ST
机构
[1] School of Civil and Structural Engineering, Nanyang Technological University
来源
关键词
D O I
10.1243/03093247V294243
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
An attempt has been made to study, theoretically, the difference in the fatigue behaviour of non-load-carrying and load-carrying fillet welded cruciform joints. In the former case, the pre-existing flaws produced during the welding process will always propagate from the weld toe. Accurate stress analysis using the boundary element method on the load-carrying fillet welded cruciform joints shows that the weld throat, h, should not be less than 1.414T, or the weld leg length, w, should not be less than 2.0T, where T is the main plate thickness, for the cracks to initiate from the weld toe. Furthermore, the values of M(k), the correction factor to to take into account the presence of the weld, are found to decrease when the weld size is increased for the load-carrying fillet welded joints. The Paris crack propagation law is then computed numerically to obtain the S/N (signal-to-noise) curves for the two welded joints. The non-load-carrying fillet welded joints give 5 per cent higher fatigue life than the load-carrying ones for an applied stress range of 100 N/mm2.
引用
收藏
页码:243 / 255
页数:13
相关论文
共 50 条
  • [1] Fatigue analysis of non-load-carrying fillet welded cruciform joints
    Nykanen, T.
    Marquis, G.
    Bjork, T.
    [J]. ENGINEERING FRACTURE MECHANICS, 2007, 74 (03) : 399 - 415
  • [2] FATIGUE-STRENGTH OF NON-LOAD-CARRYING FILLET WELDED-JOINTS - EFFECTS OF WELD RESIDUAL-STRESSES AND STRESS-CONCENTRATION
    TAKAHASHI, I
    YOSHII, T
    IIDAKA, H
    FUJII, E
    MATSUOKA, K
    [J]. FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 1993, 16 (01) : 37 - 51
  • [3] FATIGUE-STRENGTH OF NON-LOAD-CARRYING CRUCIFORM WELDED-JOINTS BY A TEST MAINTAINING MAXIMUM STRESS AT YIELD STRENGTH
    OHTA, A
    MATSUOKA, K
    SUZUKI, N
    MAEDA, Y
    [J]. ENGINEERING FRACTURE MECHANICS, 1994, 49 (04) : 639 - 645
  • [4] Influence of residual stress on fatigue strength of non-load-carrying fillet welded joints
    Matsuoka, Kazuyoshi
    Takahashi, Ichihiko
    Yoshii, Tokuharu
    Fujii, Eisuki
    [J]. Transactions of the Japan Welding Society, 1993, 24 (01): : 70 - 77
  • [5] Fatigue strength of longitudinal non-load-carrying welded joints
    CETIM, Senlis, France
    [J]. Weld World Soudage Monde, 4 (298-313):
  • [6] A fatigue strength evaluation method for load-carrying fillet welded cruciform joints
    Kainuma, Shigenobu
    Mori, Takeshi
    [J]. INTERNATIONAL JOURNAL OF FATIGUE, 2006, 28 (08) : 864 - 872
  • [7] Experimental and numerical investigation on fatigue performance of non-load-carrying fillet welded joints
    Zong, Liang
    Shi, Gang
    Wang, Yuan-Qing
    Li, Zhong-Xian
    Ding, Yang
    [J]. JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH, 2017, 130 : 193 - 201
  • [8] Fatigue strength of load-carrying type and non load-carrying type fillet welded joints used austenitic stainless steel (fatigue strength effected by corrosive environment)
    Iida C.
    Mimura H.
    [J]. Journal of Structural and Construction Engineering, 2010, 75 (647): : 223 - 229
  • [9] On the fatigue crack initiation point of load-carrying fillet welded joints
    Dong, Y.
    Guedes Soares, C.
    [J]. TOWARDS GREEN MARINE TECHNOLOGY AND TRANSPORT, 2015, : 407 - 416
  • [10] Effect of weld geometry on the fatigue life of non-load-carrying fillet welded cruciform joints
    Lee, Chin-Hyung
    Chang, Kyong-Ho
    Jang, Gab-Chul
    Lee, Chan-Young
    [J]. ENGINEERING FAILURE ANALYSIS, 2009, 16 (03) : 849 - 855