Single angle steel member damage under static and fatigue axial tension loads

被引:1
|
作者
Sayed, Ahmed M. [1 ,2 ]
机构
[1] Assiut Univ, Coll Engn, Dept Civil Engn, Assiut 71511, Egypt
[2] Majmaah Univ, Coll Engn, Dept Civil & Environm Engn, Al Majmaah 11952, Saudi Arabia
关键词
Steel damage; Single angle; Unconnected leg; Tension load; Fatigue; S; N relationship; HIGH-CYCLE FATIGUE; NUMERICAL-ANALYSIS; SHEAR LAG; CARBON STEEL; BEHAVIOR; CAPACITY; SECTIONS; DESIGN; RESISTANCE; STRENGTH;
D O I
10.1016/j.istruc.2023.04.074
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Sections of steel elements are subject to damage owing to factors such as sudden loads, tearing, or corrosion. This affects the efficiency of the steel element in terms of its load capacity or number of load cycles when subjected to fatigue load. Experimental tests were performed on five specimens of single-angle sections with various degrees of damage to the unconnected leg in the middle of the element length under static load. A finite element (FE) simulation was performed on 25 specimens with the same amount of damage as in the experimental tests under static and fatigue loads. The maximum load capacity and corresponding elongation under static load were measured in the FE simulation specimens and compared with the results. The results proved the high accuracy of the FE modeling of steel elements with damage to the unconnected leg of a single-angle section. For the section with damage to a depth of 80% of the depth of the unconnected angle leg, the maximum load capacity decreased by 67.5%. Damage also affected the number of load cycles. The percentage of decrease did not exceed 5% with damage up to 40% of the depth of the unconnected leg, but it increased to 57% with damage at 80% of the depth. It is therefore important to use the stress concentration factor when calculating the number of load cycles in damaged sections.
引用
收藏
页码:149 / 159
页数:11
相关论文
共 50 条
  • [21] Numerical Modelling of Damage Progression in Single-fiber Composite under Axial Tension
    Yang, Dongmin
    Sheng, Yong
    Ye, Jianqiao
    Tan, Yuanqiang
    Jiang, Shengqiang
    COMPUTATIONAL MATERIALS SCIENCE, PTS 1-3, 2011, 268-270 : 280 - +
  • [22] Shear Lag Effect in Welded Single Angle Tension Member
    Dhanuskar, Jagdish R.
    Gupta, Laxmikant M.
    INTERNATIONAL JOURNAL OF STEEL STRUCTURES, 2021, 21 (03) : 935 - 949
  • [23] Shear Lag Effect in Welded Single Angle Tension Member
    Jagdish R. Dhanuskar
    Laxmikant M. Gupta
    International Journal of Steel Structures, 2021, 21 : 935 - 949
  • [24] Tapered laminates under static and fatigue tension loading
    Meirinhos, G
    Rocker, J
    Cabanac, JP
    Barrau, JJ
    COMPOSITES SCIENCE AND TECHNOLOGY, 2002, 62 (04) : 597 - 603
  • [25] Fatigue and damage analysis on aeronautical CFRP elements under tension and bending loads: Two cases of study
    Panella, Francesco W.
    Pirinu, Alessandra
    INTERNATIONAL JOURNAL OF FATIGUE, 2021, 152
  • [26] Fully coupled fatigue damage analysis of welded steel bridge member under traffic loading
    Taiquan Zhou
    Yuan Hua
    Tommy Hung Tin Chan
    ADVANCES IN FRACTURE AND DAMAGE MECHANICS VI, 2007, 348-349 : 761 - +
  • [27] Fatigue and fracture analysis of a seven-wire stainless steel strand under axial and bending loads
    Erena, Diego
    Vazquez Valeo, Jesus
    Navarro, Carlos
    Dominguez, Jaime
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2020, 43 (01) : 149 - 161
  • [28] FATIGUE BEHAVIOR OF CIRCUMFERENTIALLY NOTCHED ROUND BARS OF AUSTENITIC STAINLESS STEEL UNDER TORSIONAL AND AXIAL LOADS
    Itatani, Masao
    Tanaka, Keisuke
    Ohkawa, Isao
    Yamada, Takehisa
    Saito, Toshiyuki
    PROCEEDINGS OF THE ASME PRESSURE VESSELS AND PIPING CONFERENCE 2010, VOL 1: CODES AND STANDARDS, 2010, : 423 - 431
  • [29] THEORY OF HIGH-TEMPERATURE INTERCRYSTALLINE FRACTURE UNDER STATIC OR FATIGUE LOADS, WITH OR WITHOUT IRRADIATION DAMAGE
    WEERTMAN, J
    METALLURGICAL TRANSACTIONS, 1974, 5 (08): : 1743 - 1751
  • [30] Energy evolution and damage constitutive model of anchored jointed rock masses under static and fatigue loads
    Li, Yongqi
    Huang, Da
    He, Jun
    INTERNATIONAL JOURNAL OF FATIGUE, 2023, 167