A 3D ductile constitutive mixed-mode model of cohesive elements for the finite element analysis of adhesive joints

被引:13
|
作者
Anyfantis, Konstantinos N. [1 ]
Tsouvalis, Nicholas G. [2 ]
机构
[1] Tech Univ Denmark, Dept Wind Energy, DK-2800 Lyngby, Denmark
[2] Natl Tech Univ Athens, Shipbldg Technol Lab, Sch Naval Architecture & Marine Engn, GR-10682 Athens, Greece
关键词
mixed-mode fracture; ductile adhesives; cohesive elements; cohesive zone modeling; finite element analysis; BONDED JOINTS; II FRACTURE; CRACK; ZONE; BEHAVIOR; SINGLE; TOUGHNESS; STRENGTH; LAW;
D O I
10.1080/01694243.2012.735900
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
In this paper, a new tractionseparation law is developed that represents the constitutive relation of ductile adhesive materials in Modes I, II, and III. The proposed tractionseparation laws model the elastic, plastic, and failure material response of a ductile adhesive layer. Initially, the independent-mode proposed laws (loading and fracture in Modes I, II, and III) are mathematically described and then introduced in a developed formulation that simulates the interdependency of the mixed-mode coupled laws. Under mixed-mode conditions, damage initiation is predicted with the quadratic stress criterion and damage propagation with the linear energetic fracture criterion. For verification and validation purposes of the proposed laws and mixed-mode model, steel adherends have been adhesively bonded with a structural ductile adhesive material in order to fabricate a series of single and double strap adhesive joint configurations. The specimens have been tested under uni-axial quasi-static load and the respective force and displacement loading history have been recorded. Corresponding numerical and experimental results have been compared for each joint case, respectively. Additionally, the developed stress fields (peel, in-plane, and out-of-plane shear) are presented as they evolve during the loading of both joint cases.
引用
收藏
页码:1146 / 1178
页数:33
相关论文
共 50 条
  • [31] A mixed-mode cohesive-zone model accounting for finite dilation and asperity degradation
    Serpieri, Roberto
    Alfano, Giulio
    Sacco, Elio
    INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2015, 67-68 : 102 - 115
  • [32] FINITE ELEMENT ANALYSIS OF MIXED-MODE THERMOELASTIC FRACTURE PROBLEMS.
    Chen, Wen-Hwa
    Ting, Kuen
    1600, (90):
  • [33] Numerical analysis of mixed-mode fatigue crack growth of adhesive joints nusing CZM
    Rocha, A. V. M.
    Akhavan-Safar, A.
    Carbas, R.
    Marques, E. A. S.
    Goyal, R.
    El-zein, M.
    da Silva, L. F. M.
    THEORETICAL AND APPLIED FRACTURE MECHANICS, 2020, 106
  • [34] Numerical analysis of mixed-mode fatigue crack growth of adhesive joints using CZM
    Rocha, A.V.M.
    Akhavan-Safar, A.
    Carbas, R.
    Marques, E.A.S.
    Goyal, R.
    El-zein, M.
    da Silva, L.F.M.
    Theoretical and Applied Fracture Mechanics, 2020, 106
  • [35] FINITE-ELEMENT ANALYSIS OF MIXED-MODE THERMOELASTIC FRACTURE PROBLEMS
    CHEN, WH
    TING, K
    NUCLEAR ENGINEERING AND DESIGN, 1985, 90 (01) : 55 - 65
  • [36] A robust and efficient 3D mixed-mode cohesive interface model for predicting the debonding failure in FRP strengthened concrete structures
    Nie, Yu
    Xie, Tian -Yu
    Zhao, Xin-Yu
    COMPOSITE STRUCTURES, 2023, 324
  • [37] Mixed-mode delamination in 2D layered beam finite elements
    Skec, Leo
    Jelenic, Gordan
    Lustig, Nikola
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 2015, 104 (08) : 767 - 788
  • [38] 3D Finite element analysis of end - plate steel joints
    Drosopoulos, G. A.
    Stavroulakis, G. E.
    Abdalla, K. M.
    STEEL AND COMPOSITE STRUCTURES, 2012, 12 (02): : 93 - 115
  • [39] A Novel Singular Finite Element on Mixed-Mode Dugdale Model Based Crack
    Yao, W. A.
    Hu, X. F.
    JOURNAL OF ENGINEERING MATERIALS AND TECHNOLOGY-TRANSACTIONS OF THE ASME, 2012, 134 (02):
  • [40] Study on the abscission mechanical model of the peach fruit-branch system based on a mixed-mode cohesive zone model and finite element method
    Song, Hao
    Wang, Kunyu
    Wang, Yajuan
    Zhang, Xuemin
    COMPUTERS AND ELECTRONICS IN AGRICULTURE, 2025, 231