Fatigue Debonding Three-dimensional Simulation with Cohesive Zone

被引:7
作者
Pirondi, A. [1 ]
Giuliese, G. [1 ]
Moroni, F. [2 ]
机构
[1] Univ Parma, Dipartimento Ingn Ind, Parco Area Sci 181-A, I-43124 Parma, Italy
[2] Univ Parma, Ctr Interdipartimentale SITEIA PARMA, I-43100 Parma, Italy
关键词
Cohesive zone; Fatigue; Finite-element analysis; MODEL; DELAMINATION; COMPOSITES; FRACTURE; DAMAGE; MECHANICS;
D O I
10.1080/00218464.2015.1127764
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The cohesive zone model (CZM) has found a wide acceptance as a tool for the simulation of debonding in adhesive joints. Recently, fatigue-devoted implementations of CZM have been proposed. In earlier works, the authors have developed a model of the cohesive zone able to correctly simulate the propagation of fatigue of two-dimensional (2D) defects in joints. The procedure has been implemented in the finite-element software (Abaqus (R)) using software-embedded subroutines. That model was then extended to 3D cracks with quasi-straight crack front, where G could be evaluated by contour-integral on slices along the crack front. Inspiring to the approach used by Xie and Biggers in the case of virtual crack extension technique, the aim of this work is to extend the fatigue crack growth evaluation to 3D cracks of general shape. The new procedure has been compared with the previously developed one in the case of planar, 3D cracks showing a good agreement. The evolution of a corner crack is also shown as a qualitative example of the descriptive potential of the new procedure.
引用
收藏
页码:553 / 571
页数:19
相关论文
共 29 条
[1]   A non-linear damage evolution model for mode II fatigue delamination onset and growth [J].
Allegri, G. ;
Wisnom, M. R. .
INTERNATIONAL JOURNAL OF FATIGUE, 2012, 43 :226-234
[2]   Modeling of the variability of fatigue crack growth using cohesive zone elements [J].
Beaurepaire, P. ;
Schueller, G. I. .
ENGINEERING FRACTURE MECHANICS, 2011, 78 (12) :2399-2413
[3]   Measurement of mixed-mode delamination fracture toughness of unidirectional glass/epoxy composites with mixed-mode bending apparatus [J].
Benzeggagh, ML ;
Kenane, M .
COMPOSITES SCIENCE AND TECHNOLOGY, 1996, 56 (04) :439-449
[4]   The use of a cohesive zone model to study the fracture of fibre composites and adhesively-bonded joints [J].
Blackman, BRK ;
Hadavinia, H ;
Kinloch, AJ ;
Williams, JG .
INTERNATIONAL JOURNAL OF FRACTURE, 2003, 119 (01) :25-46
[5]   Analysis of the mixed-mode end load split delamination test [J].
Blanco, N. ;
Gamstedt, E. K. ;
Costa, J. ;
Trias, D. .
COMPOSITE STRUCTURES, 2006, 76 (1-2) :14-20
[6]   Predicting the service-life of adhesively-bonded joints [J].
Curley, AJ ;
Hadavinia, H ;
Kinloch, AJ ;
Taylor, AC .
INTERNATIONAL JOURNAL OF FRACTURE, 2000, 103 (01) :41-69
[7]   NUMERICAL ANALYSIS OF CRACK PROPAGATION IN CYCLIC-LOADED STRUCTURES [J].
FORMAN, RG ;
KEARNEY, VE ;
ENGLE, RM .
JOURNAL OF BASIC ENGINEERING, 1967, 89 (03) :459-&
[8]   Cohesive zone length in numerical simulations of composite delamination [J].
Harper, Paul W. ;
Hallett, Stephen R. .
ENGINEERING FRACTURE MECHANICS, 2008, 75 (16) :4774-4792
[9]   A fatigue degradation law for cohesive interface elements - Development and application to composite materials [J].
Harper, Paul W. ;
Hallett, Stephen R. .
INTERNATIONAL JOURNAL OF FATIGUE, 2010, 32 (11) :1774-1787
[10]   Mechanics of materials: Top-down approaches to fracture [J].
Hutchinson, JW ;
Evans, AG .
ACTA MATERIALIA, 2000, 48 (01) :125-135