Computational modeling of mixed-mode fatigue crack growth using extended finite element methods

被引:0
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作者
Yangjian Xu
Huang Yuan
机构
[1] University of Wuppertal,Department of Mechanical Engineering
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Mixed-mode fatigue crack propagation; Extended finite element method; Cyclic cohesive zone model; Boundary layer formulation;
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摘要
The extended finite element method (XFEM) combined with a cyclic cohesive zone model (CCZM) is discussed and implemented for analysis of fatigue crack propagation under mixed-mode loading conditions. Fatigue damage in elastic-plastic materials is described by a damage evolution equation in the cohesive zone model. Both the computational implementation and the CCZM are investigated based on the modified boundary layer formulation under mixed-mode loading conditions. Computational results confirm that the maximum principal stress criterion gives accurate predictions of crack direction in comparison with known experiments. Further popular multi-axial fatigue criteria are compared and discussed. Computations show that the Findley criterion agrees with tensile stress dominant failure and deviates from experiments for shear failure. Furthermore, the crack propagation rate under mixed mode loading has been investigated systematically. It is confirmed that the CCZM can agree with experiments.
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页码:151 / 165
页数:14
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