Low-cycle fatigue crack growth in brittle materials: adaptive phase-field modeling with variable-node elements
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Publication:6497158
DOI10.1016/J.CMA.2024.116917MaRDI QIDQ6497158
Junlei Ding, Hirshikesh, Tian Tang Yu, Sundararajan Natarajan, Tiancheng Zhang
Publication date: 6 May 2024
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
finite element methodbrittle fractureadaptive mesh refinementphase field methodlow-cycle fatigue fracturevariable node elements
Cites Work
- SGBEM modeling of fatigue crack growth in particulate composites
- Regularized variational theories of fracture: a unified approach
- Fatigue crack propagation of multiple coplanar cracks with the coupled extended finite element/fast marching method
- A phase field model for rate-independent crack propagation: robust algorithmic implementation based on operator splits
- A phase-field description of dynamic brittle fracture
- Numerical experiments in revisited brittle fracture
- Numerical simulation of fatigue crack growth in pressurized shells
- A primal-dual active set method and predictor-corrector mesh adaptivity for computing fracture propagation using a phase-field approach
- Stochastic fatigue crack growth simulation of interfacial crack in bi-layered FGMs using XIGA
- Revisiting brittle fracture as an energy minimization problem
- Accelerating fatigue simulations of a phase-field damage model for rubber
- An adaptive edge-based smoothed finite element method (ES-FEM) for phase-field modeling of fractures at large deformations
- A generalised phase field model for fatigue crack growth in elastic-plastic solids with an efficient monolithic solver
- A dynamic description of material brittle failure using a hybrid phase-field model enhanced by adaptive isogeometric analysis
- A framework to model the fatigue behavior of brittle materials based on a variational phase-field approach
- A non-isothermal thermodynamically consistent phase field framework for structural damage and fatigue
- A phase-field model for fatigue crack growth
- An adaptive mesh refinement algorithm for phase-field fracture models: application to brittle, cohesive, and dynamic fracture
- A phase field model of dynamic fracture: Robust field updates for the analysis of complex crack patterns
- Thermodynamically consistent phase-field models of fracture: Variational principles and multi-field FE implementations
- An acceleration scheme for the phase field fatigue fracture simulation with a concurrent temporal homogenization method
- An adaptive dynamic phase-field method using the variable-node elements for cohesive dynamic fracture
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