Modeling and simulation of kinked cracks by virtual node XFEM
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Publication:1667521
DOI10.1016/j.cma.2014.10.019zbMath1423.74834OpenAlexW2016505322MaRDI QIDQ1667521
Publication date: 30 August 2018
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cma.2014.10.019
stress intensity factorsdiscontinuitiestransition elementsvirtual node XFEMvirtual split element (VSE)virtual tip element (VTE)
Related Items (11)
XFEM‐based element subscale refinement for detailed representation of crack propagation in large‐scale analyses ⋮ An adaptively refined XFEM with virtual node polygonal elements for dynamic crack problems ⋮ An adapting cohesive approach for crack-healing analysis in SMA fiber-reinforced composites ⋮ Structural fatigue life prediction considering model uncertainties through a novel digital twin-driven approach ⋮ The enhanced extended finite element method for the propagation of complex branched cracks ⋮ Improved XFEM for multiple crack analysis: accurate and efficient implementations for stress intensity factors ⋮ An extended consecutive-interpolation quadrilateral element (XCQ4) applied to linear elastic fracture mechanics ⋮ Ensemble learning for remaining fatigue life prediction of structures with stochastic parameters: a data-driven approach ⋮ A novel multi-grid based reanalysis approach for efficient prediction of fatigue crack propagation ⋮ Transgranular fracturing of crystalline rocks and its influence on rock strengths: insights from a grain-scale continuum-discontinuum approach ⋮ 3-D local mesh refinement XFEM with variable-node hexahedron elements for extraction of stress intensity factors of straight and curved planar cracks
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