About the use of standard integration schemes for X-FEM in solid mechanics plasticity
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Publication:1669325
DOI10.1016/j.cma.2014.09.028zbMath1423.74154OpenAlexW2037018743MaRDI QIDQ1669325
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.2014.09.028
Small-strain, rate-independent theories of plasticity (including rigid-plastic and elasto-plastic materials) (74C05) Finite element methods applied to problems in solid mechanics (74S05) Finite element, Rayleigh-Ritz and Galerkin methods for boundary value problems involving PDEs (65N30)
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- Large sliding contact along branched discontinuities with X-FEM
- Numerical integration of polynomials and discontinuous functions on irregular convex polygons and polyhedrons
- Generalized Gaussian quadrature rules for discontinuities and crack singularities in the extended finite element method
- Studied X-FEM enrichment to handle material interfaces with higher order finite element
- An adaptive \(hp\)-version of the multilevel particle-partition of unity method
- Transfer operators for evolving meshes in small strain elasto-plasticity
- Multi-dimensional quadrature of singular and discontinuous functions
- The design and analysis of the generalized finite element method
- Quadrature schemes for arbitrary convex/concave volumes and integration of weak form in enriched partition of unity methods
- A finite element method for the simulation of strong and weak discontinuities in solid mechanics
- Appropriate extended functions for X-FEM simulation of plastic fracture mechanics
- Three-dimensional integration strategies of singular functions introduced by the XFEM in the LEFM
- Improving the accuracy of XFEM crack tip fields using higher order quadrature and statically admissible stress recovery
- On the elimination of quadrature subcells for discontinuous functions in the eXtended Finite-Element Method
- A method for dynamic crack and shear band propagation with phantom nodes
- An X-FEM approach for large sliding contact along discontinuities
- Level set X-FEM non-matching meshes: application to dynamic crack propagation in elastic–plastic media
- Fast integration and weight function blending in the extended finite element method
- Quadrature rules for triangular and tetrahedral elements with generalized functions
- Gmsh: A 3-D finite element mesh generator with built-in pre- and post-processing facilities
- High degree efficient symmetrical Gaussian quadrature rules for the triangle
- Quadrature Over a Pyramid or Cube of Integrands with a Singularity at a Vertex
- Moderate Degree Symmetric Quadrature Rules for the Triangle
- Quadrature Rules for Regions Having Regular Hexagonal Symmetry
- Elastic crack growth in finite elements with minimal remeshing
- Arbitrary branched and intersecting cracks with the extended finite element method
- Non-planar 3D crack growth by the extended finite element and level sets-Part I: Mechanical model
- A finite element method for crack growth without remeshing
- Generalized Gaussian quadrature rules on arbitrary polygons
- High-order extended finite element method for cracked domains
- Modeling holes and inclusions by level sets in the extended finite element method
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