Modelling of localized ductile fracture with volumetric locking-free tetrahedral elements
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Publication:6496291
DOI10.1002/NME.6323MaRDI QIDQ6496291
Yanjie Xu, Unnamed Author, Leong Hien Poh
Publication date: 3 May 2024
Published in: International Journal for Numerical Methods in Engineering (Search for Journal in Brave)
strain localizationductile fracturefinite deformationtetrahedral elementgradient enhancementmixed field method
Fracture and damage (74Rxx) Numerical and other methods in solid mechanics (74Sxx) Plastic materials, materials of stress-rate and internal-variable type (74Cxx)
Cites Work
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- A simplified implementation of a gradient-enhanced damage model with transient length scale effects
- Variational and projection methods for the volume constraint in finite deformation elasto-plasticity
- Numerical simulation of ductile fracture with the Rousselier constitutive law
- Numerical implementation and assessment of a phenomenological nonlocal model of ductile rupture
- Associative coupled thermoplasticity at finite strains: Formulation, numerical analysis and implementation
- Mixed finite element methods - reduced and selective integration techniques: a unification of concepts
- Finite element analysis of incompressible viscous flows by the penalty function formulation
- Strain-based transient-gradient damage model for failure analyses
- Design of simple low order finite elements for large strain analysis of nearly incompressible solids
- From continuous to discontinuous failure in a gradient-enhanced continuum damage model.
- Phenomenological nonlocal approaches based on implicit gradient-enhanced damage
- A nonlocal triaxiality and shear dependent continuum damage model for finite strain elastoplasticity
- On numerically accurate finite element solutions in the fully plastic range
- A new algorithmic approach treating nonlocal effects at finite rate-independent deformation using the Rousselier damage model.
- A discontinuous Galerkin formulation for a strain gradient-dependent damage model
- Error-bounds for finite element method
- A triangular finite element with local remeshing for the large strain analysis of axisymmetric solids
- Displacement/pressure mixed interpolation in the method of finite spheres
- Suitability of three-dimensional finite elements for modelling material incompressibility using exact integration
- Finite strain, finite rotation quadratic tetrahedral element for the combined finite-discrete element method
- Discrete crack modelling of ductile fracture driven by non-local softening plasticity
- A finite element formulation for nonlinear incompressible elastic and inelastic analysis
- Generalization of selective integration procedures to anisotropic and nonlinear media
- Strongly non‐local gradient‐enhanced finite strain elastoplasticity
- An assessment of the average nodal volume formulation for the analysis of nearly incompressible solids under finite strains
- Formulation and computation of geometrically non-linear gradient damage
- A class of mixed assumed strain methods and the method of incompatible modes
- Nonlinear regularization operators as derived from the micromorphic approach to gradient elasticity, viscoplasticity and damage
- F‐bar‐based linear triangles and tetrahedra for finite strain analysis of nearly incompressible solids. Part I: formulation and benchmarking
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