A locking-free selective smoothed finite element method using tetrahedral and triangular elements with adaptive mesh rezoning for large deformation problems
From MaRDI portal
Publication:2952525
DOI10.1002/nme.4684zbMath1352.74420OpenAlexW1938543924MaRDI QIDQ2952525
Publication date: 30 December 2016
Published in: International Journal for Numerical Methods in Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1002/nme.4684
finite strainlocking-freetetrahedral elementadaptive mesh rezoningselective smoothed finite element method (S-FEM)static implicit analysis
Finite element methods applied to problems in solid mechanics (74S05) Finite element, Rayleigh-Ritz and Galerkin methods for boundary value problems involving PDEs (65N30) Mesh generation, refinement, and adaptive methods for boundary value problems involving PDEs (65N50)
Related Items
An upwind vertex centred finite volume solver for Lagrangian solid dynamics, Selective Cell-Based Smoothed Finite Element Method Using 10-Node Tetrahedral Element with Radial Element Subdivision, A generalized beta finite element method with coupled smoothing techniques for solid mechanics, A smoothed finite element method for octree-based polyhedral meshes with large number of hanging nodes and irregular elements, Earthquake damage estimation of the koyna concrete gravity dam using explicit GFVM model considering fluid-structure interaction, A first order hyperbolic framework for large strain computational solid dynamics. II: Total Lagrangian compressible, nearly incompressible and truly incompressible elasticity, A cell-based smoothed finite element method for multi-body contact analysis within the bi-potential formulation, An upwind vertex centred finite volume algorithm for nearly and truly incompressible explicit fast solid dynamic applications: total and updated Lagrangian formulations, Polyhedral elements using an edge-based smoothed finite element method for nonlinear elastic deformations of compressible and nearly incompressible materials, A cell-based smoothed finite element method stabilized by implicit SUPG/SPGP/fractional step method for incompressible flow, An upwind cell centred total Lagrangian finite volume algorithm for nearly incompressible explicit fast solid dynamic applications, A total Lagrangian upwind smooth particle hydrodynamics algorithm for large strain explicit solid dynamics, A first order hyperbolic framework for large strain computational solid dynamics. III: Thermo-elasticity, A Stabilization Method of F-barES-FEM-T4 for Dynamic Explicit Analysis of Nearly Incompressible Materials, Smoothed finite element methods (S-FEM): an overview and recent developments, A unified-implementation of smoothed finite element method (UI-SFEM) for simulating biomechanical responses of multi-materials orthodontics, F-Bar Aided Edge-Based Smoothed Finite Element Method with 4-Node Tetrahedral Elements for Static Large Deformation Elastoplastic Problems, α-Finite Element Method for Frictionless and Frictional Contact Including Large Deformation, A new Jameson-Schmidt-Turkel smooth particle hydrodynamics algorithm for large strain explicit fast dynamics, Accurate Viscoelastic Large Deformation Analysis Using F-Bar Aided Edge-Based Smoothed Finite Element Method for 4-Node Tetrahedral Meshes (F-BarES-FEM-T4), Solution Bounds and Nearly Exact Solutions for 3D Nonlinear Problems of Large Deformation of Solids Using S-Fem, A Concept of Cell-Based Smoothed Finite Element Method Using 10-Node Tetrahedral Elements (CS-FEM-T10) for Large Deformation Problems of Nearly Incompressible Solids, An \(n\)-sided polygonal selective smoothed finite element method for nearly incompressible visco-hyperelastic soft materials
Uses Software
Cites Work
- Unnamed Item
- Metal forming analysis using the edge-based smoothed finite element method
- A node-based smoothed finite element method (NS-Fem) for upper bound solution to visco-elastoplastic analyses of solids using triangular and tetrahedral meshes
- A face-based smoothed finite element method (FS-FEM) for visco-elastoplastic analyses of 3D solids using tetrahedral mesh
- An edge-based smoothed finite element method for visco-elastoplastic analyses of 2D solids using triangular mesh
- ADDITIONAL PROPERTIES OF THE NODE-BASED SMOOTHED FINITE ELEMENT METHOD (NS-FEM) FOR SOLID MECHANICS PROBLEMS
- A theoretical study on the smoothed FEM (S-FEM) models: Properties, accuracy and convergence rates
- Adaptive analysis using the node-based smoothed finite element method (NS-FEM)
- An n-sided polygonal edge-based smoothed finite element method (nES-FEM) for solid mechanics
- Adaptive FEM computation of forming processes—Application to porous and non-porous materials
- Robust adaptive remeshing strategy for large deformation, transient impact simulations
- Localized remeshing techniques for three-dimensional metal forming simulations with linear tetrahedral elements
- A face-based smoothed finite element method (FS-FEM) for 3D linear and geometrically non-linear solid mechanics problems using 4-node tetrahedral elements
- A mesh re-zoning technique for finite element simulations of metal forming processes
- Automated metalforming modeling utilizing adaptive remeshing and evolving geometry
- Application of fully automatic remeshing to complex metal-forming analyses
- F‐bar‐based linear triangles and tetrahedra for finite strain analysis of nearly incompressible solids. Part I: formulation and benchmarking