Three-dimensional variable-node elements based upon CS-FEM for elastic-plastic analysis
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- Type
- article
- Published
- 2015-10-01
- Cited by
- 26
- References
- 83
- OpenAlex
- https://openalex.org/W760024657
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:118499600
Keywords
Hyperelastic material, Finite element method, Elasticity (physics), Linear elasticity, Mixed finite element method
References
- Numerical Solution of Non-Isothermal Fluid Flows Using Local Radial Basis Functions (LRBF) Interpolation and a Velocity-Correction Method
- Lattice‐Boltzmann and meshless point collocation solvers for fluid flow and conjugate heat transfer
- Nonlinear Finite Elements for Continua and Structures
- A Node-Based Smoothed eXtended Finite Element Method (NS-XFEM) for Fracture Analysis
- Two-phase blood flow modeling and mass transport in the human aorta
- A framework for finite strain elastoplasticity based on maximum plastic dissipation and the multiplicative decomposition. part II: computational aspects
- Meshless methods: A review and computer implementation aspects
- A localized version of the method of Lagrange multipliers and its applications
- A smoothed finite element method for plate analysis
- A new computational approach to contact mechanics using variable‐node finite elements
- A saturated discrete particle model and characteristic‐based SPH method in granular materials
- Addressing volumetric locking and instabilities by selective integration in smoothed finite elements
- Modeling the natural convective flow of micropolar nanofluids
- Stabilized conforming nodal integration: exactness and variational justification
- On Smoothed Finite Element Methods
- A new partition of unity finite element free from the linear dependence problem and possessing the delta property
- A Phantom-Node Method with Edge-Based Strain Smoothing for Linear Elastic Fracture Mechanics
- A node-based smoothed finite element method (NS-FEM) for upper bound solution to visco-elastoplastic analyses of solids using triangular and tetrahedral meshes
- MLS‐based variable‐node elements compatible with quadratic interpolation. Part I: formulation and application for non‐matching meshes
- A stabilized finite point method for analysis of fluid mechanics problems
Cited by
- Node-to-node scheme for three-dimensional contact mechanics using polyhedral type variable-node elements
- Smoothed Finite Element Methods (S-FEM): An Overview and Recent Developments
- Polygonal type variable-node elements by means of the smoothed finite element method for analysis of two-dimensional fluid-solid interaction problems in viscous incompressible flows
- Problem modelowania połączeń pomiędzy obiektami zabytkowymi a elementami nowo projektowanymi
- Polyhedral elements using an edge-based smoothed finite element method for nonlinear elastic deformations of compressible and nearly incompressible materials
- Application of smoothed Finite element method in coupled hydro-mechanical analyses
- Periodic mesh generation and homogenization of inclusion-reinforced composites using an element-carving technique with local mesh refinement
- Polyhedral smoothed finite element method for thermoelastic analysis
- B-bar aided edge-based smoothed finite elements of hexahedron type for elasto-plasticity
- The smoothed finite element method (S-FEM): A framework for the design of numerical models for desired solutions
- N-sided polygonal smoothed finite element method (nSFEM) with non-matching meshes and their applications for brittle fracture problems
- The smoothed finite element method for time-dependent mechanical responses of MEE materials and structures around Curie temperature
- A selective smoothed finite element method with visco‐hyperelastic constitutive model for analysis of biomechanical responses of brain tissues
- A phase-field modelling for 3D fracture in elasto-plastic solids based on the cell-based smoothed finite element method
- Evaluation of performance of magneto-electro-elastic sensor subjected to thermal-moisture coupled load via CS-FEM
- Evaluation of the transient performance of magneto-electro-elastic based structures with the enriched finite element method
- Parametric model order reduction and vibration analysis of pipeline system based on adaptive dynamic substructure method
- An adaptive dynamic phase-field method using the variable-node elements for cohesive dynamic fracture
- A cell-based smoothed finite element method for three-dimensional incompressible flows using Cartesian cut-cell meshes
- Revisiting Transfinite Elements: Unifying Element Formulations for IGA, SEM, NEFEM, p-FEM and h-FEM
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