Nonlinear static analysis of arbitrary quadrilateral plates in very large deflections
From MaRDI portal
Publication:868088
DOI10.1016/j.cnsns.2005.05.006zbMath1106.74036OpenAlexW1999551092MaRDI QIDQ868088
Mojtaba Azhari, A. R. Shahidi, Mojtaba Mahzoon, Mohammad Mehdi Saadatpour
Publication date: 19 February 2007
Published in: Communications in Nonlinear Science and Numerical Simulation (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cnsns.2005.05.006
Related Items
Stress-strain state of complex-shaped orthotropic plates under variable load, A new element for analyzing large deformation of thin naghdi shell model. I: Elastic, Postbuckling behavior of bi-axially compressed arbitrarily straight-sided quadrilateral functionally graded material plates, Analysis of the stress-strain state of complex-shaped plates
Cites Work
- Unnamed Item
- Unnamed Item
- On a stress resultant geometrically exact shell model. I: Formulation and optimal parametrization
- On a stress resultant geometrically exact shell model. II: The linear theory; computational aspects
- Exact theory of stress and strain in rods and shells
- Nonlinear finite element analysis of shells. I. Three-dimensional shells
- Nonlinear finite element analysis of shells. II. Two-dimensional shells
- On a stress resultant geometrically exact shell model. IV: Variable thickness shells with through-the-thickness stretching
- On a stress resultant geometrically exact shell model. Part V: Nonlinear plasticity: Formulation and integration algorithms
- On a stress resultant geometrically exact shell model. III: Computational aspects of the nonlinear theory
- An excursion into large rotations
- Nonlinear finite element shell formulation accounting for large membrane strains
- On a stress resultant geometrically exact shell model. VII: Shell intersections with 5/6-DOF finite element formulations
- Finite elements, finite rotations and small strains fo flexible shells
- A simple four-noded corotational shell element for arbitrarily large rotations
- Shell theory versus degeneration—a comparison in large rotation finite element analysis
- An exact finite rotation shell theory, its mixed variational formulation and its finite element implementation
- On a stress resultant geometrically exact shell model. Part VI: Conserving algorithms for non‐linear dynamics
- A consistent co-rotational formulation for shells using the constant stress/constant moment triangle
- An investigation of a finite rotation four node assumed strain shell element
- A FINITE ELEMENT FORMULATION FOR 3-D CONTINUA USING THE CO-ROTATIONAL TECHNIQUE
- A finite element model for non‐linear shells of revolution with finite rotations
- Using comparison theorem to compare corotational stress rates in the model of perfect elastoplasticity