A new component mode synthesis for dynamic mixed thin plate finite element models
From MaRDI portal
Publication:321179
DOI10.1007/s00419-015-1072-xzbMath1346.74167OpenAlexW2194345346MaRDI QIDQ321179
Louis Jézéquel, Sébastien Besset, Pierre Garambois
Publication date: 7 October 2016
Published in: Archive of Applied Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00419-015-1072-x
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Analysis of plates on Winkler foundation by wavelet collocation
- A strong formulation finite element method (SFEM) based on RBF and GDQ techniques for the static and dynamic analyses of laminated plates of arbitrary shape
- A new hybrid smoothed FEM for static and free vibration analyses of Reissner-Mindlin plates
- An edge-based smoothed finite element method (ES-FEM) with stabilized discrete shear gap technique for analysis of Reissner-Mindlin plates
- The discrete strain gap method and membrane locking
- Mixed finite element technologies
- On the equivalence of mode decomposition and mixed finite elements based on the Hellinger-Reissner principle. I: Theory
- On the equivalence of mode decomposition and mixed finite elements based on the Hellinger-Reissner principle. II: Applications
- On the hybrid-mixed formulation of \(C^ 0\) curved beam elements
- A new mixed formulation for elasticity
- Formulation and convergence of a mixed finite element method applied to elastic arches of arbitrary geometry and loading
- Shear and membrane locking in curved \(C^ 0\) elements
- Determinantal method for locally modified structures: application to the vibration damping of a space launcher
- 5-node hybrid/mixed finite element for Reissner-Mindlin plate
- Thin plate spline radial basis functions for vibration analysis of clamped laminated composite plates
- A variational principle and the convergence of a finite-element method based on assumed stress distribution
- The finite element method with Lagrangian multipliers
- On a certain mixed variational theorem and a proposed application
- A four-node plate bending element based on Mindlin/Reissner plate theory and a mixed interpolation
- A simple hybrid stress element for shear deformable plates
- Classical and mixed finite elements for static and dynamic analysis of piezoelectric plates
- On a mixed variational theorem and on shear deformable plate theory
- A formulation of general shell elements—the use of mixed interpolation of tensorial components
- A new efficient approach to the formulation of mixed finite element models for structural analysis
- A generalization of two-dimensional theories of laminated composite plates
- PEERS: A new mixed finite element for plane elasticity
- A new formulation of hybrid/mixed finite element
- A High-Order Theory of Plate Deformation—Part 2: Laminated Plates
- A new hybrid-mixed variational approach for Reissner-Mindlin plates. The MiSP model
- Free vibration analysis of orthotropic plates resting on Pasternak foundation by mixed finite element formulation
- Efficient higher order composite plate theory for general lamination configurations
- Component Modal Synthesis Methods Based on Hybrid Models, Part I: Theory of Hybrid Models and Modal Truncation Methods
- Classical and advanced multilayered plate elements based upon PVD and RMVT. Part 1: Derivation of finite element matrices
- Classical and advanced multilayered plate elements based upon PVD and RMVT. Part 2: Numerical implementations
- Coupling of substructures for dynamic analyses.
- A new family of curvilinear plate bending elements for vibration and stability
- A mixed finite element formulation for plate problems
- A refined analysis of composite laminates
- On a Variational Theorem in Elasticity
This page was built for publication: A new component mode synthesis for dynamic mixed thin plate finite element models