An Improved Quadrilateral Flat Element with Drilling Degrees of Freedom for Shell Structural Analysis
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- Type
- article
- Published
- 2009-08-01
- Cited by
- 24
- References
- 56
- Access
- Open access
- OpenAlex
- https://openalex.org/W107246832
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:55296634
Keywords
Quadrilateral, Smoothing, Finite element method, Shell (structure), Degrees of freedom (physics and chemistry)
References
- A Node-Based Element for Analysis of Planar Piezoelectric Structures
- A Smoothed Finite Element Method (SFEM) for Linear and Geometrically Nonlinear Analysis of Plates and Shells
- A simple and accurate four-node quadrilateral element using stabilized nodal integration for laminated plates
- Enhanced one‐point quadrature shell element for nonlinear applications
- Stress resultant geometrically non‐linear shell theory with drilling rotations. Part III: Linearized kinematics
- Defect-free 4-node flat shell element: NMS-4F element
- A linear quadrilateral shell element with fast stiffness computation
- A survey of recent shell finite elements
- ALTERNATE STRESS AND CONJUGATE STRAIN MEASURES, AND MIXED VARIATIONAL FORMULATIONS INVOLVING RIGID ROTATIONS, FOR COMPUTATIONAL ANALYSES OF FINITELY DEFORMED SOLIDS, WITH APPLICATION TO PLATES AND SHELLS-I
- Reduced and selective integration techniques in the finite element analysis of plates
- An assumed strain quadrilateral element with drilling degrees of freedom
- Nonlinear finite element analysis of shells: Part I. three-dimensional shells
- Improvement of Plate and Shell Finite Elements by Mixed Formulations
- A proposed standard set of problems to test finite element accuracy
- Explicit algorithms for the nonlinear dynamics of shells
- EAS‐elements for two‐dimensional, three‐dimensional, plate and shell structures and their equivalence to HR‐elements
- An evaluation of the MITC shell elements
- Ductile damage analysis of elasto-plastic shells at large inelastic strains
- The discrete strain gap method and membrane locking
- A compatible triangular element including vertex rotations for plane elasticity analysis
Cited by
- A Four-Node Reissner-Mindlin Shell with Assumed Displacement Quasi-Conforming Method
- Nonlinear Thermomechanical Analysis of Structures Using OpenSees
- A hybrid equilibrium element for folded plate and shell structures
- Variable-node plate and shell elements with assumed natural strain and smoothed integration methods for nonmatching meshes
- Buckling and vibration analysis of laminated composite plate/shell structures via a smoothed quadrilateral flat shell element with in-plane rotations
- NURBS-BASED ANALYSIS OF CURVED ELEMENTS FOR THIN- WALLED STRUCTURES
- Shear and tensile failure of thin aluminium plates struck by cylindrical and spherical indenters
- A concave-admissible quadrilateral quasi-conforming plane element using B-net method
- A Triangular Plate Element with Drilling Degrees of Freedom, for Large Rotation Analyses of Built-up Plate/Shell Structures, Based on the Reissner Variational Principle and the von Karman Nonlinear Theory in the Co-rotational Reference Frame
- Nonlinear dynamic co-rotational formulation for membrane elements with in-plane drilling rotational degree of freedom
- A 4-node quadrilateral flat shell element formulated by the shape-free HDF plate and HSF membrane elements
- An Equilibrium Shell Element for Folded Plate Structures
- The application of drilling degree of freedom to checkerboards in structural topology optimization
- Enhancement to four-node quadrilateral plate elements by using cell-based smoothed strains and higher-order shear deformation theory for nonlinear analysis of composite structures
- Full and reduced models for the elastodynamics of fully flexible parallel robots
- A Review on Membrane Finite Elements with Drilling Degree of Freedom
- Modified Equivalent Load Method for Welding Distortion Analysis
- Benchmarking Computational Shell Models
- Post-buckling analysis of shell-like structures using an implicit dynamic time integration scheme
- A general anisotropic peridynamic plane model based on micro-beam bond
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- A high-performance four-node flat shell element with drilling degrees of freedom
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- A simple and accurate four-node quadrilateral element using stabilized nodal integration for laminated plates
- Development of a strain-smoothed three-node triangular flat shell element with drilling degrees of freedom
- A new one-point quadrature, quadrilateral shell element with drilling degrees of freedom
- An effective quadrilateral membrane finite element based on the strain approach
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