2015
DOI: 10.1002/nme.4997
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Plastic collapse analysis of Mindlin-Reissner plates using a composite mixed finite element

Abstract: Summary The paper proposes a mixed finite element model and experiments its capability in the analysis of plastic collapse Mindlin–Reissner plates. The model is based on simple assumptions for the unknown fields, ensuring that it is easy to formulate and implement. A composite triangular mesh is assumed over the domain. Within each triangular element, the displacement field is described by a quadratic interpolation, while the stress field is represented by a piece‐wise constant description by introducing a sub… Show more

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Cited by 11 publications
(2 citation statements)
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“…The proposed element also has similarities with the composite M T 6/3 element [7,13,22], the main difference being topological. In contrast to MES-FEM, in M T 6/3 the grid and the mesh are coincident and displacement interpolation is that of the quadratic triangle T 6 .…”
Section: Comparison With Other Fe Modelsmentioning
confidence: 93%
“…The proposed element also has similarities with the composite M T 6/3 element [7,13,22], the main difference being topological. In contrast to MES-FEM, in M T 6/3 the grid and the mesh are coincident and displacement interpolation is that of the quadratic triangle T 6 .…”
Section: Comparison With Other Fe Modelsmentioning
confidence: 93%
“…This, generally speaking, means low error in recovering the solution for coarse mesh grids, elevated rate of convergence and equivalent convergence properties for all the unknown fields. Recently, a wide number of mixed FE has been proposed [4]. Among these, a bright choice is represented by the so-called hybrid FEs where the assumed stress interpolation apriori satisfies the equilibrium equations.…”
Section: Introductionmentioning
confidence: 99%