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Geometrically non‐linear enhanced strain mixed methods and the method of incompatible modes

International Journal for Numerical Methods in Engineering · 1992 · Vol. 33(7) · pp. 1413–1449
J.C. SimoF. Armero

Abstract

Abstract A class of ‘assumed strain’ mixed finite element methods for fully non‐linear problems in solid mechanics is presented which, when restricted to geometrically linear problems, encompasses the classical method of incompatible modes as a particular case. The method relies crucially on a local multiplicative decomposition of the deformation gradient into a conforming and an enhanced part , formulated in the context of a three‐field variational formulation. The resulting class of mixed methods provides a possible extension to the non‐linear regime of well‐known incompatible mode formulations. In addition, this class of methods includes non‐linear generalizations of recently proposed enhanced strain interpolations for axisymmetric problems which cannot be interpreted as incompatible modes elements. The good performance of the proposed methodology is illustrated in a number of simulations including 2‐D, 3‐D and axisymmetric finite deformation problems in elasticity and elastoplasticity. Remarkably, these methods appear to be specially well suited for problems involving localization of the deformation, as illustrated in several numerical examples.

Composite Structure Analysis and OptimizationNumerical methods in engineeringElasticity and Material ModelingFinite element methodFinite strain theoryMathematicsLinear elasticityRotational symmetryApplied mathematicsMultiplicative functionElasticity (physics)Deformation (meteorology)Mathematical analysis

Funding

  • Lawrence Livermore National Laboratory
Citations
779
FWCI
22.65
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References
A non‐conforming element for stress analysis
International Journal for Numerical Methods in Engineering · 1976 · 747 citations
On numerically accurate finite element solutions in the fully plastic range
Computer Methods in Applied Mechanics and Engineering · 1974 · 974 citations
Variational and projection methods for the volume constraint in finite deformation elasto-plasticity
Computer Methods in Applied Mechanics and Engineering · 1985 · 785 citations
A class of mixed assumed strain methods and the method of incompatible modes
International Journal for Numerical Methods in Engineering · 1990 · 1,591 citations
An Analysis of the Finite Element Method
Mathematics of Computation · 1974 · 3,461 citations
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