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On the formulation of enhanced strain finite elements in finite deformations

S. Glaser (Department of Civil and Environmental Engineering, University of California, Berkeley, California, USA)
F. Armero (Department of Statics and Dynamics, University of Stuttgart, Stuttgart, Germany)

Engineering Computations

ISSN: 0264-4401

Article publication date: 1 November 1997

1666

Abstract

Presents recent advances obtained by the authors in the development of enhanced strain finite elements for finite deformation problems. Discusses two options, both involving simple modifications of the original enhancement strategy of the deformation gradient as proposed in previous works. The first new strategy is based on a full symmetrization of the original enhanced interpolation fields; the second involves only the transposed part of these fields. Both modifications lead to a significant improvement of the performance in problems involving high compressive stresses, showing in particular a mode‐free response, while maintaining a simple and efficient (strain driven) numerical implementation. Demonstrates these properties with a number of numerical benchmark simulations, including a complete modal analysis of the elements.

Keywords

Citation

Glaser, S. and Armero, F. (1997), "On the formulation of enhanced strain finite elements in finite deformations", Engineering Computations, Vol. 14 No. 7, pp. 759-791. https://doi.org/10.1108/02644409710188664

Publisher

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MCB UP Ltd

Copyright © 1997, MCB UP Limited

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