A locking-free model for Reissner–Mindlin plates: Analysis and isogeometric implementation via NURBS and triangular NURPS

Author:

Beirão Da Veiga L.1,Hughes T. J. R.2,Kiendl J.3,Lovadina C.4,Niiranen J.5,Reali A.3,Speleers H.6

Affiliation:

1. Department of Mathematics, University of Milan, Via Saldini 50, Milan 20133, Italy

2. Institute for Computational Engineering and Sciences, University of Texas at Austin, 201 East, 24th Street, Stop C0200, Austin, TX 78712-1229, USA

3. Department of Civil Engineering and Architecture, University of Pavia, Via Ferrata 3, Pavia 27100, Italy

4. Department of Mathematics, University of Pavia, Via Ferrata 1, Pavia 27100, Italy

5. Department of Civil and Structural Engineering, Aalto University, P. O. Box 12100, AALTO 00076, Finland

6. Department of Computer Science, University of Leuven, Celestijnenlaan 200A, Heverlee (Leuven) 3001, Belgium

Abstract

We study a reformulated version of Reissner–Mindlin plate theory in which rotation variables are eliminated in favor of transverse shear strains. Upon discretization, this theory has the advantage that the "shear locking" phenomenon is completely precluded, independent of the basis functions used for displacement and shear strains. Any combination works, but due to the appearance of second derivatives in the strain energy expression, smooth basis functions are required. These are provided by Isogeometric Analysis, in particular, NURBS of various degrees and quadratic triangular NURPS. We present a mathematical analysis of the formulation proving convergence and error estimates for all physically interesting quantities, and provide numerical results that corroborate the theory.

Publisher

World Scientific Pub Co Pte Lt

Subject

Applied Mathematics,Modelling and Simulation

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