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Mixed 2D and beam formulation for modeling sandwich structures

Ilya V. Avdeev (Mechanical Engineering Department, University of Pittsburgh, Pittsburgh, PA, USA)
Alexei I. Borovkov (Department of Mechanics and Control Processes, St. Petersburg State Technical University, St. Petersburg, Russia)
Olga L. Kiylo (Department of Mechanics and Control Processes, St. Petersburg State Technical University, St. Petersburg, Russia)
Michael R. Lovell (Mechanical Engineering Department, University of Pittsburgh, Pittsburgh, PA, USA)
Dipo Onipede Jr (Mechanical Engineering Department, University of Pittsburgh, Pittsburgh, PA, USA)

Engineering Computations

ISSN: 0264-4401

Article publication date: 1 June 2002

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Abstract

This paper presents a new finite element (FE) approach to modeling edge effects in beam sandwich structures. The approach is based on a mixed 2D and beam formulation conjuncted by means of a penalty function method. Several results from analysis of sandwich beams and frames bending with different boundary conditions and laminate properties are solved in order to demonstrate the accuracy of the algorithms and software developed. The influence of the penalty factor on the spectral condition number of the stiffness matrix and on the residual norm of the solution is also investigated for different isotropic and sandwich structures. The FE analysis of complex sandwich beam joint is subsequently presented. Results of this analysis show the advantages of the developed approach for large problems.

Keywords

Citation

Avdeev, I.V., Borovkov, A.I., Kiylo, O.L., Lovell, M.R. and Onipede, D. (2002), "Mixed 2D and beam formulation for modeling sandwich structures", Engineering Computations, Vol. 19 No. 4, pp. 451-466. https://doi.org/10.1108/02644400210430208

Publisher

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MCB UP Ltd

Copyright © 2002, MCB UP Limited

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