Numerical Failure Analysis of Laminated Beams Using a Refined Finite Element Model

Author:

Layachi Maroua1,Khechai Abdelhak2,Ghrieb Abderrahmane1,Layachi Safa2

Affiliation:

1. 1 Laboratory of Development in Mechanics and Materials , University of Djelfa , Djelfa , Algeria

2. 2 Laboratoire de Recherche en Génie Civil, LRGC , Université de Biskra , Biskra , Algeria

Abstract

AbstractIn the present investigation, laminated composite beams subjected to a bending static loading are studied in order to determine their failure mechanisms and the first ply failure (FPF) load. The FPF analysis is performed using a refined rectangular plate element. The present element is formulated based on the classical lamination theory (CLT) to calculate the in-plane stresses. To achieve this goal, several failure criterions, including Tsai-Wu, Tsai-Hill, Hashin, and Maximum Stress criteria, are used to predict failure mechanisms. These criterions are implemented within the finite element code to predict the different failure damages and responses of laminated beams from the initial loading to the final failure. The numerical results obtained using the present element compare favorably with those given by the analytic approaches. It is observed that the numerical results are very close to the analytical results, which demonstrates the accuracy of the present element. Finally, several parameters, such as fiber orientations, stacking sequences, and boundary conditions, are considered to determine and understand their effects on the strength of these laminated beams.

Publisher

Walter de Gruyter GmbH

Subject

Microbiology (medical),Immunology,Immunology and Allergy

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