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A 2D exact model with stretching-through-the-thickness variable kinematicfor the 3D exact analysis of laminated composite structures.

2023Open accessUniversity of Douala

Abstract

In this work, we introduce a novel 3D exact model for the analysis of the transient mechanical behaviorof laminated composite plates and shells. The system of equations obtained by using Hamilton’s principle,and the generalized ABCDE-matrix that accounts several essential mechanical couplings (due to variationin the thickness and section warping) often neglected in the classical literature. The stretching-throughthe-thickness term is rigorously justified by the existence of potential of distortion proved here. It’s foundimportant to develop rigorously 3D exact analysis of mechanical behavior to improve the quality and resistanceof laminated plate and shell structures for variety of applications. The proposed equations are assessedto show the performance of some matrix systems developed here in some selected test cases found in theliterature. The 3D exact analysis proposed in the current work, improves many recent studies on the analysisof laminated composite plates and shells. Moreover, the generalized ABCDE-matrix has a great potentialto increase the predicting power of the mechanical behavior of civil structures and the accuracy of analysismeanwhile reducing the computational costs.

Research topics

  • Structural Analysis of Composite Materials
  • Structural Analysis and Optimization
  • Composite Structure Analysis and Optimization

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