Thermoelastic bending analysis of laminated composite plates according to various shear deformation theories

Author:

Sayyad Atteshamuddin Shamshuddin1,Shinde Bharati Machhindra1,Ghugal Yuwaraj Marotrao2

Affiliation:

1. 1Department of Civil Engineering, SRES’s College of Engineering, University of Pune, Kopargaon-423601, Maharashtra, India

2. 2Department of Applied Mechanics, Government Engineering College, Karad-415124, Maharashtra, India

Abstract

AbstractThis study presents the thermoelastic analysis of laminated composite plates subjected to sinusoidal thermal load linearly varying across the thickness. Analytical solutions for thermal displacements and stresses are investigated by using a unified plate theory which includes different functions in terms of thickness coordinate to represent the effect of shear deformation. The theory presented is variationally consistent, does not require shear correction factor, and gives rise to transverse shear stress variation such that the transverse shear stresses vary parabolically across the thickness satisfying shear stress free surface conditions. Governing equations of equilibrium and associated boundary conditions of the theory are obtained using the principle of virtual work. The Navier solution for simply supported laminated composite plates has been developed. Numerical results are presented to demonstrate the thermal response of the laminated composite plates.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Aerospace Engineering,General Materials Science,Civil and Structural Engineering,Environmental Engineering

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