A complete analytical model, which incorporates shear deformation as well as transverse normal thermal strains is assessed for the thermal stress analysis of cross-ply laminates subjected to linear or gradient thermal profile across thickness of the laminate. Primary displacement field is expanded in the thickness direction using twelve degrees of freedom. Equilibrium equations in the present higher order shear and normal deformation theory (HOSNT12) are variationally consistent and obtained using principle of virtual work [1]. Numerical results of displacements and stresses are compared with three dimensional (3D) elasticity solution and other two dimensional (2D) models. (C) 2012 Elsevier Ltd. All rights reserved
Thermal analysis of smart composite laminated plate using higher order theory with zig zag function....
DOI: 10.5281/zenodo.47000 Thermal analysis of smart composite laminated plate using higher order the...
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A C° continuous displacement finite element formulation of a higher-order theory for flexure of...
A complete analytical model, which incorporates shear deformation as well as transverse normal therm...
A simple C0 isoparametric finite element formulation based on a higher-order displacement model for ...
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DOI: 10.5281/zenodo.47000 Thermal analysis of smart composite laminated plate using higher order the...
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