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Thermal Buckling Response of Functionally Graded Plates with Clamped Boundary Conditions
Authors:Abdelhakim Bouhadra  Abdelouahed Tounsi  Fabrice Bernard  Rabbab Bachir Bouiadjra  Mohammed Sid Ahmed Houari
Affiliation:1. Laboratoire des Structures et Matériaux Avancés dans le Génie Civil et Travaux Publics , Sidi Bel Abbes , Algérie;2. Laboratoire des Structures et Matériaux Avancés dans le Génie Civil et Travaux Publics , Sidi Bel Abbes , Algérie;3. Laboratoire des Matériaux et Hydrologie , Université de Sidi Bel Abbes , Sidi Bel Abbes , Algérie;4. Département de génie civil, Faculté de Technologie , Université Sidi Bel Abbes , Algérie;5. Laboratoire de Génie Civil et Génie Mécanique, INSA de Rennes , France;6. Laboratoire des Matériaux et Hydrologie , Université de Sidi Bel Abbes , Sidi Bel Abbes , Algérie;7. Faculté d'Architecture &8. de Génie Civil, Département de Génie Civil , Université Sciences et de la Technologie d'Oran , Algérie;9. Département de génie civil , Université de Mascara , Algérie
Abstract:In this research work, an exact analytical solution for thermal buckling analysis of functionally graded material (FGM) plates with clamped boundary condition subjected to uniform, linear, and non-linear temperature rises across the thickness direction is developed. Unlike any other theory, the number of unknown functions involved is only four, as against five in case of other shear deformation theories. The theory accounts for parabolic distribution of the transverse shear strains, and satisfies the zero traction boundary conditions on the surfaces of the plate without using shear correction factor. The material properties of FGM plate are assumed to be graded in the thickness direction according to a simple power-law distribution in terms of the volume fractions of the constituents. The governing equations are solved analytically for a plate with simply supported boundary conditions. Resulting equations are employed to obtain the closed-form solution for the thermal force resultant for each loading case. Numerical examples covering the effects of the plate aspect ratio, side-to-thickness ratio and gradient index on thermal force resultant are discussed.
Keywords:Analytical modeling  Buckling  Clamped boundary conditions  Functionally graded material  Plate theory  Thermal properties
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