Thermal post-buckling analysis of imperfect laminated plates using a higher-order shear deformation theory |
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Authors: | Hui-Shen Shen |
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Affiliation: | Department of Civil Engineering, Shanghai Jiao Tong University, Shanghai 200030, People's Republic of China |
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Abstract: | ![]() Thermal post-buckling analysis is presented for a simply supported, composite laminated plate subjected to uniform or non-uniform tent-like temperature loading. The initial geometrical imperfection of the plate is taken into account. The formulations are based on the Reddy's higher-order shear deformation plate theory, and include thermal effects. The analysis uses a mixed Galerkin-perturbation technique to determine thermal buckling loads and post-buckling equilibrium paths. Numerical examples cover the performances of perfect and imperfect, antisymmetrically angle-ply and symmetrically cross-ply laminated plates. The effects played by transverse shear deformation, thermal load ratio, plate aspect ratio, total number of plies, fiber orientation and initial geometrical imperfections are studied. Typical results are presented in dimensionless graphical form. |
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Keywords: | structural stability thermal post-buckling composite laminated plate higher-order shear deformation plate theory Galerkin-perturbation technique |
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