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Nonlinear thermal bending analysis is presented for a simply supported functionally graded cylindrical panel resting on an elastic foundation.
A hygrothermal bending analysis is presented for a functionally graded material (FGM) plate resting on elastic foundations.
A nonlinear bending analysis is presented for a simply supported, functionally graded plate resting on an elastic foundation of Pasternak-type.
Nonlinear bending analysis is presented for nanocomposite cylindrical panels subjected to a transverse uniform or sinusoidal load resting on elastic foundations in thermal environments.
A nonlinear bending analysis is presented for a Reissner Mindlin plate with four free edges subjected to thermomechanical loads and resting on a tensionless elastic foundation of the Pasternak-type.
Nonlinear thermal bending analysis is presented for a simply supported, shear deformable functionally graded plate without or with piezoelectric actuators subjected to the combined action of thermal and electrical loads.
Similar(54)
The Navier-type exact solutions for static bending analysis are presented for sinusoidally and uniformly distributed loads.
In the first part, the buckling analysis is presented and it is based on the linearized version of the governing equations of the non-linear geometrical bending equations.
A quantitative analysis is presented below.
Bending analysis was performed to determine the bending strength and the bending modulus of the plate.
Several examples regarding specific aspects of the flapwise bending, coupled bending bending, coupled bending torsion and coupled bending bending torsion vibration analysis are presented.
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