Variational analysis of gradient elastic flexural plates under static loading |
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Authors: | S. Papargyri-Beskou A.E. Giannakopoulos D.E. Beskos |
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Affiliation: | 1. Department of Civil Engineering, Aristotle University of Thessaloniki, GR-54006 Thessaloniki, Greece;2. Department of Civil Engineering, University of Thessaly, GR-38334 Volos, Greece;3. Department of Civil Engineering, University of Patras, GR-26500 Patras, Greece;4. Office of Theoretical and Applied Mechanics, Academy of Athens, 4 Soranou Efessiou Str., GR-11527 Athens, Greece |
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Abstract: | Gradient elastic flexural Kirchhoff plates under static loading are considered. Their governing equation of equilibrium in terms of their lateral deflection is a sixth order partial differential equation instead of the fourth order one for the classical case. A variational formulation of the problem is established with the aid of the principle of virtual work and used to determine all possible boundary conditions, classical and non-classical ones. Two circular gradient elastic plates, clamped or simply supported at their boundaries, are analyzed analytically and the gradient effect on their static response is assessed in detail. A rectangular gradient elastic plate, simply supported at its boundaries, is also analyzed analytically and its rationally obtained boundary conditions are compared with the heuristically obtained ones in a previous publication of the authors. Finally, a plate with two opposite sides clamped experiencing cylindrical bending is also analyzed and its response compared against that for the cases of micropolar and couple-stress elasticity theories. |
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