4.7 Article

A geometrically nonlinear size-dependent hypothesis for porous functionally graded micro-plate

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Summary: This study examines the size-dependent nonlinear buckling and postbuckling behavior of microsized shells made of functionally graded material (FGM) under hydrostatic pressure using the theory of nonlocal strain gradient elasticity. The incorporation of nonlocality and strain gradient micro-size dependency into a shell theory results in a more comprehensive model with refined distribution of shear deformation. The Mori-Tanaka homogenization scheme is used to estimate effective material properties of FGM nanoshells, and perturbation-based solving process is employed to extract explicit expressions for stability paths of hydrostatic pressurized FGM microsized shells with nonlocal strain gradient effects.

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