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Mechanics of Advanced Materials and Structures
Thermo-elastic buckling behaviors of advanced fluid-infiltrated porous shells integrated with GPLs-reinforced nanocomposite patches
ABSTRACT
In the existing paper, thermo-mechanical buckling performance of three-layered advanced fluid in filtrated porous shells that are embedded between two GPLs-reinforced composite layers is
investigated. The influence of the fluids in the pores is investigated using Skempton coefficient. Imperfection types and ratio effects are also considered. Moreover, for the face layers, Graphene
nanoplatelets (GPLs) weight fraction and dispersion patterns are studied. After deriving the governing equations employing virtual displacement method, they are solved analytically via Navier’s
approach. Finally, the impact of different factors on the critical buckling loads (CBLs) and temperatures (CBTs) of cylindrical, spherical, and doubly-curved shells is assessed.
Advanced Research and Development Center, LIPS Research Foundation, European International University, Paris, France; bDepartment of Mechanical Engineering, Qom Branch, Islamic Azad University, Qom, Iran; cChina Medical University, Taichung, Taiwan; dDepartment of Nuclear and Renewable Energy, Ural Federal University Named After the First President of Russia, Ekaterinburg, Russia