Free vibration of porous graphene oxide powder nano-composites assembled paraboloidal-cylindrical shells
Author:
Publisher
Elsevier BV
Subject
Civil and Structural Engineering,Ceramics and Composites
Reference87 articles.
1. Gia Ninh D, Ngoc Viet Hoang V. “A new shell study for dynamical characteristics of nanocomposite shells with various complex profiles – Sinusoidal and cosine shells.” Eng Struct 2022;vol. 251, p. 113354. 10.1016/j.engstruct.2021.113354.
2. Analyses of nonlinear dynamics of imperfect nanocomposite circular cylindrical shells with swirling annular and internal fluid flow using higher order shear deformation shell theory;Ninh;Eng Struct,2019
3. Nonlinear eigenfrequency characteristics of multi-directional functionally graded porous panels;Ramteke;Compos Struct,2022
4. Nonlinear analysis of cylindrical sandwich shells with porous core and CNT reinforced face-sheets by higher-order thickness and shear deformation theory;Yadav;Eur J Mech - A/Solids,2021
5. Vibration of FG-CNT and FG-GNP sandwich composite coupled Conical-Cylindrical-Conical shell;Sobhani;Compos Struct,2021
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