| Authors | الیاس محمدرضایی بیدگلی,محمد عارفی |
| Journal | Archives of Civil and Mechanical Engineering |
| Page number | 62 |
| Volume number | 25 |
| IF | 4.4 |
| Paper Type | Full Paper |
| Published At | 2025-01-09 |
| Journal Grade | Scientific - research |
| Journal Type | Electronic |
| Journal Country | Iran, Islamic Republic Of |
| Journal Index | JCR ,SCOPUS |
| Keywords | Modified Poincare, Lindstedt method Galerkin’s approach Von Karman relations Honeycomb Graphene nanoplatelets Nonlinear responses |
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Abstract
This paper investigates large amplitude vibration responses of a sandwich nanocomposite doubly curved shell composed of
a honeycomb core integrated with graphene nanoplatelets reinforced curved face sheets. The kinematic relations are
developed with accounting von Karman nonlinear strain components and shear deformable model. The large amplitude
governing motion’s equations are derived using Hamilton’s principle. The effective geometric and material composition-
dependent properties are estimated using the Gibson’s formula and Halpin–Tsai relations for the core and attached layers,
respectively. The Galerkin’s approach is employed to convert governing equations to the time-dependent differential
equations and finally the perturbation technique and modified Poincare–Lindstedt method are employed to obtain large
amplitude nonlinear responses. The results are presented to investigate the impact of geometric parameters of the hon-
eycomb core and material compositions of nanocomposite layers on the nonlinear vibration characteristics of the doubly
curved shell. A verification study is presented to valid employed numerical results.