| Authors | الیاس محمدرضائی بیدگلی,محمد عارفی |
| Journal | Waves in Random and Complex Media |
| Paper Type | Full Paper |
| Published At | 2023-01-24 |
| Journal Grade | Scientific - research |
| Journal Type | Electronic |
| Journal Country | Iran, Islamic Republic Of |
| Journal Index | SCOPUS |
| Keywords | Thermomechanical buckling loads; reinforced composite curved nanobeam; shear deformable model; graphene nanoplatelets (GPLs); Halpin, Tsai model; nanofillers |
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Abstract
The effect of graphene nanoplatelets (GPLs) as a nanofillers’ rein-
forcement is studied on the thermomechanical buckling loads of a
reinforced composite nanobeam. The virtual work principle is used
to derive governing equations of a shear deformable model. Effec-
tive mechanical and thermal properties are computed based on the
Halpin–Tsai model for various patterns of distribution. A solution pro-
cedure is developed to find thermal and mechanical buckling loads.
A parametric analysis is provided to study the influence of significant
parameters such as various distributions of GPLs, weight fractions
of GPLs, opening angle, nonlocal parameter, and some geometric
parameters of GPLs such as the number of layers on the mechanical
and thermal buckling loads. Before the presentation of full numer-
ical results, comprehensive comparisons with previous references
are presented for validation. A decrease in the stiffness of reinforced
curved nanobeam is observed as the opening angle increases lead-
ing to a major decrease in thermal and mechanical buckling loads.
The effect of various reinforcement distributions yields the con-
clusion that Pattern 3 and Pattern 2 give the largest and smallest
mechanical and thermal buckling loads, respectively.