Influence of elastic foundations and carbon nanotube reinforcement on the hydrostatic buckling pressure of truncated conical shells
Özet
In this study, the effects of elastic foundations (EFs) and carbon nanotube
(CNT) reinforcement on the hydrostatic buckling pressure (HBP) of truncated conical
shells (TCSs) are investigated. The first order shear deformation theory (FOSDT) is
generalized to the buckling problem of TCSs reinforced with CNTs resting on the EFs
for the first time. The material properties of composite TCSs reinforced with CNTs are
graded linearly according to the thickness coordinate. The Winkler elastic foundation
(W-EF) and Pasternak elastic foundation (P-EF) are considered as the EF. The basic
relations and equations of TCSs reinforced with CNTs on the EFs are obtained in the
framework of the FOSDT and solved using the Galerkin method. One of the innovations
in this study is to obtain a closed-form solution for the HBP of TCSs reinforced with
CNTs on the EFs. Finally, the effects of the EFs and various types CNT reinforcements
on the HBP are investigated simultaneously. The obtained results are compared with the
results in the literature, and the accuracy of results is confirmed.
Cilt
41Sayı
7Bağlantı
https://hdl.handle.net/11363/5541Koleksiyonlar
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