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المؤلفMirjavadi, Seyed Sajad
المؤلفForsat, Masoud
المؤلفBarati, Mohammad Reza
المؤلفHamouda, A. M. S
تاريخ الإتاحة2023-02-12T06:20:51Z
تاريخ النشر2021
اسم المنشورJournal of Strain Analysis for Engineering Design
المصدرScopus
معرّف المصادر الموحدhttp://dx.doi.org/10.1177/0309324720939811
معرّف المصادر الموحدhttp://hdl.handle.net/10576/39943
الملخصThis research deals with the nonlinear vibration analysis of functionally graded carbon nanotubes and fiber-reinforced composite truncated conical shell segments based upon third-order shear deformation theory. A detailed procedure for obtaining material properties of the multi-scale carbon nanotube/fiber-reinforced composite based on the three-dimensional Mori-Tanaka scheme has been provided. The truncated conical shell segments have been reinforced by distributed carbon nanotubes in the thickness direction according to uniform, linear, and nonlinear functions. The nonlinear equations have been solved via both Galerkin's technique and Jacobi elliptic function method. Based on the numerical results, the effects of diverse carbon nanotube distribution, fiber volume, fiber orientation, and semi-vertex and open angles of the segment on vibrational frequencies of the truncated conical shell have been studied.
اللغةen
الناشرSAGE Publications Ltd
الموضوعcarbon nanotubes
conical shell
multi-scale composite
Nonlinear vibrations
third-order shell deformation theory
العنوانInvestigating nonlinear vibrations of multi-scale truncated conical shell segments with carbon nanotube/fiberglass reinforcement using a higher order conical shell theory
النوعArticle
الصفحات181-192
رقم العدد3
رقم المجلد56
dc.accessType Abstract Only


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