Matches in SemOpenAlex for { <https://semopenalex.org/work/W4361027668> ?p ?o ?g. }
- W4361027668 endingPage "438" @default.
- W4361027668 startingPage "423" @default.
- W4361027668 abstract "Overcoming the challenging circumstances encountered in aerospace components has led to the widespread use of small-scale reinforcements to improve structure-related performance. Accordingly, the vibrational properties of coupled conical-cylindrical shells (CCCSs) made of a matrix material reinforced by functionally graded graphene oxide powder (FGGOP) are numerically investigated under various boundary conditions (BCs) in this paper. To enhance the vibrational feature of the CCCS reinforced by graphene oxide powder (GOP), three models are measured regarding distribution related to this small-scaled material within the polymer along with the thickness related to the CCCS. The Halpin-Tsai homogenization form is also employed to develop the mechanical values associated with the GOP-nanocomposite materials. The main equations related to the CCCSs are obtained by joining Donnell's theory and the first shear deformation theory (FSDT). Additionally, using variation calculation (Hamilton's principle), the motion equations (MEs) of the CCCS reinforced by FGGOP are determined. Then, the generalized differential quadrature method (GDQM) is utilized to produce the system related to the MEs. Next, standard eigenvalue determination obtains the frequencies of the CCCS made of the FGGOP-nanocomposite. Finally, the frequencies of various benchmarks are compared with those determined here to validate the proposed scheme. Also, more than a few new and interesting samples are designed and solved numerically to indicate the impacts of the GOP, geometrical values, and various BCs on the vibration responses of the CCCS made of GOP-nanocomposite. Remarkably, this paper is the first evaluation related to the free vibration of the coupled conical-cylindrical shells reinforced by FGGOP under different BCs." @default.
- W4361027668 created "2023-03-30" @default.
- W4361027668 creator A5020205657 @default.
- W4361027668 creator A5091779273 @default.
- W4361027668 date "2023-06-01" @default.
- W4361027668 modified "2023-10-02" @default.
- W4361027668 title "Vibrational features of graphene oxide powder nanocomposite coupled conical-cylindrical shells applicable for aerospace structures under various boundary conditions" @default.
- W4361027668 cites W2001322602 @default.
- W4361027668 cites W2002079424 @default.
- W4361027668 cites W2011476891 @default.
- W4361027668 cites W2021569956 @default.
- W4361027668 cites W2039043991 @default.
- W4361027668 cites W2040654611 @default.
- W4361027668 cites W2141837152 @default.
- W4361027668 cites W2741195060 @default.
- W4361027668 cites W2757740088 @default.
- W4361027668 cites W2898421919 @default.
- W4361027668 cites W2921069500 @default.
- W4361027668 cites W2997703554 @default.
- W4361027668 cites W2998863647 @default.
- W4361027668 cites W3016532280 @default.
- W4361027668 cites W3017054964 @default.
- W4361027668 cites W3034653853 @default.
- W4361027668 cites W3036594310 @default.
- W4361027668 cites W3091115912 @default.
- W4361027668 cites W3110202008 @default.
- W4361027668 cites W3115927881 @default.
- W4361027668 cites W3115984405 @default.
- W4361027668 cites W3118276633 @default.
- W4361027668 cites W3118821480 @default.
- W4361027668 cites W3121833946 @default.
- W4361027668 cites W3139386459 @default.
- W4361027668 cites W3157366374 @default.
- W4361027668 cites W3160588882 @default.
- W4361027668 cites W3172068861 @default.
- W4361027668 cites W3172888805 @default.
- W4361027668 cites W3173505965 @default.
- W4361027668 cites W3174458224 @default.
- W4361027668 cites W3177417893 @default.
- W4361027668 cites W3177484696 @default.
- W4361027668 cites W3182256286 @default.
- W4361027668 cites W3182851609 @default.
- W4361027668 cites W3185271403 @default.
- W4361027668 cites W3186252591 @default.
- W4361027668 cites W3188303793 @default.
- W4361027668 cites W3201626236 @default.
- W4361027668 cites W3205824299 @default.
- W4361027668 cites W3206258661 @default.
- W4361027668 cites W3209195525 @default.
- W4361027668 cites W3216985798 @default.
- W4361027668 cites W3217252691 @default.
- W4361027668 cites W3217808126 @default.
- W4361027668 cites W4200255990 @default.
- W4361027668 cites W4200411722 @default.
- W4361027668 cites W4206069104 @default.
- W4361027668 cites W4206364367 @default.
- W4361027668 cites W4206433025 @default.
- W4361027668 cites W4210736386 @default.
- W4361027668 cites W4210776951 @default.
- W4361027668 cites W4220652850 @default.
- W4361027668 cites W4220923113 @default.
- W4361027668 cites W4280498375 @default.
- W4361027668 cites W4288045184 @default.
- W4361027668 cites W4288096970 @default.
- W4361027668 cites W4290052314 @default.
- W4361027668 cites W4292466879 @default.
- W4361027668 cites W4292622435 @default.
- W4361027668 cites W4293073068 @default.
- W4361027668 cites W4293259083 @default.
- W4361027668 cites W4293859886 @default.
- W4361027668 cites W4295736027 @default.
- W4361027668 cites W4297985064 @default.
- W4361027668 cites W4306654705 @default.
- W4361027668 cites W4306876863 @default.
- W4361027668 cites W4307903873 @default.
- W4361027668 cites W4308600093 @default.
- W4361027668 cites W4308783601 @default.
- W4361027668 cites W4309196095 @default.
- W4361027668 cites W4309852172 @default.
- W4361027668 cites W4311508548 @default.
- W4361027668 cites W4312156715 @default.
- W4361027668 cites W4316505350 @default.
- W4361027668 cites W4327756679 @default.
- W4361027668 doi "https://doi.org/10.1016/j.enganabound.2023.03.020" @default.
- W4361027668 hasPublicationYear "2023" @default.
- W4361027668 type Work @default.
- W4361027668 citedByCount "7" @default.
- W4361027668 countsByYear W43610276682023 @default.
- W4361027668 crossrefType "journal-article" @default.
- W4361027668 hasAuthorship W4361027668A5020205657 @default.
- W4361027668 hasAuthorship W4361027668A5091779273 @default.
- W4361027668 hasConcept C121332964 @default.
- W4361027668 hasConcept C124961601 @default.
- W4361027668 hasConcept C130217890 @default.
- W4361027668 hasConcept C134306372 @default.
- W4361027668 hasConcept C14037181 @default.
- W4361027668 hasConcept C159985019 @default.
- W4361027668 hasConcept C167740415 @default.