Free vibration of a cracked FG microbeam embedded in an elastic matrix and exposed to magnetic field in a thermal environment

I Esen, C Özarpa, MA Eltaher - Composite Structures, 2021 - Elsevier
A mathematical model is developed, though this article, to investigate a vibrational
behaviour of functionally graded (FG) cracked microbeam rested on elastic foundation and …

Influence of carbon nanotubes on stability and vibration characteristics of plates and panels in thermal environment: a review

S Chakraborty, V Singh, T Dey, R Kumar - Archives of Computational …, 2024 - Springer
Laminated composites became a cutting-edge material in the twentieth century due to their
extensive use in engineering, owing to their high strength and lightweight characteristics …

A dynamic analysis of randomly oriented functionally graded carbon nanotubes/fiber-reinforced composite laminated shells with different geometries

A Melaibari, AA Daikh, M Basha, A Wagih, R Othman… - Mathematics, 2022 - mdpi.com
The present study demonstrates the free vibration behavior of composite laminated shells
reinforced by both randomly oriented single-walled carbon nanotubes (SWCNTs) and …

Thermo-mechanical buckling analysis of non-uniformly heated rectangular plates with temperature-dependent material properties

Y Ren, R Huo, D Zhou - Thin-Walled Structures, 2023 - Elsevier
This paper examines the thermo-mechanical buckling behavior of a rectangular plate with
temperature-dependent (TD) material properties exposed to non-uniform heating. The …

Thermo-mechanical postbuckling analysis of sandwich cylindrical panels with functionally graded auxetic GRMMC core supported by elastic foundations

X Chen, HS Shen - Ocean Engineering, 2022 - Elsevier
Modelling and analysis of compressive and thermal postbuckling of sandwich cylindrical
panels supported by an elastic foundation are presented in this paper. The sandwich …

On the solution of thermal buckling problem of moderately thick laminated conical shells containing carbon nanotube originating layers

M Avey, N Fantuzzi, A Sofiyev - Materials, 2022 - mdpi.com
This study presents the solution for the thermal buckling problem of moderately thick
laminated conical shells consisting of carbon nanotube (CNT) originating layers. It is …

Post-buckling and vibration analysis of randomly distributed CNT reinforced fibre composite plates under localised heating

S Chakraborty, T Dey, V Mahesh… - … of Advanced Materials …, 2023 - Taylor & Francis
Present study aims to investigate the non-linear stability and vibration characteristics of
randomly distributed carbon nanotube reinforced fiber composites (RD-CNTRFC) under …

Nonlinear thermomechanical analysis of CNTRC cylindrical shells using HSDT enriched by zig-zag and polyconvex strain cover functions

M Ramezani, M Rezaiee-Pajand, F Tornabene - Thin-Walled Structures, 2022 - Elsevier
A new higher-order shear deformation zig-zag theory enriched by polyconvex strain cover
functions is proposed for predicting the nonlinear stability characteristics of thermo …

The effect of uncertainty sources on the dynamic instability of CNT-reinforced porous cylindrical shells integrated with piezoelectric layers under electro-mechanical …

M Khayat, A Baghlani, MA Najafgholipour - Composite Structures, 2021 - Elsevier
In the present study, the influence of the propagation of different uncertainty sources on the
dynamic stability of a sandwich carbon nanotube-reinforced (CNT) cylindrical shell under a …

Thermo-elastic analysis of functionally graded porous thick-walled cylindrical pressure vessels with variable thickness subjected to mechanical and thermal loading by …

M Lotfi, A Loghman, M Arefi - International Journal of Pressure Vessels and …, 2023 - Elsevier
The aim of this research is to analyze the displacements, strains, and stresses is made in the
thick-walled cylindrical pressure vessels with a variable thickness subjected to mechanical …