Title of article :
An Analytical Approach of Nonlinear Thermo-mechanical Buckling of Functionally Graded Graphene-reinforced Composite Laminated Cylindrical Shells under Compressive Axial Load Surrounded by Elastic Foundation
Author/Authors :
Le ، Ngoc Ly - University of Transport Technology , Nguyen ، Thi Phuong - University of Transport Technology , Vu ، Hoai Nam - Ton Duc Thang University , Nguyen ، Thoi Trung - Ton Duc Thang University , Vu ، Minh Duc - University of Transport Technology
Pages :
16
From page :
357
To page :
372
Abstract :
This paper deals with an analytical approach to predict the nonlinear buckling behavior of functionally graded graphene-reinforced composite laminated cylindrical shells under axial compressive load surrounded by Pasternak’s elastic foundation in a thermal environment. Piece-wise functionally graded graphene-reinforced, composite layers are sorted with different types of graphene distribution. The governing equations are established by using Donnell’s shell theory with von Kármán nonlinearity terms and three-term solution of deflection is chosen for modeling the uniform deflection of pre-buckling state, linear and nonlinear deflection of post-buckling state. Galerkin method is applied to determine the critical axial compressive buckling load expression, post-buckling load-deflection and load-end shortening relations of the shell. The effects of environment temperature, foundation, geometrical properties, and graphene distribution on buckling behavior of shell, are numerically evaluated.
Keywords :
Functionally graded graphenere , inforced composite , cylindrical shell , compressive axial load , thermo , mechanical buckling , elastic foundation
Journal title :
Journal of Applied and Computational Mechanics
Serial Year :
2020
Journal title :
Journal of Applied and Computational Mechanics
Record number :
2478170
Link To Document :
بازگشت