Please use this identifier to cite or link to this item: https://hdl.handle.net/20.500.14279/28941
Title: Stability of Composite Cylindrical Shells with Nonclassical Hygrothermal-Electro-Elastic Coupled Loads
Authors: Ni, Yiwen 
Zhu, Shengbo 
Tong, Zhenzhen 
Xu, Xinsheng 
Zhou, Zhenhuan 
Lim, C. W. 
Wadee, Ahmer M. 
Yiatros, Stylianos 
Major Field of Science: Engineering and Technology
Field Category: Civil Engineering
Issue Date: 1-Feb-2023
Source: Journal of Engineering Mechanics, 2023, vol. 149, iss. 2
Volume: 149
Issue: 2
Journal: Journal of Engineering Mechanics 
Abstract: An accurate nonlinear hygrothermal-electro-elastic (HTEE) buckling analysis of piezoelectric fiber-reinforced composite cylindrical shells subjected to the coupled loading effects of axial compression and hydrostatic pressure was established by considering the nonuniform prebuckling effect. Nonlinear governing equations were derived based on higher-order shear deformation theory and Novozhilov's nonlinear shell theory. Accurate critical buckling stresses and pressures and explicit buckling modes for both axisymmetric and nonaxisymmetric buckling were obtained by the Galerkin method. A comparison between the new prediction and existing results is presented and excellent agreement is reported. A comprehensive parametric study of geometric parameters, end conditions, distribution patterns, and hygrothermal-electric multiphysical fields on the buckling behavior of HTEE composite cylindrical shell is also analyzed and discussed.
URI: https://hdl.handle.net/20.500.14279/28941
ISSN: 07339399
DOI: 10.1061/JENMDT.EMENG-6867
Rights: © American Society of Civil Engineers
Type: Article
Affiliation : Ningbo University 
Dalian University of Technology 
International Center for Computational Mechanics, Dalian 
City University of Hong Kong 
Imperial College London 
Cyprus University of Technology 
Publication Type: Peer Reviewed
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