Nonlinear dynamic characteristics of smart FG-GPLRC sandwich varying thickness truncated conical shell with internal resonance for first three order modes
•A novel model for FG-GPLRC truncated smart variable thickness sandwich conical shell is established.•1:1:1 internal resonance phenomenon of the sandwich conical shell has been discovered.•The effects of variable stiffness on the system are discussed.•The effects of the various material and structur...
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Published in | Aerospace science and technology Vol. 155; p. 109672 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier Masson SAS
01.12.2024
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Subjects | |
Online Access | Get full text |
ISSN | 1270-9638 |
DOI | 10.1016/j.ast.2024.109672 |
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Abstract | •A novel model for FG-GPLRC truncated smart variable thickness sandwich conical shell is established.•1:1:1 internal resonance phenomenon of the sandwich conical shell has been discovered.•The effects of variable stiffness on the system are discussed.•The effects of the various material and structural parameters on nonlinear dynamic characteristics are considered.
This paper examines the 1:1:1 internal resonant nonlinear dynamic characteristic of the simply supported varying thickness functionally graded graphene platelets reinforced composite (FG-GPLRC) smart truncated sandwich conical shell subject to the combined effects of transverse load and in-plane force. The truncated smart sandwich conical shell is composed of an FG-GPLRC varying thickness core and two magneto-electro-elastic face layers, whose material properties and constitutive relations are individually identified by the rule of mixture, improved Halpin-Tsai approach and generalized Hooke's law. Utilizing the first-order shear deformation theory (FSDT), von Karman's geometrical nonlinearity, Hamilton's principle and Galerkin technique, the 3DOF dimensionless nonlinear dynamic formulations for the truncated smart FG-GPLRC conical shell are established. The multiple-scale technique is applied to developing the averaged equations for the truncated smart FG-GPLRC conical shell under combined resonance. The frequency-response and force-response curves, Poincare maps, phase portraits, time history diagrams, bifurcation and maximum Lyapunov exponent diagrams can be portrayed by the nonlinear equation solver and Runge-Kutta approach. The effects of the damping and tuning parameters, transverse and in-plane forces on the 1:1:1 internal resonant nonlinear dynamic characteristic of truncated smart varying thickness FG-GPLRC sandwich conical shell are examined. |
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AbstractList | •A novel model for FG-GPLRC truncated smart variable thickness sandwich conical shell is established.•1:1:1 internal resonance phenomenon of the sandwich conical shell has been discovered.•The effects of variable stiffness on the system are discussed.•The effects of the various material and structural parameters on nonlinear dynamic characteristics are considered.
This paper examines the 1:1:1 internal resonant nonlinear dynamic characteristic of the simply supported varying thickness functionally graded graphene platelets reinforced composite (FG-GPLRC) smart truncated sandwich conical shell subject to the combined effects of transverse load and in-plane force. The truncated smart sandwich conical shell is composed of an FG-GPLRC varying thickness core and two magneto-electro-elastic face layers, whose material properties and constitutive relations are individually identified by the rule of mixture, improved Halpin-Tsai approach and generalized Hooke's law. Utilizing the first-order shear deformation theory (FSDT), von Karman's geometrical nonlinearity, Hamilton's principle and Galerkin technique, the 3DOF dimensionless nonlinear dynamic formulations for the truncated smart FG-GPLRC conical shell are established. The multiple-scale technique is applied to developing the averaged equations for the truncated smart FG-GPLRC conical shell under combined resonance. The frequency-response and force-response curves, Poincare maps, phase portraits, time history diagrams, bifurcation and maximum Lyapunov exponent diagrams can be portrayed by the nonlinear equation solver and Runge-Kutta approach. The effects of the damping and tuning parameters, transverse and in-plane forces on the 1:1:1 internal resonant nonlinear dynamic characteristic of truncated smart varying thickness FG-GPLRC sandwich conical shell are examined. |
ArticleNumber | 109672 |
Author | Yang, Shaowu Wang, Zhiquan Ma, Wensai Niu, Yan Hao, Yuxin Zhang, Wei |
Author_xml | – sequence: 1 givenname: Shaowu orcidid: 0000-0002-0320-2009 surname: Yang fullname: Yang, Shaowu organization: College of Mechanical Engineering & Beijing Key Laboratory of Measurement and Control of Mechanical and Electrical System, Beijing Information Science and Technology University, Beijing, 100192, PR China – sequence: 2 givenname: Zhiquan surname: Wang fullname: Wang, Zhiquan email: zqwang1211@163.com organization: College of Mechanical Engineering & Beijing Key Laboratory of Measurement and Control of Mechanical and Electrical System, Beijing Information Science and Technology University, Beijing, 100192, PR China – sequence: 3 givenname: Yuxin surname: Hao fullname: Hao, Yuxin organization: College of Mechanical Engineering & Beijing Key Laboratory of Measurement and Control of Mechanical and Electrical System, Beijing Information Science and Technology University, Beijing, 100192, PR China – sequence: 4 givenname: Wei surname: Zhang fullname: Zhang, Wei email: sandyzhang9@163.com organization: Department of Mechanics, Guangxi University, Nanning, 530004, PR China – sequence: 5 givenname: Yan surname: Niu fullname: Niu, Yan organization: School of Aeronautics and Astronautics, Tiangong University, Tianjin, 300387, PR China – sequence: 6 givenname: Wensai surname: Ma fullname: Ma, Wensai organization: Department of Mechanics, Inner Mongolia University of Technology, Hohhot, 010051, PR China |
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Keywords | Bifurcation Sandwich conical shell Varying thickness Nonlinear dynamic characteristic 1:1:1 internal resonance FG-GPLRC |
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SubjectTerms | 1:1:1 internal resonance Bifurcation FG-GPLRC Nonlinear dynamic characteristic Sandwich conical shell Varying thickness |
Title | Nonlinear dynamic characteristics of smart FG-GPLRC sandwich varying thickness truncated conical shell with internal resonance for first three order modes |
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