Vibration Characteristics Analysis of Cylindrical Shell-Plate Coupled Structure Using an Improved Fourier Series Method

A simple yet accurate solution procedure based on the improved Fourier series method (IFSM) is applied to the vibration characteristics analysis of a cylindrical shell-circular plate (S-P) coupled structure subjected to various boundary conditions. By applying four types of coupling springs with arb...

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Main Authors: Yipeng Cao, Runze Zhang, Wenping Zhang, Jinzhao Wang
Format: Article
Language:English
Published: Hindawi Limited 2018-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2018/9214189
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spelling doaj-259b6f6d249a49488e987f9efac14a6f2020-11-24T21:12:40ZengHindawi LimitedShock and Vibration1070-96221875-92032018-01-01201810.1155/2018/92141899214189Vibration Characteristics Analysis of Cylindrical Shell-Plate Coupled Structure Using an Improved Fourier Series MethodYipeng Cao0Runze Zhang1Wenping Zhang2Jinzhao Wang3College of Power and Energy Engineering, Harbin Engineering University, Harbin, ChinaCollege of Power and Energy Engineering, Harbin Engineering University, Harbin, ChinaCollege of Power and Energy Engineering, Harbin Engineering University, Harbin, ChinaLuoyang Sunrui Rubber & Plastic Technology Co., Ltd., Luoyang, ChinaA simple yet accurate solution procedure based on the improved Fourier series method (IFSM) is applied to the vibration characteristics analysis of a cylindrical shell-circular plate (S-P) coupled structure subjected to various boundary conditions. By applying four types of coupling springs with arbitrary stiffness at the junction of the coupled structure, the mechanical coupling effects are completely considered. Each of the plate and shell displacement functions is expressed as the superposition of a two-dimensional Fourier series and several supplementary functions. The unknown series-expansion coefficients are treated as the generalized coordinates and determined using the familiar Rayleigh-Ritz procedure. Using the IFSM, a unified solution for the S-P coupled structure with symmetrical and asymmetrical boundary conditions can be derived directly without the need to change either the equations of motion or the expressions of the displacements. This solution can be verified by comparing the current results with those calculated by the finite-element method (FEM). The effects of several significant factors, including the restraint stiffness, the coupling stiffness, and the situation of coupling, are presented. The forced vibration behaviors of the S-P coupled structure are also illustrated.http://dx.doi.org/10.1155/2018/9214189
collection DOAJ
language English
format Article
sources DOAJ
author Yipeng Cao
Runze Zhang
Wenping Zhang
Jinzhao Wang
spellingShingle Yipeng Cao
Runze Zhang
Wenping Zhang
Jinzhao Wang
Vibration Characteristics Analysis of Cylindrical Shell-Plate Coupled Structure Using an Improved Fourier Series Method
Shock and Vibration
author_facet Yipeng Cao
Runze Zhang
Wenping Zhang
Jinzhao Wang
author_sort Yipeng Cao
title Vibration Characteristics Analysis of Cylindrical Shell-Plate Coupled Structure Using an Improved Fourier Series Method
title_short Vibration Characteristics Analysis of Cylindrical Shell-Plate Coupled Structure Using an Improved Fourier Series Method
title_full Vibration Characteristics Analysis of Cylindrical Shell-Plate Coupled Structure Using an Improved Fourier Series Method
title_fullStr Vibration Characteristics Analysis of Cylindrical Shell-Plate Coupled Structure Using an Improved Fourier Series Method
title_full_unstemmed Vibration Characteristics Analysis of Cylindrical Shell-Plate Coupled Structure Using an Improved Fourier Series Method
title_sort vibration characteristics analysis of cylindrical shell-plate coupled structure using an improved fourier series method
publisher Hindawi Limited
series Shock and Vibration
issn 1070-9622
1875-9203
publishDate 2018-01-01
description A simple yet accurate solution procedure based on the improved Fourier series method (IFSM) is applied to the vibration characteristics analysis of a cylindrical shell-circular plate (S-P) coupled structure subjected to various boundary conditions. By applying four types of coupling springs with arbitrary stiffness at the junction of the coupled structure, the mechanical coupling effects are completely considered. Each of the plate and shell displacement functions is expressed as the superposition of a two-dimensional Fourier series and several supplementary functions. The unknown series-expansion coefficients are treated as the generalized coordinates and determined using the familiar Rayleigh-Ritz procedure. Using the IFSM, a unified solution for the S-P coupled structure with symmetrical and asymmetrical boundary conditions can be derived directly without the need to change either the equations of motion or the expressions of the displacements. This solution can be verified by comparing the current results with those calculated by the finite-element method (FEM). The effects of several significant factors, including the restraint stiffness, the coupling stiffness, and the situation of coupling, are presented. The forced vibration behaviors of the S-P coupled structure are also illustrated.
url http://dx.doi.org/10.1155/2018/9214189
work_keys_str_mv AT yipengcao vibrationcharacteristicsanalysisofcylindricalshellplatecoupledstructureusinganimprovedfourierseriesmethod
AT runzezhang vibrationcharacteristicsanalysisofcylindricalshellplatecoupledstructureusinganimprovedfourierseriesmethod
AT wenpingzhang vibrationcharacteristicsanalysisofcylindricalshellplatecoupledstructureusinganimprovedfourierseriesmethod
AT jinzhaowang vibrationcharacteristicsanalysisofcylindricalshellplatecoupledstructureusinganimprovedfourierseriesmethod
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