Theoretical Study on the Influence of Hard Coating on Vibration Characteristics of Fiber-Reinforced Composite Thin Shell

The influence of hard coating on vibration characteristics of fiber-reinforced composite thin shell (FCTS) is investigated theoretically. The theoretical model of the hard coating FCTS is firstly established by using the classical laminated shell theory, Love’s first approximation theory, Rayleigh-R...

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Main Authors: Hui Li, Zhengxue Zhou, Hai Sun, Wei Sun, Bangchun Wen
Format: Article
Language:English
Published: MDPI AG 2018-02-01
Series:Coatings
Subjects:
Online Access:http://www.mdpi.com/2079-6412/8/3/87
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spelling doaj-ca30e08201ac4cba95d375d71dc3660e2020-11-24T21:05:52ZengMDPI AGCoatings2079-64122018-02-01838710.3390/coatings8030087coatings8030087Theoretical Study on the Influence of Hard Coating on Vibration Characteristics of Fiber-Reinforced Composite Thin ShellHui Li0Zhengxue Zhou1Hai Sun2Wei Sun3Bangchun Wen4School of Mechanical Engineering & Automation, Northeastern University, Shenyang 110819, ChinaSchool of Mechanical Engineering & Automation, Northeastern University, Shenyang 110819, ChinaSchool of Mechanical Engineering & Automation, Northeastern University, Shenyang 110819, ChinaSchool of Mechanical Engineering & Automation, Northeastern University, Shenyang 110819, ChinaSchool of Mechanical Engineering & Automation, Northeastern University, Shenyang 110819, ChinaThe influence of hard coating on vibration characteristics of fiber-reinforced composite thin shell (FCTS) is investigated theoretically. The theoretical model of the hard coating FCTS is firstly established by using the classical laminated shell theory, Love’s first approximation theory, Rayleigh-Ritz method, and strain energy method. The values of the natural frequency, modal shape, resonant response, and modal loss factor of the hard-coating shell are obtained, and the corresponding analysis procedure is also summarized. The verification of such a theoretical method is performed by a case study, and the analysis results show a good agreement between the presented method and finite element method. The main findings from this study include: (I) The natural frequencies of FCTS with hard coating firstly decrease and then increase with the increase of elastic modulus and loss factor of hard coating, and they also show an increasing tendency when the thickness of hard coating rises; (II) Increasing the values of elastic modulus, loss factor, and thickness of hard coating can help to reduce the vibration response of FCTS. However, with the increase of modal order of the composite shell, the reduction rates of resonant responses and the increased levels of modal loss factor will decrease.http://www.mdpi.com/2079-6412/8/3/87vibration characteristicsfiber-reinforced composite thin shellhard coatingvibration reduction
collection DOAJ
language English
format Article
sources DOAJ
author Hui Li
Zhengxue Zhou
Hai Sun
Wei Sun
Bangchun Wen
spellingShingle Hui Li
Zhengxue Zhou
Hai Sun
Wei Sun
Bangchun Wen
Theoretical Study on the Influence of Hard Coating on Vibration Characteristics of Fiber-Reinforced Composite Thin Shell
Coatings
vibration characteristics
fiber-reinforced composite thin shell
hard coating
vibration reduction
author_facet Hui Li
Zhengxue Zhou
Hai Sun
Wei Sun
Bangchun Wen
author_sort Hui Li
title Theoretical Study on the Influence of Hard Coating on Vibration Characteristics of Fiber-Reinforced Composite Thin Shell
title_short Theoretical Study on the Influence of Hard Coating on Vibration Characteristics of Fiber-Reinforced Composite Thin Shell
title_full Theoretical Study on the Influence of Hard Coating on Vibration Characteristics of Fiber-Reinforced Composite Thin Shell
title_fullStr Theoretical Study on the Influence of Hard Coating on Vibration Characteristics of Fiber-Reinforced Composite Thin Shell
title_full_unstemmed Theoretical Study on the Influence of Hard Coating on Vibration Characteristics of Fiber-Reinforced Composite Thin Shell
title_sort theoretical study on the influence of hard coating on vibration characteristics of fiber-reinforced composite thin shell
publisher MDPI AG
series Coatings
issn 2079-6412
publishDate 2018-02-01
description The influence of hard coating on vibration characteristics of fiber-reinforced composite thin shell (FCTS) is investigated theoretically. The theoretical model of the hard coating FCTS is firstly established by using the classical laminated shell theory, Love’s first approximation theory, Rayleigh-Ritz method, and strain energy method. The values of the natural frequency, modal shape, resonant response, and modal loss factor of the hard-coating shell are obtained, and the corresponding analysis procedure is also summarized. The verification of such a theoretical method is performed by a case study, and the analysis results show a good agreement between the presented method and finite element method. The main findings from this study include: (I) The natural frequencies of FCTS with hard coating firstly decrease and then increase with the increase of elastic modulus and loss factor of hard coating, and they also show an increasing tendency when the thickness of hard coating rises; (II) Increasing the values of elastic modulus, loss factor, and thickness of hard coating can help to reduce the vibration response of FCTS. However, with the increase of modal order of the composite shell, the reduction rates of resonant responses and the increased levels of modal loss factor will decrease.
topic vibration characteristics
fiber-reinforced composite thin shell
hard coating
vibration reduction
url http://www.mdpi.com/2079-6412/8/3/87
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AT zhengxuezhou theoreticalstudyontheinfluenceofhardcoatingonvibrationcharacteristicsoffiberreinforcedcompositethinshell
AT haisun theoreticalstudyontheinfluenceofhardcoatingonvibrationcharacteristicsoffiberreinforcedcompositethinshell
AT weisun theoreticalstudyontheinfluenceofhardcoatingonvibrationcharacteristicsoffiberreinforcedcompositethinshell
AT bangchunwen theoreticalstudyontheinfluenceofhardcoatingonvibrationcharacteristicsoffiberreinforcedcompositethinshell
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