Analysis of Sound Absorption Performance of Underwater Acoustic Coating considering Different Poisson’s Ratio Values

Viscoelastic material acoustic coating plays an important role in noise and vibration control of underwater equipment. The dynamic mechanical properties of the viscoelastic material have a direct effect on the sound absorption performance of the acoustic coating. The influence of Poisson’s ratio on...

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Main Authors: Zhuhui Luo, Tao Li, Yuanwei Yan, Zhou Zhou
Format: Article
Language:English
Published: Wiley 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/4861877
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author Zhuhui Luo
Tao Li
Yuanwei Yan
Zhou Zhou
author_facet Zhuhui Luo
Tao Li
Yuanwei Yan
Zhou Zhou
author_sort Zhuhui Luo
collection DOAJ
description Viscoelastic material acoustic coating plays an important role in noise and vibration control of underwater equipment. The dynamic mechanical properties of the viscoelastic material have a direct effect on the sound absorption performance of the acoustic coating. The influence of Poisson’s ratio on sound absorption performance is studied. A finite element model was established to calculate the sound absorption performance of three typical acoustic coatings: homogeneous acoustic coatings, Alberich acoustic coatings, and trumpet cavity acoustic coatings, and the influence of Poisson’s ratio on the sound absorption performance of the three kinds of acoustic coatings was analyzed. The results show that when Poisson’s ratio varies from 0.49 to 0.4999, the larger Poisson’s ratio is, the larger the frequency of the first absorption peak is, the smaller the absorption coefficient below the frequency of the first absorption peak is, and the smaller the average absorption coefficient in the whole analysis frequency range is. The dynamic Poisson’s ratio with the change of frequency is obtained by interpolating the test results and static Poisson’s ratio finite element calculation results. The calculation results show that the dynamic Poisson’s ratio can get more accurate calculation results. This work can provide a reference for researchers to set Poisson’s ratio in theoretical analysis and finite element analysis of acoustic coating.
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institution Kabale University
issn 1070-9622
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language English
publishDate 2021-01-01
publisher Wiley
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series Shock and Vibration
spelling doaj-art-9bb4cc61793247f6b62fe553aaa3743c2025-08-20T03:36:54ZengWileyShock and Vibration1070-96221875-92032021-01-01202110.1155/2021/48618774861877Analysis of Sound Absorption Performance of Underwater Acoustic Coating considering Different Poisson’s Ratio ValuesZhuhui Luo0Tao Li1Yuanwei Yan2Zhou Zhou3School of Mechanical Engineering, Hunan University of Technology, Zhuzhou, ChinaSchool of Mechanical Engineering, Hunan University of Technology, Zhuzhou, ChinaZhuzhou Times New Materials Technology CO,.LTD, Zhuzhou, ChinaZhuzhou Times New Materials Technology CO,.LTD, Zhuzhou, ChinaViscoelastic material acoustic coating plays an important role in noise and vibration control of underwater equipment. The dynamic mechanical properties of the viscoelastic material have a direct effect on the sound absorption performance of the acoustic coating. The influence of Poisson’s ratio on sound absorption performance is studied. A finite element model was established to calculate the sound absorption performance of three typical acoustic coatings: homogeneous acoustic coatings, Alberich acoustic coatings, and trumpet cavity acoustic coatings, and the influence of Poisson’s ratio on the sound absorption performance of the three kinds of acoustic coatings was analyzed. The results show that when Poisson’s ratio varies from 0.49 to 0.4999, the larger Poisson’s ratio is, the larger the frequency of the first absorption peak is, the smaller the absorption coefficient below the frequency of the first absorption peak is, and the smaller the average absorption coefficient in the whole analysis frequency range is. The dynamic Poisson’s ratio with the change of frequency is obtained by interpolating the test results and static Poisson’s ratio finite element calculation results. The calculation results show that the dynamic Poisson’s ratio can get more accurate calculation results. This work can provide a reference for researchers to set Poisson’s ratio in theoretical analysis and finite element analysis of acoustic coating.http://dx.doi.org/10.1155/2021/4861877
spellingShingle Zhuhui Luo
Tao Li
Yuanwei Yan
Zhou Zhou
Analysis of Sound Absorption Performance of Underwater Acoustic Coating considering Different Poisson’s Ratio Values
Shock and Vibration
title Analysis of Sound Absorption Performance of Underwater Acoustic Coating considering Different Poisson’s Ratio Values
title_full Analysis of Sound Absorption Performance of Underwater Acoustic Coating considering Different Poisson’s Ratio Values
title_fullStr Analysis of Sound Absorption Performance of Underwater Acoustic Coating considering Different Poisson’s Ratio Values
title_full_unstemmed Analysis of Sound Absorption Performance of Underwater Acoustic Coating considering Different Poisson’s Ratio Values
title_short Analysis of Sound Absorption Performance of Underwater Acoustic Coating considering Different Poisson’s Ratio Values
title_sort analysis of sound absorption performance of underwater acoustic coating considering different poisson s ratio values
url http://dx.doi.org/10.1155/2021/4861877
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AT taoli analysisofsoundabsorptionperformanceofunderwateracousticcoatingconsideringdifferentpoissonsratiovalues
AT yuanweiyan analysisofsoundabsorptionperformanceofunderwateracousticcoatingconsideringdifferentpoissonsratiovalues
AT zhouzhou analysisofsoundabsorptionperformanceofunderwateracousticcoatingconsideringdifferentpoissonsratiovalues