Cargando…

Adjustable Sound Absorber of Multiple Parallel-Connection Helmholtz Resonators with Tunable Apertures Prepared by Low-Force Stereolithography of Photopolymer Resin

The variable noise spectrum for many actual application scenarios requires a sound absorber to adapt to this variation. An adjustable sound absorber of multiple parallel-connection Helmholtz resonators with tunable apertures (TA–MPCHRs) is prepared by the low-force stereolithography of photopolymer...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Fei, Bi, Shaohua, Shen, Xinmin, Li, Zhizhong, Zhang, Xiangpo, Wang, Enshuai, Yang, Xiaocui, Peng, Wenqiang, Huang, Changchuang, Liang, Peng, Sun, Guoxin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9786290/
https://www.ncbi.nlm.nih.gov/pubmed/36559802
http://dx.doi.org/10.3390/polym14245434
_version_ 1784858256561143808
author Yang, Fei
Bi, Shaohua
Shen, Xinmin
Li, Zhizhong
Zhang, Xiangpo
Wang, Enshuai
Yang, Xiaocui
Peng, Wenqiang
Huang, Changchuang
Liang, Peng
Sun, Guoxin
author_facet Yang, Fei
Bi, Shaohua
Shen, Xinmin
Li, Zhizhong
Zhang, Xiangpo
Wang, Enshuai
Yang, Xiaocui
Peng, Wenqiang
Huang, Changchuang
Liang, Peng
Sun, Guoxin
author_sort Yang, Fei
collection PubMed
description The variable noise spectrum for many actual application scenarios requires a sound absorber to adapt to this variation. An adjustable sound absorber of multiple parallel-connection Helmholtz resonators with tunable apertures (TA–MPCHRs) is prepared by the low-force stereolithography of photopolymer resin, which aims to improve the applicability of the proposed sound absorber for noise with various frequency ranges. The proposed TA–MPCHR metamaterial contains five metamaterial cells. Each metamaterial cell contains nine single Helmholtz resonators. It is treated as a basic structural unit for an array arrangement. The tunable aperture is realized by utilizing four segments of extendable cylindrical chambers with length l(0), which indicates that the length of the aperture l is in the range of [l(0), 4l(0)], and that it is tunable. With a certain group of specific parameters for the proposed TA–MPCHR, the influence of the tunable aperture with a variable length is investigated by acoustic finite element simulation with a two-dimensional rotational symmetric model. For the given noise spectrum of certain actual equipment with four operating modes, the TA–MPCHR sample with a limited total thickness of 40 mm is optimized, which is made of photopolymer resin by the low-force stereolithography, and its actual average sound absorption coefficients for the frequency ranges of 500–800 Hz, 550–900 Hz, 600–1000 Hz and 700–1150 Hz reach 0.9203, 0.9202, 0.9436 and 0.9561, respectively. Relative to common non-adjustable metamaterials, the TA–MPCHR made of photopolymer resin can reduce occupied space and improve absorption efficiency, which is favorable in promoting its practical applications in the noise pollution prevention.
format Online
Article
Text
id pubmed-9786290
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-97862902022-12-24 Adjustable Sound Absorber of Multiple Parallel-Connection Helmholtz Resonators with Tunable Apertures Prepared by Low-Force Stereolithography of Photopolymer Resin Yang, Fei Bi, Shaohua Shen, Xinmin Li, Zhizhong Zhang, Xiangpo Wang, Enshuai Yang, Xiaocui Peng, Wenqiang Huang, Changchuang Liang, Peng Sun, Guoxin Polymers (Basel) Article The variable noise spectrum for many actual application scenarios requires a sound absorber to adapt to this variation. An adjustable sound absorber of multiple parallel-connection Helmholtz resonators with tunable apertures (TA–MPCHRs) is prepared by the low-force stereolithography of photopolymer resin, which aims to improve the applicability of the proposed sound absorber for noise with various frequency ranges. The proposed TA–MPCHR metamaterial contains five metamaterial cells. Each metamaterial cell contains nine single Helmholtz resonators. It is treated as a basic structural unit for an array arrangement. The tunable aperture is realized by utilizing four segments of extendable cylindrical chambers with length l(0), which indicates that the length of the aperture l is in the range of [l(0), 4l(0)], and that it is tunable. With a certain group of specific parameters for the proposed TA–MPCHR, the influence of the tunable aperture with a variable length is investigated by acoustic finite element simulation with a two-dimensional rotational symmetric model. For the given noise spectrum of certain actual equipment with four operating modes, the TA–MPCHR sample with a limited total thickness of 40 mm is optimized, which is made of photopolymer resin by the low-force stereolithography, and its actual average sound absorption coefficients for the frequency ranges of 500–800 Hz, 550–900 Hz, 600–1000 Hz and 700–1150 Hz reach 0.9203, 0.9202, 0.9436 and 0.9561, respectively. Relative to common non-adjustable metamaterials, the TA–MPCHR made of photopolymer resin can reduce occupied space and improve absorption efficiency, which is favorable in promoting its practical applications in the noise pollution prevention. MDPI 2022-12-12 /pmc/articles/PMC9786290/ /pubmed/36559802 http://dx.doi.org/10.3390/polym14245434 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yang, Fei
Bi, Shaohua
Shen, Xinmin
Li, Zhizhong
Zhang, Xiangpo
Wang, Enshuai
Yang, Xiaocui
Peng, Wenqiang
Huang, Changchuang
Liang, Peng
Sun, Guoxin
Adjustable Sound Absorber of Multiple Parallel-Connection Helmholtz Resonators with Tunable Apertures Prepared by Low-Force Stereolithography of Photopolymer Resin
title Adjustable Sound Absorber of Multiple Parallel-Connection Helmholtz Resonators with Tunable Apertures Prepared by Low-Force Stereolithography of Photopolymer Resin
title_full Adjustable Sound Absorber of Multiple Parallel-Connection Helmholtz Resonators with Tunable Apertures Prepared by Low-Force Stereolithography of Photopolymer Resin
title_fullStr Adjustable Sound Absorber of Multiple Parallel-Connection Helmholtz Resonators with Tunable Apertures Prepared by Low-Force Stereolithography of Photopolymer Resin
title_full_unstemmed Adjustable Sound Absorber of Multiple Parallel-Connection Helmholtz Resonators with Tunable Apertures Prepared by Low-Force Stereolithography of Photopolymer Resin
title_short Adjustable Sound Absorber of Multiple Parallel-Connection Helmholtz Resonators with Tunable Apertures Prepared by Low-Force Stereolithography of Photopolymer Resin
title_sort adjustable sound absorber of multiple parallel-connection helmholtz resonators with tunable apertures prepared by low-force stereolithography of photopolymer resin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9786290/
https://www.ncbi.nlm.nih.gov/pubmed/36559802
http://dx.doi.org/10.3390/polym14245434
work_keys_str_mv AT yangfei adjustablesoundabsorberofmultipleparallelconnectionhelmholtzresonatorswithtunableaperturespreparedbylowforcestereolithographyofphotopolymerresin
AT bishaohua adjustablesoundabsorberofmultipleparallelconnectionhelmholtzresonatorswithtunableaperturespreparedbylowforcestereolithographyofphotopolymerresin
AT shenxinmin adjustablesoundabsorberofmultipleparallelconnectionhelmholtzresonatorswithtunableaperturespreparedbylowforcestereolithographyofphotopolymerresin
AT lizhizhong adjustablesoundabsorberofmultipleparallelconnectionhelmholtzresonatorswithtunableaperturespreparedbylowforcestereolithographyofphotopolymerresin
AT zhangxiangpo adjustablesoundabsorberofmultipleparallelconnectionhelmholtzresonatorswithtunableaperturespreparedbylowforcestereolithographyofphotopolymerresin
AT wangenshuai adjustablesoundabsorberofmultipleparallelconnectionhelmholtzresonatorswithtunableaperturespreparedbylowforcestereolithographyofphotopolymerresin
AT yangxiaocui adjustablesoundabsorberofmultipleparallelconnectionhelmholtzresonatorswithtunableaperturespreparedbylowforcestereolithographyofphotopolymerresin
AT pengwenqiang adjustablesoundabsorberofmultipleparallelconnectionhelmholtzresonatorswithtunableaperturespreparedbylowforcestereolithographyofphotopolymerresin
AT huangchangchuang adjustablesoundabsorberofmultipleparallelconnectionhelmholtzresonatorswithtunableaperturespreparedbylowforcestereolithographyofphotopolymerresin
AT liangpeng adjustablesoundabsorberofmultipleparallelconnectionhelmholtzresonatorswithtunableaperturespreparedbylowforcestereolithographyofphotopolymerresin
AT sunguoxin adjustablesoundabsorberofmultipleparallelconnectionhelmholtzresonatorswithtunableaperturespreparedbylowforcestereolithographyofphotopolymerresin