Design approach of perforated labyrinth-based acoustic metasurface for selective acoustic levitation manipulation

Abstract This paper proposes a metasurface design approach with perforated labyrinthine path coil structure to manipulate the acoustic transmission with inexpensive materials. The medium in the labyrinthine path coils in this design is air, but not limited to air. A systematic approach has been prop...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Zhike Xu, Ling Qin, Wei Xu, Shuhua Fang, Jiyao Wang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
Materias:
R
Q
Acceso en línea:https://doaj.org/article/3158b5eb688d47e39584344e8f2cd5a7
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:3158b5eb688d47e39584344e8f2cd5a7
record_format dspace
spelling oai:doaj.org-article:3158b5eb688d47e39584344e8f2cd5a72021-12-02T14:37:15ZDesign approach of perforated labyrinth-based acoustic metasurface for selective acoustic levitation manipulation10.1038/s41598-021-87179-x2045-2322https://doaj.org/article/3158b5eb688d47e39584344e8f2cd5a72021-04-01T00:00:00Zhttps://doi.org/10.1038/s41598-021-87179-xhttps://doaj.org/toc/2045-2322Abstract This paper proposes a metasurface design approach with perforated labyrinthine path coil structure to manipulate the acoustic transmission with inexpensive materials. The medium in the labyrinthine path coils in this design is air, but not limited to air. A systematic approach has been proposed for the unit cell design of acoustic metamaterials with adjustable resonance peak frequencies and bandgap width. The theory demonstrates that the length of pipe segments determines resonance peak frequencies and the cross-sectional area ratio adjusts the bandgap width. The proposed design approach uses an equivalent pipe circuit based analytical model to design the high transmission (high pass) and high reflection (low pass) unit cell. The simulation and experiment has been performed to evaluate the validity of the theory. Although there exists some assumptions in the theory, the theory still has enough accuracy to guide the metasurface design illustrated by the simulation and experiment results.Zhike XuLing QinWei XuShuhua FangJiyao WangNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 11, Iss 1, Pp 1-11 (2021)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Zhike Xu
Ling Qin
Wei Xu
Shuhua Fang
Jiyao Wang
Design approach of perforated labyrinth-based acoustic metasurface for selective acoustic levitation manipulation
description Abstract This paper proposes a metasurface design approach with perforated labyrinthine path coil structure to manipulate the acoustic transmission with inexpensive materials. The medium in the labyrinthine path coils in this design is air, but not limited to air. A systematic approach has been proposed for the unit cell design of acoustic metamaterials with adjustable resonance peak frequencies and bandgap width. The theory demonstrates that the length of pipe segments determines resonance peak frequencies and the cross-sectional area ratio adjusts the bandgap width. The proposed design approach uses an equivalent pipe circuit based analytical model to design the high transmission (high pass) and high reflection (low pass) unit cell. The simulation and experiment has been performed to evaluate the validity of the theory. Although there exists some assumptions in the theory, the theory still has enough accuracy to guide the metasurface design illustrated by the simulation and experiment results.
format article
author Zhike Xu
Ling Qin
Wei Xu
Shuhua Fang
Jiyao Wang
author_facet Zhike Xu
Ling Qin
Wei Xu
Shuhua Fang
Jiyao Wang
author_sort Zhike Xu
title Design approach of perforated labyrinth-based acoustic metasurface for selective acoustic levitation manipulation
title_short Design approach of perforated labyrinth-based acoustic metasurface for selective acoustic levitation manipulation
title_full Design approach of perforated labyrinth-based acoustic metasurface for selective acoustic levitation manipulation
title_fullStr Design approach of perforated labyrinth-based acoustic metasurface for selective acoustic levitation manipulation
title_full_unstemmed Design approach of perforated labyrinth-based acoustic metasurface for selective acoustic levitation manipulation
title_sort design approach of perforated labyrinth-based acoustic metasurface for selective acoustic levitation manipulation
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/3158b5eb688d47e39584344e8f2cd5a7
work_keys_str_mv AT zhikexu designapproachofperforatedlabyrinthbasedacousticmetasurfaceforselectiveacousticlevitationmanipulation
AT lingqin designapproachofperforatedlabyrinthbasedacousticmetasurfaceforselectiveacousticlevitationmanipulation
AT weixu designapproachofperforatedlabyrinthbasedacousticmetasurfaceforselectiveacousticlevitationmanipulation
AT shuhuafang designapproachofperforatedlabyrinthbasedacousticmetasurfaceforselectiveacousticlevitationmanipulation
AT jiyaowang designapproachofperforatedlabyrinthbasedacousticmetasurfaceforselectiveacousticlevitationmanipulation
_version_ 1718390999845175296