Dynamic homogenization of viscoelastic phononic metasolids

The effects of dissipation in metamaterials is a sensitive issue and, although experiments show that they are more than relevant, their theoretical study and modeling has received less attention. In this work, we study the effects of viscosity on the dissipation of elastic metamaterials. It is found...

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Main Authors: Hélène Pichard, Daniel Torrent
Format: Article
Language:English
Published: AIP Publishing LLC 2016-12-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.4968618
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spelling doaj-d9693226dbb54ef6a945ab37c84a1e312020-11-25T00:40:18ZengAIP Publishing LLCAIP Advances2158-32262016-12-01612121705121705-810.1063/1.4968618013694ADVDynamic homogenization of viscoelastic phononic metasolidsHélène Pichard0Daniel Torrent1Université de Bordeaux—Institut de Mécanique et d’Ingénierie, CNRS UMR 5295, Talence, FranceUniversite de Bordeaux—Centre de recherche Paul Pascal, CNRS UPR 8641, Pessac, FranceThe effects of dissipation in metamaterials is a sensitive issue and, although experiments show that they are more than relevant, their theoretical study and modeling has received less attention. In this work, we study the effects of viscosity on the dissipation of elastic metamaterials. It is found that these metasolids present effective constitutive parameters that are in general complex, in contrast with common elastic materials where the mass density is a real valued scalar quantity and dissipation enters only through the stiffness tensor. It is also found that, while in the low frequency limit the dissipation is higher as the viscoelastic coefficient is also higher, near a resonance of the metamaterial this condition does not hold, since the imaginary part of the constitutive parameters is higher as the viscosity is smaller. Finally, the effects of viscosity are studied on the non-local properties of the effective parameters, and it is found that this property is attenuated with dissipation although still has to be considered.http://dx.doi.org/10.1063/1.4968618
collection DOAJ
language English
format Article
sources DOAJ
author Hélène Pichard
Daniel Torrent
spellingShingle Hélène Pichard
Daniel Torrent
Dynamic homogenization of viscoelastic phononic metasolids
AIP Advances
author_facet Hélène Pichard
Daniel Torrent
author_sort Hélène Pichard
title Dynamic homogenization of viscoelastic phononic metasolids
title_short Dynamic homogenization of viscoelastic phononic metasolids
title_full Dynamic homogenization of viscoelastic phononic metasolids
title_fullStr Dynamic homogenization of viscoelastic phononic metasolids
title_full_unstemmed Dynamic homogenization of viscoelastic phononic metasolids
title_sort dynamic homogenization of viscoelastic phononic metasolids
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2016-12-01
description The effects of dissipation in metamaterials is a sensitive issue and, although experiments show that they are more than relevant, their theoretical study and modeling has received less attention. In this work, we study the effects of viscosity on the dissipation of elastic metamaterials. It is found that these metasolids present effective constitutive parameters that are in general complex, in contrast with common elastic materials where the mass density is a real valued scalar quantity and dissipation enters only through the stiffness tensor. It is also found that, while in the low frequency limit the dissipation is higher as the viscoelastic coefficient is also higher, near a resonance of the metamaterial this condition does not hold, since the imaginary part of the constitutive parameters is higher as the viscosity is smaller. Finally, the effects of viscosity are studied on the non-local properties of the effective parameters, and it is found that this property is attenuated with dissipation although still has to be considered.
url http://dx.doi.org/10.1063/1.4968618
work_keys_str_mv AT helenepichard dynamichomogenizationofviscoelasticphononicmetasolids
AT danieltorrent dynamichomogenizationofviscoelasticphononicmetasolids
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