© 2018 IEEE. This paper investigates the sound transmission loss of locally resonant metamaterial and phononic crystal plates using unit cell and finite plate analysis. Plates with flexural wave stop bands can lead to enhanced vibro-acoustic performance. The acoustic insulation performance and frequency range depends, however, on the underlying stop band mechanism. While unit cell analysis suggests sound transmission loss improvements regardless of the mechanism, the vibro-acoustic performance of their finite plate counterparts can differ significantly.status: publishe
© 2014 Elsevier Ltd. The application of materials with stop bands is emerging as a novel way of crea...
In search for novel materials which combine lightweight characteristics with good acoustical behavio...
To enhance the sound insulation performance of double panel partitions at their mass-air-mass resona...
The bending wave stop band behavior of locally resonant metamaterial and phononic crystal plates can...
The bending wave stop band behavior of locally resonant metamaterial and phononic crystal plates can...
Vibro-acoustic locally resonant metamaterials with structural stop band behaviour can lead to a stro...
This paper discusses the sound transmission loss of a locally resonant metamaterial, by application ...
This paper discusses the sound transmission loss of a locally resonant metamaterial, by application ...
International audienceWe report theoretically and numerically on the sound transmission loss perform...
Membrane- and plate-type acoustic metamaterials are thin membranes or plates consisting of periodic ...
Over the past decades, tightening ecologic and economic requirements have urged industry to introduc...
A growing ecological awareness has led to a shift towards lightweight materials. These materials, ho...
Thin plate-like metamaterials (e.g. membrane-type acoustic metamaterials or inhomogeneous plates) ha...
A growing ecological awareness has led to a shift towards lightweight materials. These materials, ho...
In search for novel materials which combine lightweight characteristics with good acoustical behavio...
© 2014 Elsevier Ltd. The application of materials with stop bands is emerging as a novel way of crea...
In search for novel materials which combine lightweight characteristics with good acoustical behavio...
To enhance the sound insulation performance of double panel partitions at their mass-air-mass resona...
The bending wave stop band behavior of locally resonant metamaterial and phononic crystal plates can...
The bending wave stop band behavior of locally resonant metamaterial and phononic crystal plates can...
Vibro-acoustic locally resonant metamaterials with structural stop band behaviour can lead to a stro...
This paper discusses the sound transmission loss of a locally resonant metamaterial, by application ...
This paper discusses the sound transmission loss of a locally resonant metamaterial, by application ...
International audienceWe report theoretically and numerically on the sound transmission loss perform...
Membrane- and plate-type acoustic metamaterials are thin membranes or plates consisting of periodic ...
Over the past decades, tightening ecologic and economic requirements have urged industry to introduc...
A growing ecological awareness has led to a shift towards lightweight materials. These materials, ho...
Thin plate-like metamaterials (e.g. membrane-type acoustic metamaterials or inhomogeneous plates) ha...
A growing ecological awareness has led to a shift towards lightweight materials. These materials, ho...
In search for novel materials which combine lightweight characteristics with good acoustical behavio...
© 2014 Elsevier Ltd. The application of materials with stop bands is emerging as a novel way of crea...
In search for novel materials which combine lightweight characteristics with good acoustical behavio...
To enhance the sound insulation performance of double panel partitions at their mass-air-mass resona...