The sound absorption ability of porous materials is strongly related to the underlying microstructure. In this paper, acoustic properties of a polyurethane (PU) foam are determined from its microstructure with a computational homogenization method. The foam is analyzed using X-ray computed tomography (CT) and scanning electron microscopy (SEM). Based on the obtained microstructure information, a parallel model of a fully-open and a partially-open Kelvin cell with thin membranes is built to represent the foam. The corresponding effective material parameters, including the dynamic density and the stiffness tensor, are obtained by applying a computational homogenization approach. Numerical simulations of an impedance tube test based on Biot’s ...
International audienceUsing numerical homogenization techniques at microstructure scale, one can sim...
International audienceStraightforward semi-phenomenological models have been developed for highly po...
Session "Advances in sound absorbing materials"International audienceIdentifying microscopic geometr...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
In this paper, a computational homogenization approach is exploited to study the effects of the micr...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
In this paper, a computational homogenization approach is exploited to study the effects of the micr...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for acoustic shielding, which is important for high...
International audienceUsing numerical homogenization techniques at microstructure scale, one can sim...
International audienceStraightforward semi-phenomenological models have been developed for highly po...
Session "Advances in sound absorbing materials"International audienceIdentifying microscopic geometr...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
In this paper, a computational homogenization approach is exploited to study the effects of the micr...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
In this paper, a computational homogenization approach is exploited to study the effects of the micr...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for acoustic shielding, which is important for high...
International audienceUsing numerical homogenization techniques at microstructure scale, one can sim...
International audienceStraightforward semi-phenomenological models have been developed for highly po...
Session "Advances in sound absorbing materials"International audienceIdentifying microscopic geometr...