International audienceThe paper concerns a comparison between measurement results of the acoustic absorption coefficient and impedance using two different methods, the standing wave tube (Kundt's tube) and a free field method. The mounting of the sample in the Kundt's tube is known to be very important. In this paper, the effect of the constraints at the tube wall on the absorption coefficient of an elastic porous material is analysed. It will be shown that the effect of the friction offered by the tube wall is to stiffen the material, compared to its behaviour in the free field. Measurement results together with model calculations are presented. The material parameters used in the models have been determined by separate measurements
In this work, a method for evaluating the characteristic impedance and wave number of homogeneous an...
In acoustics, sound absorption is one of the major definitions and an important factor to be conside...
The impedance tube method is widely used for measuring sound absorption (or reflection) coefficients...
The acoustical properties of isotropic, elastic porous materials are now conventionally specified by...
Performance metrics of poro-elastic materials such as sound absorption and the reflection coefficien...
A two-dimensional model for wave propagation in elastic porous materials has been used to investigat...
[EN] Characterization of sound-absorbing materials is one of the investigation fields that is acquir...
The impedance tube is commonly used to characterize sound absorbing material. In order to obtain rel...
In this thesis, a multi-dimensional model for wave propagation in elastic porous materials is discus...
Earphones and headphones, which are compact electro-acoustic transducers, tend to have a lot of acou...
L'utilisation d'un tube d'impédance rempli d'eau permet la mesure des coefficients de réflexion et d...
International audienceThis study presents a method to measure the acoustic properties of a homogeneo...
International audienceAs standard ASTM E2611 reveals, the normal incidence sound transmission loss m...
Performance metrics, such as the absorption coefficient or the sound transmission loss of (layered) ...
The ability of the standing wave tube to measure the sound transmission loss of porous materials, wh...
In this work, a method for evaluating the characteristic impedance and wave number of homogeneous an...
In acoustics, sound absorption is one of the major definitions and an important factor to be conside...
The impedance tube method is widely used for measuring sound absorption (or reflection) coefficients...
The acoustical properties of isotropic, elastic porous materials are now conventionally specified by...
Performance metrics of poro-elastic materials such as sound absorption and the reflection coefficien...
A two-dimensional model for wave propagation in elastic porous materials has been used to investigat...
[EN] Characterization of sound-absorbing materials is one of the investigation fields that is acquir...
The impedance tube is commonly used to characterize sound absorbing material. In order to obtain rel...
In this thesis, a multi-dimensional model for wave propagation in elastic porous materials is discus...
Earphones and headphones, which are compact electro-acoustic transducers, tend to have a lot of acou...
L'utilisation d'un tube d'impédance rempli d'eau permet la mesure des coefficients de réflexion et d...
International audienceThis study presents a method to measure the acoustic properties of a homogeneo...
International audienceAs standard ASTM E2611 reveals, the normal incidence sound transmission loss m...
Performance metrics, such as the absorption coefficient or the sound transmission loss of (layered) ...
The ability of the standing wave tube to measure the sound transmission loss of porous materials, wh...
In this work, a method for evaluating the characteristic impedance and wave number of homogeneous an...
In acoustics, sound absorption is one of the major definitions and an important factor to be conside...
The impedance tube method is widely used for measuring sound absorption (or reflection) coefficients...