A combined theoretical and experimental study is carried out to investigate the anisotropic acoustic properties of sintered fibrous metals. In the theoretical model, based on the transversal and longitudinal dynamic mass densities and effective bulk modulus of randomly placed parallel fibers, the dynamic mass densities and effective dynamic bulk modulus of a sintered fibrous metal in the direction normal and parallel to its surface are obtained. Sound absorption coefficient, sound speed and attenuation coefficient in each of the two directions are calculated once the dynamic mass densities and effective dynamic bulk modulus are determined. For validation, experimental measurements are performed, with good agreement between theoretical predi...
Highly porous, fibrous bulk sound absorbing materials are studied with a view toward understanding t...
To investigate the changing rules between sound absorbing performance and geometrical parameters of ...
he acoustic modelling of fibrous materials is fundamental for the design of a sound-absorbing acoust...
Copyright 2017 Acoustical Society of America. This article may be downloaded for personal use only.A...
Modelling of sound propagation in porous media generally requires the knowledge of several transport...
AbstractWe present a design method for calculating and optimizing sound absorption coefficient of mu...
In this work, theoretical models have been developed for predicting the acoustical properties of fib...
We present a design method for calculating and optimizing sound absorption coefficient of multi-laye...
The acoustic behaviour of fibrous materials which depends upon physical structural parameters has be...
The absorption characteristics of several fibrous materials of the Owens Corning 700 Fiberglas Serie...
The production processes of porous materials introduce an inherent geometric anisotropy in the mater...
Porous metal materials are widely used in noise control with high sound pressure applications such a...
It is common for fibrous porous materials to be used in high temperature applications such as automo...
Characterization of sound absorbing materials is essential to predict its acoustic behaviour. The mo...
Metal foams fabricated via sintering offer novel mechanical and acoustic properties. Previously, pol...
Highly porous, fibrous bulk sound absorbing materials are studied with a view toward understanding t...
To investigate the changing rules between sound absorbing performance and geometrical parameters of ...
he acoustic modelling of fibrous materials is fundamental for the design of a sound-absorbing acoust...
Copyright 2017 Acoustical Society of America. This article may be downloaded for personal use only.A...
Modelling of sound propagation in porous media generally requires the knowledge of several transport...
AbstractWe present a design method for calculating and optimizing sound absorption coefficient of mu...
In this work, theoretical models have been developed for predicting the acoustical properties of fib...
We present a design method for calculating and optimizing sound absorption coefficient of multi-laye...
The acoustic behaviour of fibrous materials which depends upon physical structural parameters has be...
The absorption characteristics of several fibrous materials of the Owens Corning 700 Fiberglas Serie...
The production processes of porous materials introduce an inherent geometric anisotropy in the mater...
Porous metal materials are widely used in noise control with high sound pressure applications such a...
It is common for fibrous porous materials to be used in high temperature applications such as automo...
Characterization of sound absorbing materials is essential to predict its acoustic behaviour. The mo...
Metal foams fabricated via sintering offer novel mechanical and acoustic properties. Previously, pol...
Highly porous, fibrous bulk sound absorbing materials are studied with a view toward understanding t...
To investigate the changing rules between sound absorbing performance and geometrical parameters of ...
he acoustic modelling of fibrous materials is fundamental for the design of a sound-absorbing acoust...