Modelling of sound propagation in porous media generally requires the knowledge of several transport properties of the materials. In this study, a three-parameter analytical model that links microstructure properties of sintered metal fibre materials and non-acoustical parameters of the JCAL model is used and modified, and two heuristic approaches based on the established model for inverse acoustic characterisation of fibrous metal felts are developed. The geometric microstructure of sintered fibrous metals is simplified to derive the relationship between pores and fibre diameters. The new set of transport parameters in the modified three-parameter model can cover two controllable parameters during the fabrication process of fibrous metals....
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...
International audienceThe characterisation of fibrous materials is an important part of the process ...
As a reaction to the increasing noise pollution, caused by the expansion of airports close to reside...
Characterization of sound absorbing materials is essential to predict its acoustic behaviour. The mo...
A combined theoretical and experimental study is carried out to investigate the anisotropic acoustic...
International audienceAt macro-scale, semi-phenomenological models are used to describe the acoustic...
From a circular economy perspective, the acoustic characterization of steelwork by-products is a top...
From a circular economy perspective, the acoustic characterization of steelwork by-products is a top...
Copyright 2017 Acoustical Society of America. This article may be downloaded for personal use only.A...
To investigate the changing rules between sound absorbing performance and geometrical parameters of ...
In modeling the acoustical behavior of porous materials, the determination of the physical parameter...
The knowledge of the complex properties of fibrous and porous materials has become of paramount impo...
Metal foams fabricated via sintering offer novel mechanical and acoustic properties. Previously, pol...
We present a design method for calculating and optimizing sound absorption coefficient of multi-laye...
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...
International audienceThe characterisation of fibrous materials is an important part of the process ...
As a reaction to the increasing noise pollution, caused by the expansion of airports close to reside...
Characterization of sound absorbing materials is essential to predict its acoustic behaviour. The mo...
A combined theoretical and experimental study is carried out to investigate the anisotropic acoustic...
International audienceAt macro-scale, semi-phenomenological models are used to describe the acoustic...
From a circular economy perspective, the acoustic characterization of steelwork by-products is a top...
From a circular economy perspective, the acoustic characterization of steelwork by-products is a top...
Copyright 2017 Acoustical Society of America. This article may be downloaded for personal use only.A...
To investigate the changing rules between sound absorbing performance and geometrical parameters of ...
In modeling the acoustical behavior of porous materials, the determination of the physical parameter...
The knowledge of the complex properties of fibrous and porous materials has become of paramount impo...
Metal foams fabricated via sintering offer novel mechanical and acoustic properties. Previously, pol...
We present a design method for calculating and optimizing sound absorption coefficient of multi-laye...
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...
International audienceThe characterisation of fibrous materials is an important part of the process ...