The importance of accurate airflow resistivity predictive models and a subsequent comprehensive database of acoustic material properties for designers cannot be underestimated. With the advances in Finite Element Analysis software, the development of physical prototypes for preliminary testing is becoming obsolete. This is due to the limited resources available and pressure on designers by industry to accomplish tasks in shorter time frames. Therefore, the primary purpose of this research was to develop a comprehensive database of acoustic material properties such as airflow resistivity, bulk density, fibre density and fibre diameter, for designers to draw from, since there is no comprehensive database currently in the literature. Secondly,...
This paper investigates the acoustical properties of polyester non-woven by using practical and nume...
The numeric simulation of acoustic car treatments is based on different models and different param...
The production processes of porous materials introduce an inherent geometric anisotropy in the mater...
The airflow resistivity is a key parameter to consider when evaluating the acoustic performance of a...
Airflow resistivity is a physical parameter which characterizes porous and fibrous sound absorbent m...
The airflow resistivity is a key parameter to predict accurately the acoustical properties of fibrou...
The air flow resistance is a fundamental acoustic parameter to understanding the properties of cellu...
The measurement and use of flow resistance information for the calculation of the acoustical propert...
Modelling of the acoustical properties of polyester fibre materials is usually based on variations ...
International audienceThe characterisation of fibrous materials is an important part of the process ...
A new empirical model has been developed by the authors to predict the flow resistivity, acoustic im...
Empirical models based on flow resistivity are commonly used to determine the bulk properties of por...
Airflow resistivity is one of the most important parameters in the study of the physical properties ...
Acoustic materials are characterized according to their macroscopic and microscopic properties. The ...
In this work, theoretical models have been developed for predicting the acoustical properties of fib...
This paper investigates the acoustical properties of polyester non-woven by using practical and nume...
The numeric simulation of acoustic car treatments is based on different models and different param...
The production processes of porous materials introduce an inherent geometric anisotropy in the mater...
The airflow resistivity is a key parameter to consider when evaluating the acoustic performance of a...
Airflow resistivity is a physical parameter which characterizes porous and fibrous sound absorbent m...
The airflow resistivity is a key parameter to predict accurately the acoustical properties of fibrou...
The air flow resistance is a fundamental acoustic parameter to understanding the properties of cellu...
The measurement and use of flow resistance information for the calculation of the acoustical propert...
Modelling of the acoustical properties of polyester fibre materials is usually based on variations ...
International audienceThe characterisation of fibrous materials is an important part of the process ...
A new empirical model has been developed by the authors to predict the flow resistivity, acoustic im...
Empirical models based on flow resistivity are commonly used to determine the bulk properties of por...
Airflow resistivity is one of the most important parameters in the study of the physical properties ...
Acoustic materials are characterized according to their macroscopic and microscopic properties. The ...
In this work, theoretical models have been developed for predicting the acoustical properties of fib...
This paper investigates the acoustical properties of polyester non-woven by using practical and nume...
The numeric simulation of acoustic car treatments is based on different models and different param...
The production processes of porous materials introduce an inherent geometric anisotropy in the mater...