Using macro-perforations in a generic porous media may not only make the resonance frequency of a rigidly backed sound absorber lower but also its sound absorption amplitude increase. Given the rise of 3D-printing in the field of acoustic materials over the last years, it turns out of great interest to explore the possibilities of this technology on the fabrication of these absorbers. Unlike conventional fabrication processes, additive manufacturing lets design the material at the microscopic scale, thus allowing choosing the appropriate geometrical dimensions of both the macro-perforations and the micro-pores that let enhance its sound absorption. In this work, a preliminary insight into the use of additive manufacturing technology for the...
Introduction: Micro perforated panel (MPP) absorbents promise the next generation of sound absorbers...
This paper investigates the acoustic absorption capability of a multilayer micro-perforated panel ab...
In the present study, acoustic properties of layered porous materials produced by Fused Filament Fab...
Using macro-perforations in a generic porous media may not only make the resonance frequency of a ri...
Using macro-perforations in a generic porous media may not only make the resonance frequency of a ri...
Acoustic porous materials are extensively used in many engineering applications like building, autom...
Acoustic porous materials are extensively used in many engineering applications like building, autom...
Acoustic porous materials are extensively used in many engineering applications like building, autom...
The sound absorption coefficient of a micro-perforated panel (MPP) backed by a porous sound absorbin...
The purpose of this work is to check if additive manufacturing technologies are suitable for reprodu...
The purpose of this work is to check if additive manufacturing technologies are suitable for reprodu...
The purpose of this work is to check if additive manufacturing technologies are suitable for reprodu...
The purpose of this work is to check if additive manufacturing technologies are suitable for reprodu...
This thesis exploits some of the new possibilities offered by additive manufacturing to design and o...
Macro-structures that improve the sound absorption of hard-backed layers of rigid-porous material in...
Introduction: Micro perforated panel (MPP) absorbents promise the next generation of sound absorbers...
This paper investigates the acoustic absorption capability of a multilayer micro-perforated panel ab...
In the present study, acoustic properties of layered porous materials produced by Fused Filament Fab...
Using macro-perforations in a generic porous media may not only make the resonance frequency of a ri...
Using macro-perforations in a generic porous media may not only make the resonance frequency of a ri...
Acoustic porous materials are extensively used in many engineering applications like building, autom...
Acoustic porous materials are extensively used in many engineering applications like building, autom...
Acoustic porous materials are extensively used in many engineering applications like building, autom...
The sound absorption coefficient of a micro-perforated panel (MPP) backed by a porous sound absorbin...
The purpose of this work is to check if additive manufacturing technologies are suitable for reprodu...
The purpose of this work is to check if additive manufacturing technologies are suitable for reprodu...
The purpose of this work is to check if additive manufacturing technologies are suitable for reprodu...
The purpose of this work is to check if additive manufacturing technologies are suitable for reprodu...
This thesis exploits some of the new possibilities offered by additive manufacturing to design and o...
Macro-structures that improve the sound absorption of hard-backed layers of rigid-porous material in...
Introduction: Micro perforated panel (MPP) absorbents promise the next generation of sound absorbers...
This paper investigates the acoustic absorption capability of a multilayer micro-perforated panel ab...
In the present study, acoustic properties of layered porous materials produced by Fused Filament Fab...