Advancements in 3D print technology now allow the printing of structured acoustic absorbent materials at the appropriate microscopic scale and sample sizes. The repeatability of the fundamental cell unit of these metamaterials provides a pathway for the development of viable macro models to simulate built-up structures based on detailed models of the individual cell units; however, verification of such models on actual manufactured structures presents a challenge. In this paper, a design concept for an acoustic benchmark metamaterial consisting of an interlinked network of resonant chambers is considered. The form chosen is periodic with cubes incorporating spherical internal cavities connected through cylindrical openings on each face of t...
Advancements in 3D print technology now allow the printing of struc- tured acoustic absorptive mater...
Advancements in 3D print technology now allow the printing of struc- tured acoustic absorptive mater...
Advancements in 3D print technology now allow the printing of struc- tured acoustic absorptive mater...
Advancements in 3D print technology now allow the printing of structured acoustic absorbent material...
Advancements in 3D print technology now allow the printing of structured acoustic absorbent material...
The development of metamaterial modelling tools requires agreed benchmark designs which are suitable...
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...
© 2016, German Acoustical Society (DEGA). All rights reserved. Acoustic scale modelling continues to...
Advancements in 3D print technology now allow the printing of structured acoustic absorptive materia...
Advancements in 3D print technology now allows the printing of structured acoustic absorbent materia...
The increasing concern about noise pollution has accelerated the development of acoustic absorption ...
The increasing concern about noise pollution has accelerated the development of acoustic absorption ...
Advancements in 3D print technology now allow the printing of struc- tured acoustic absorptive mater...
Advancements in 3D print technology now allow the printing of struc- tured acoustic absorptive mater...
Advancements in 3D print technology now allow the printing of struc- tured acoustic absorptive mater...
Advancements in 3D print technology now allow the printing of structured acoustic absorbent material...
Advancements in 3D print technology now allow the printing of structured acoustic absorbent material...
The development of metamaterial modelling tools requires agreed benchmark designs which are suitable...
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...
© 2016, German Acoustical Society (DEGA). All rights reserved. Acoustic scale modelling continues to...
Advancements in 3D print technology now allow the printing of structured acoustic absorptive materia...
Advancements in 3D print technology now allows the printing of structured acoustic absorbent materia...
The increasing concern about noise pollution has accelerated the development of acoustic absorption ...
The increasing concern about noise pollution has accelerated the development of acoustic absorption ...
Advancements in 3D print technology now allow the printing of struc- tured acoustic absorptive mater...
Advancements in 3D print technology now allow the printing of struc- tured acoustic absorptive mater...
Advancements in 3D print technology now allow the printing of struc- tured acoustic absorptive mater...