Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Acoustic Performance of 3D Printed Nanocomposite Earmuff

View through CrossRef
INTRODUCTION: Hearing protection devices are one of the primary noise reduction tools in developing countries. This study is intended to produce and apply acrylonitrile butadiene styrene (ABS)/clay nanocomposites to fabricate a laboratory single cup earmuffs and then compare it with double cup and single cup pure ABS earmuffs in terms of noise attenuation performance and comfort. In addition, the noise attenuation performance of single cup pure ABS earmuffs is compared with double cup pure ABS earmuffs. METHODS: ABS/nanoclay filament was fabricated using a twin screw extruder. A three dimensional (3D) printing machine and a 3D model of earcup, designed by solid work software, were applied to print single and double cup earmuffs using ABS/nanoclay composite and pure ABS filaments. Finally, using an acoustic test fixture, objective noise attenuation test was performed on three different types of earmuffs, including with and without nano material and a secondary cup. Moreover, earmuffs weight was measured as a comfort component. RESULTS: Insertion loss and calculated noise reduction rating (NRR) of single cup ABS/nanoclay earmuffs (NRR=19.4 dB) and double cup pure ABS earmuffs (NRR=18.93 dB) were improved in comparison with single cup pure ABS earmuffs (NRR=15.7 dB). Additionally, both single cup earmuffs were significantly lighter than double cup earmuffs. Although single cup nano and double cup earmuffs had nearly the same attenuation performance, single cup nano earmuffs were 74 gr lighter than double cup earmuffs, so with reference to comfort, single cup nano earmuffs will probably be more acceptable. CONCLUSIONS: From this survey it might be concluded that, even though single cup ABS/nanoclay earmuffs was lighter than double cup pure ABS earmuffs, it had approximately more attenuation performance in comparison with double cup pure ABS earmuffs. Consequently, users are probably more prone to wear light- weight single cup ABS/nanoclay earmuffs as a result of improved comfort. In short, ABS/nanoclay composite can be considered a good choice in products with the necessity of high acoustic performance and low weight.CallSend SMSAdd to SkypeYou'll need Skype CreditFree via Skype
Title: Acoustic Performance of 3D Printed Nanocomposite Earmuff
Description:
INTRODUCTION: Hearing protection devices are one of the primary noise reduction tools in developing countries.
This study is intended to produce and apply acrylonitrile butadiene styrene (ABS)/clay nanocomposites to fabricate a laboratory single cup earmuffs and then compare it with double cup and single cup pure ABS earmuffs in terms of noise attenuation performance and comfort.
In addition, the noise attenuation performance of single cup pure ABS earmuffs is compared with double cup pure ABS earmuffs.
METHODS: ABS/nanoclay filament was fabricated using a twin screw extruder.
A three dimensional (3D) printing machine and a 3D model of earcup, designed by solid work software, were applied to print single and double cup earmuffs using ABS/nanoclay composite and pure ABS filaments.
Finally, using an acoustic test fixture, objective noise attenuation test was performed on three different types of earmuffs, including with and without nano material and a secondary cup.
Moreover, earmuffs weight was measured as a comfort component.
RESULTS: Insertion loss and calculated noise reduction rating (NRR) of single cup ABS/nanoclay earmuffs (NRR=19.
4 dB) and double cup pure ABS earmuffs (NRR=18.
93 dB) were improved in comparison with single cup pure ABS earmuffs (NRR=15.
7 dB).
Additionally, both single cup earmuffs were significantly lighter than double cup earmuffs.
Although single cup nano and double cup earmuffs had nearly the same attenuation performance, single cup nano earmuffs were 74 gr lighter than double cup earmuffs, so with reference to comfort, single cup nano earmuffs will probably be more acceptable.
CONCLUSIONS: From this survey it might be concluded that, even though single cup ABS/nanoclay earmuffs was lighter than double cup pure ABS earmuffs, it had approximately more attenuation performance in comparison with double cup pure ABS earmuffs.
Consequently, users are probably more prone to wear light- weight single cup ABS/nanoclay earmuffs as a result of improved comfort.
In short, ABS/nanoclay composite can be considered a good choice in products with the necessity of high acoustic performance and low weight.
CallSend SMSAdd to SkypeYou'll need Skype CreditFree via Skype.

Related Results

Acoustic cloaking design based on penetration manipulation with combination acoustic metamaterials
Acoustic cloaking design based on penetration manipulation with combination acoustic metamaterials
The acoustic wave transmission manipulation ability is the most important performance for the acoustic metamaterials. To manipulate the acoustic transmission, the combination acous...
E-Press and Oppress
E-Press and Oppress
From elephants to ABBA fans, silicon to hormone, the following discussion uses a new research method to look at printed text, motion pictures and a te...
Study on acoustic source characteristics of gas pipeline leakage
Study on acoustic source characteristics of gas pipeline leakage
The characteristics of acoustic source of gas pipeline leakage determine the accuracy and adaptability of leak detection for gas pipelines based on acoustic method. In order to exp...
Blind Source Separation of Transformer Acoustic Signal Based on Sparse Component Analysis
Blind Source Separation of Transformer Acoustic Signal Based on Sparse Component Analysis
In the acoustics-based power transformer fault diagnosis, a transformer acoustic signal collected by an acoustic sensor is generally mixed with a large number of interference signa...
Research on Acoustic Emission Source Localization Technology Based on AI Deep Learning
Research on Acoustic Emission Source Localization Technology Based on AI Deep Learning
Acoustic emission source localization is the basic function of the application of acoustic emission technology. For complex structures, mathematical analysis positioning algorithms...
Characteristics, relationships and precision of direct acoustic-to-seismic coupling measurements from local explosions
Characteristics, relationships and precision of direct acoustic-to-seismic coupling measurements from local explosions
SUMMARY Acoustic energy originating from explosions, sonic booms, bolides and thunderclaps have been recorded on seismometers since the 1950s. Direct pressure loadin...

Back to Top