The effect of the ultrasound transmission across solid-nanocomposite materials
Ultrasound has been developed as a technique to determine the object and distance detected. It is quite challenging to identify and localise the defects, especially in mechanical parts. Nanomaterials namely multi-walled carbon nanotube (MWCNT), nanoclay and graphene mix with epoxy to be nanocomposit...
Published in: | International Journal of Engineering and Advanced Technology |
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Blue Eyes Intelligence Engineering and Sciences Publication
2019
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2-s2.0-85074648726 Latif N.A.; Salmiah K.; Ahmad M.A.; Bakar M.A.A. The effect of the ultrasound transmission across solid-nanocomposite materials 2019 International Journal of Engineering and Advanced Technology 9 1 10.35940/ijeat.A3044.109119 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85074648726&doi=10.35940%2fijeat.A3044.109119&partnerID=40&md5=0c81e4228b2150fd6421b26945c78605 Ultrasound has been developed as a technique to determine the object and distance detected. It is quite challenging to identify and localise the defects, especially in mechanical parts. Nanomaterials namely multi-walled carbon nanotube (MWCNT), nanoclay and graphene mix with epoxy to be nanocomposites for example which have not been explored using ultrasound method to determine better coupling performance with transducer. Ultrasonic equipment was set up to run the experiment with four main components, namely transducer, personal computer, oscilloscope and indicator whereas to determine the reflection coefficient. Based on the result, nanocomposite of graphene filler gave a lower value of reflection coefficient, which is 0.08299 compared to MWCNT and nanoclay filler of nanocomposites. It is shown that graphene filler of nanocomposite has better coupling performance. The differentiation of the values may be affected by roughness of the nanocomposites. © BEIESP. Blue Eyes Intelligence Engineering and Sciences Publication 22498958 English Article All Open Access; Bronze Open Access |
author |
Latif N.A.; Salmiah K.; Ahmad M.A.; Bakar M.A.A. |
spellingShingle |
Latif N.A.; Salmiah K.; Ahmad M.A.; Bakar M.A.A. The effect of the ultrasound transmission across solid-nanocomposite materials |
author_facet |
Latif N.A.; Salmiah K.; Ahmad M.A.; Bakar M.A.A. |
author_sort |
Latif N.A.; Salmiah K.; Ahmad M.A.; Bakar M.A.A. |
title |
The effect of the ultrasound transmission across solid-nanocomposite materials |
title_short |
The effect of the ultrasound transmission across solid-nanocomposite materials |
title_full |
The effect of the ultrasound transmission across solid-nanocomposite materials |
title_fullStr |
The effect of the ultrasound transmission across solid-nanocomposite materials |
title_full_unstemmed |
The effect of the ultrasound transmission across solid-nanocomposite materials |
title_sort |
The effect of the ultrasound transmission across solid-nanocomposite materials |
publishDate |
2019 |
container_title |
International Journal of Engineering and Advanced Technology |
container_volume |
9 |
container_issue |
1 |
doi_str_mv |
10.35940/ijeat.A3044.109119 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85074648726&doi=10.35940%2fijeat.A3044.109119&partnerID=40&md5=0c81e4228b2150fd6421b26945c78605 |
description |
Ultrasound has been developed as a technique to determine the object and distance detected. It is quite challenging to identify and localise the defects, especially in mechanical parts. Nanomaterials namely multi-walled carbon nanotube (MWCNT), nanoclay and graphene mix with epoxy to be nanocomposites for example which have not been explored using ultrasound method to determine better coupling performance with transducer. Ultrasonic equipment was set up to run the experiment with four main components, namely transducer, personal computer, oscilloscope and indicator whereas to determine the reflection coefficient. Based on the result, nanocomposite of graphene filler gave a lower value of reflection coefficient, which is 0.08299 compared to MWCNT and nanoclay filler of nanocomposites. It is shown that graphene filler of nanocomposite has better coupling performance. The differentiation of the values may be affected by roughness of the nanocomposites. © BEIESP. |
publisher |
Blue Eyes Intelligence Engineering and Sciences Publication |
issn |
22498958 |
language |
English |
format |
Article |
accesstype |
All Open Access; Bronze Open Access |
record_format |
scopus |
collection |
Scopus |
_version_ |
1809677600165986304 |