Measurement of the water absorption on hybrid carbon fibre prepreg waste composite and its impact on flexural performance
Carbon fibre (CF) prepreg, essential to composites and aircraft, generates waste known as carbon fibre prepreg waste (CFW) due to its limited lifespan. This study investigates recycling CFW through hybridization, milling it into powder and mixing it with epoxy resin and alumina to form hybrid compos...
Published in: | FUNCTIONAL COMPOSITES AND STRUCTURES |
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Main Authors: | , , , , , , , |
Format: | Article |
Language: | English |
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IOP Publishing Ltd
2024
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Online Access: | https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001295967700001 |
author |
Shukri Ahmad Ashari Ahmad; Nosbi Norlin; Omar Mohd Firdaus; Md Saleh Siti Shuhadah; Othman Muhammad Bisyrul Hafi; Najib Norazwana Mohd; Wan Ali Wan Fahmin Faiz |
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spellingShingle |
Shukri Ahmad Ashari Ahmad; Nosbi Norlin; Omar Mohd Firdaus; Md Saleh Siti Shuhadah; Othman Muhammad Bisyrul Hafi; Najib Norazwana Mohd; Wan Ali Wan Fahmin Faiz Measurement of the water absorption on hybrid carbon fibre prepreg waste composite and its impact on flexural performance Materials Science |
author_facet |
Shukri Ahmad Ashari Ahmad; Nosbi Norlin; Omar Mohd Firdaus; Md Saleh Siti Shuhadah; Othman Muhammad Bisyrul Hafi; Najib Norazwana Mohd; Wan Ali Wan Fahmin Faiz |
author_sort |
Shukri |
spelling |
Shukri, Ahmad Ashari Ahmad; Nosbi, Norlin; Omar, Mohd Firdaus; Md Saleh, Siti Shuhadah; Othman, Muhammad Bisyrul Hafi; Najib, Norazwana Mohd; Wan Ali, Wan Fahmin Faiz Measurement of the water absorption on hybrid carbon fibre prepreg waste composite and its impact on flexural performance FUNCTIONAL COMPOSITES AND STRUCTURES English Article Carbon fibre (CF) prepreg, essential to composites and aircraft, generates waste known as carbon fibre prepreg waste (CFW) due to its limited lifespan. This study investigates recycling CFW through hybridization, milling it into powder and mixing it with epoxy resin and alumina to form hybrid composites. Using Minitab software, optimal compositions were determined from 13 and 20 experimental designs for CFW-EP and CFW-EP-AL, respectively. Results identified 2.5 wt% CFW and 97.5 wt% epoxy resin as optimal for CFW-EP, and 2.5 wt% CFW, 2.5 wt% alumina, and 95 wt% epoxy resin as optimal for CFW-EP-AL. Samples of epoxy resin polymer (EP), carbon prepreg waste reinforced composite (CFW-EP), and carbon prepreg waste reinforced with alumina composite (CFW-EP-AL) were fabricated and tested for moisture absorption and flexural strength, revealing noticeable deterioration over time. These findings highlight the importance of compositional analysis in developing sustainable materials with optimal flexural strength for various applications. IOP Publishing Ltd 2631-6331 2024 6 3 10.1088/2631-6331/ad6e51 Materials Science WOS:001295967700001 https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001295967700001 |
title |
Measurement of the water absorption on hybrid carbon fibre prepreg waste composite and its impact on flexural performance |
title_short |
Measurement of the water absorption on hybrid carbon fibre prepreg waste composite and its impact on flexural performance |
title_full |
Measurement of the water absorption on hybrid carbon fibre prepreg waste composite and its impact on flexural performance |
title_fullStr |
Measurement of the water absorption on hybrid carbon fibre prepreg waste composite and its impact on flexural performance |
title_full_unstemmed |
Measurement of the water absorption on hybrid carbon fibre prepreg waste composite and its impact on flexural performance |
title_sort |
Measurement of the water absorption on hybrid carbon fibre prepreg waste composite and its impact on flexural performance |
container_title |
FUNCTIONAL COMPOSITES AND STRUCTURES |
language |
English |
format |
Article |
description |
Carbon fibre (CF) prepreg, essential to composites and aircraft, generates waste known as carbon fibre prepreg waste (CFW) due to its limited lifespan. This study investigates recycling CFW through hybridization, milling it into powder and mixing it with epoxy resin and alumina to form hybrid composites. Using Minitab software, optimal compositions were determined from 13 and 20 experimental designs for CFW-EP and CFW-EP-AL, respectively. Results identified 2.5 wt% CFW and 97.5 wt% epoxy resin as optimal for CFW-EP, and 2.5 wt% CFW, 2.5 wt% alumina, and 95 wt% epoxy resin as optimal for CFW-EP-AL. Samples of epoxy resin polymer (EP), carbon prepreg waste reinforced composite (CFW-EP), and carbon prepreg waste reinforced with alumina composite (CFW-EP-AL) were fabricated and tested for moisture absorption and flexural strength, revealing noticeable deterioration over time. These findings highlight the importance of compositional analysis in developing sustainable materials with optimal flexural strength for various applications. |
publisher |
IOP Publishing Ltd |
issn |
2631-6331 |
publishDate |
2024 |
container_volume |
6 |
container_issue |
3 |
doi_str_mv |
10.1088/2631-6331/ad6e51 |
topic |
Materials Science |
topic_facet |
Materials Science |
accesstype |
|
id |
WOS:001295967700001 |
url |
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001295967700001 |
record_format |
wos |
collection |
Web of Science (WoS) |
_version_ |
1812871766792470528 |