GFRP composite material degradation under seawater and weathering effect
An experimental investigation of the seawater effect on the degradation of GFRP composite material with respect to water absorption was conducted. The GFRP specimens were exposed to seawater and weather environment. Water absorption analysis was conducted to investigate the moisture uptake and degra...
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my.ums.eprints.203162018-06-21T05:50:27Z https://eprints.ums.edu.my/id/eprint/20316/ GFRP composite material degradation under seawater and weathering effect Choong, Wai Heng Yeo, Kiam Beng Fadzlita Mohd Tamiri Farm, Yan Yan Azlan Ismail M TP Chemical technology An experimental investigation of the seawater effect on the degradation of GFRP composite material with respect to water absorption was conducted. The GFRP specimens were exposed to seawater and weather environment. Water absorption analysis was conducted to investigate the moisture uptake and degradation of woven GFRP. The woven GFRP percentage weight gain due to moisture uptake were 0, 0.253, 0.513, 0.752, 0.732, 0.752, and 0.997 % of the initial weight, after 1, 2, 3, 5, 8, 48, and 168 immersion hours. Degradation of GFRP was also found to correlate to the corrosion and uptake of seawater at the fibre/matrix interface. © Springer Science+Business Media New York 2013. Springer US 2013 Book Chapter NonPeerReviewed text en https://eprints.ums.edu.my/id/eprint/20316/1/GFRP%20composite%20material%20degradation%20under%20seawater%20and%20weathering%20effect.pdf Choong, Wai Heng and Yeo, Kiam Beng and Fadzlita Mohd Tamiri and Farm, Yan Yan and Azlan Ismail M (2013) GFRP composite material degradation under seawater and weathering effect. Developments in Sustainable Chemical and Bioprocess Technology. pp. 395-399. ISSN 978-1-4614-6207-1 https://doi.org/10.1007/978-1-4614-6208-8_47 |
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TP Chemical technology Choong, Wai Heng Yeo, Kiam Beng Fadzlita Mohd Tamiri Farm, Yan Yan Azlan Ismail M GFRP composite material degradation under seawater and weathering effect |
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An experimental investigation of the seawater effect on the degradation of GFRP composite material with respect to water absorption was conducted. The GFRP specimens were exposed to seawater and weather environment. Water absorption analysis was conducted to investigate the moisture uptake and degradation of woven GFRP. The woven GFRP percentage weight gain due to moisture uptake were 0, 0.253, 0.513, 0.752, 0.732, 0.752, and 0.997 % of the initial weight, after 1, 2, 3, 5, 8, 48, and 168 immersion hours. Degradation of GFRP was also found to correlate to the corrosion and uptake of seawater at the fibre/matrix interface. © Springer Science+Business Media New York 2013. |
format |
Book Chapter |
author |
Choong, Wai Heng Yeo, Kiam Beng Fadzlita Mohd Tamiri Farm, Yan Yan Azlan Ismail M |
author_facet |
Choong, Wai Heng Yeo, Kiam Beng Fadzlita Mohd Tamiri Farm, Yan Yan Azlan Ismail M |
author_sort |
Choong, Wai Heng |
title |
GFRP composite material degradation under seawater and weathering effect |
title_short |
GFRP composite material degradation under seawater and weathering effect |
title_full |
GFRP composite material degradation under seawater and weathering effect |
title_fullStr |
GFRP composite material degradation under seawater and weathering effect |
title_full_unstemmed |
GFRP composite material degradation under seawater and weathering effect |
title_sort |
gfrp composite material degradation under seawater and weathering effect |
publisher |
Springer US |
publishDate |
2013 |
url |
https://eprints.ums.edu.my/id/eprint/20316/1/GFRP%20composite%20material%20degradation%20under%20seawater%20and%20weathering%20effect.pdf https://eprints.ums.edu.my/id/eprint/20316/ https://doi.org/10.1007/978-1-4614-6208-8_47 |
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13.211869 |