Polyester-Kenaf composites: Effects of alkali fiber treatment and toughening of matrix using liquid natural rubber
In this study, polyester-kenaf fiber composites were prepared by adding various percentages of kenaf fiber in unsaturated polyester resin and subsequently cross-linked using methyl ethyl ketone peroxide and the accelerator cobalt octanoate. Liquid natural rubber (LNR) (3%) was added as a toughening...
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2-s2.0-79551616908 Ahmad S.H.; Rasid R.; Bonnia N.N.; Zainol I.; Mamun A.A.; Bledzki A.K.; Beg M.D.H. Polyester-Kenaf composites: Effects of alkali fiber treatment and toughening of matrix using liquid natural rubber 2011 Journal of Composite Materials 45 2 10.1177/0021998310373514 https://www.scopus.com/inward/record.uri?eid=2-s2.0-79551616908&doi=10.1177%2f0021998310373514&partnerID=40&md5=19fb09e222d9ea14023f2e121914cf28 In this study, polyester-kenaf fiber composites were prepared by adding various percentages of kenaf fiber in unsaturated polyester resin and subsequently cross-linked using methyl ethyl ketone peroxide and the accelerator cobalt octanoate. Liquid natural rubber (LNR) (3%) was added as a toughening agent. Kenaf fibers were treated with sodium hydroxide solution to improve the interfacial bonding between the fiber and the matrix. The mechanical properties of the composites were evaluated by impact and flexural testing. Environmental stress cracking resistance (ESCR) of composites in acid and base medium was also studied. Bonding mechanisms were assessed by scanning electron microscope and Fourier transform infrared analysis. It was found that the addition of LNR increased the impact strength and fracture toughness. Alkali fiber treatment was found to provide better impact and flexural strengths to the composites. Measurement of ESCR shows that the composite with acid medium has the fastest diffusion rate, followed by that with base medium, and then without medium. © The Author(s), 2011. 1530793X English Article All Open Access; Green Open Access |
author |
Ahmad S.H.; Rasid R.; Bonnia N.N.; Zainol I.; Mamun A.A.; Bledzki A.K.; Beg M.D.H. |
spellingShingle |
Ahmad S.H.; Rasid R.; Bonnia N.N.; Zainol I.; Mamun A.A.; Bledzki A.K.; Beg M.D.H. Polyester-Kenaf composites: Effects of alkali fiber treatment and toughening of matrix using liquid natural rubber |
author_facet |
Ahmad S.H.; Rasid R.; Bonnia N.N.; Zainol I.; Mamun A.A.; Bledzki A.K.; Beg M.D.H. |
author_sort |
Ahmad S.H.; Rasid R.; Bonnia N.N.; Zainol I.; Mamun A.A.; Bledzki A.K.; Beg M.D.H. |
title |
Polyester-Kenaf composites: Effects of alkali fiber treatment and toughening of matrix using liquid natural rubber |
title_short |
Polyester-Kenaf composites: Effects of alkali fiber treatment and toughening of matrix using liquid natural rubber |
title_full |
Polyester-Kenaf composites: Effects of alkali fiber treatment and toughening of matrix using liquid natural rubber |
title_fullStr |
Polyester-Kenaf composites: Effects of alkali fiber treatment and toughening of matrix using liquid natural rubber |
title_full_unstemmed |
Polyester-Kenaf composites: Effects of alkali fiber treatment and toughening of matrix using liquid natural rubber |
title_sort |
Polyester-Kenaf composites: Effects of alkali fiber treatment and toughening of matrix using liquid natural rubber |
publishDate |
2011 |
container_title |
Journal of Composite Materials |
container_volume |
45 |
container_issue |
2 |
doi_str_mv |
10.1177/0021998310373514 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-79551616908&doi=10.1177%2f0021998310373514&partnerID=40&md5=19fb09e222d9ea14023f2e121914cf28 |
description |
In this study, polyester-kenaf fiber composites were prepared by adding various percentages of kenaf fiber in unsaturated polyester resin and subsequently cross-linked using methyl ethyl ketone peroxide and the accelerator cobalt octanoate. Liquid natural rubber (LNR) (3%) was added as a toughening agent. Kenaf fibers were treated with sodium hydroxide solution to improve the interfacial bonding between the fiber and the matrix. The mechanical properties of the composites were evaluated by impact and flexural testing. Environmental stress cracking resistance (ESCR) of composites in acid and base medium was also studied. Bonding mechanisms were assessed by scanning electron microscope and Fourier transform infrared analysis. It was found that the addition of LNR increased the impact strength and fracture toughness. Alkali fiber treatment was found to provide better impact and flexural strengths to the composites. Measurement of ESCR shows that the composite with acid medium has the fastest diffusion rate, followed by that with base medium, and then without medium. © The Author(s), 2011. |
publisher |
|
issn |
1530793X |
language |
English |
format |
Article |
accesstype |
All Open Access; Green Open Access |
record_format |
scopus |
collection |
Scopus |
_version_ |
1814778510597685248 |