Enhancing the properties of date palm fibre reinforced bio-epoxy composites with chitosan – Synthesis, mechanical properties, and dimensional stability
The present work deals with the mechanical behavior of dual bonding filler; chitosan (CTS) and date palm (DP) fibre in bio-epoxy composites. The primary objective of this research was to find out if the addition of CTS particles to a DP/bio-epoxy composite could enhance its mechanical properties. Bi...
Published in: | Journal of King Saud University - Science |
---|---|
Main Author: | |
Format: | Article |
Language: | English |
Published: |
Elsevier B.V.
2023
|
Online Access: | https://www.scopus.com/inward/record.uri?eid=2-s2.0-85169828151&doi=10.1016%2fj.jksus.2023.102833&partnerID=40&md5=f8a43119cf80b2d1af9f89b63dba5c1b |
id |
2-s2.0-85169828151 |
---|---|
spelling |
2-s2.0-85169828151 Sarmin S.N.; Jawaid M.; Zaki S.A.; Radzi A.M.; Fouad H.; Khiari R.; Rahayu S.; Amini M.H.M. Enhancing the properties of date palm fibre reinforced bio-epoxy composites with chitosan – Synthesis, mechanical properties, and dimensional stability 2023 Journal of King Saud University - Science 35 7 10.1016/j.jksus.2023.102833 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85169828151&doi=10.1016%2fj.jksus.2023.102833&partnerID=40&md5=f8a43119cf80b2d1af9f89b63dba5c1b The present work deals with the mechanical behavior of dual bonding filler; chitosan (CTS) and date palm (DP) fibre in bio-epoxy composites. The primary objective of this research was to find out if the addition of CTS particles to a DP/bio-epoxy composite could enhance its mechanical properties. Bio-composites are being developed to better understand and manipulate the unique features of these versatile polysaccharides. CTS was included into the bio-epoxy matrix through solution mixing. Bio-epoxy composites with 40% DP fibre loading were developed by dispersing different CTS filler ratios - 5%, 10%, 15%, and 20%. For the purpose of comparison, a control sample was prepared without the inclusion of the CTS filler. The mixture was then manually disseminated for 7–10 min before being uniformly drenched into a steel cast mould with dimensions of 150 mm (width) 150 mm (length) 3 mm (thickness) and taken to the hot press, after which it underwent heating at a temperature of 110 °C for a duration of 10 minutes, while being subjected to a significant pressure of 250 bar. Tensile properties, impact properties, flexural properties, morphological characterization, water absorption, and thickness swelling were all measured on the prepared bio-composites. Among the CTS fractions, DP/CTS20 has the highest tensile strength (24.04 MPa) and tensile modulus (4.93 GPa), flexural strength (45.11 MPa), and impact strength (2.70 J/m2). The scanning electron microscope exposes the properties of fibres and polymers, as well as the reason for tensile test deficiency. Remarkably, bio-composites with higher CTS content have elevated moisture content and dimensional instability. Generally, we diagnosis that DP/CTS20 had the best tensile, flexural, and impact properties, as well as the highest water absorption and thickness swelling of any CTS compositions. The discovery improved our knowledge of bio-composite implementation trends, allowing us to assess their potential for more dependable implementations of much more sustainable green products. Furthermore, material enhancements such as bio-epoxy toughening to change the ductility behavior to improve energy absorption or natural fibre pretreatment can improve interbonding between the matrix and filler. © 2023 The Author(s) Elsevier B.V. 10183647 English Article All Open Access; Gold Open Access |
author |
Sarmin S.N.; Jawaid M.; Zaki S.A.; Radzi A.M.; Fouad H.; Khiari R.; Rahayu S.; Amini M.H.M. |
spellingShingle |
Sarmin S.N.; Jawaid M.; Zaki S.A.; Radzi A.M.; Fouad H.; Khiari R.; Rahayu S.; Amini M.H.M. Enhancing the properties of date palm fibre reinforced bio-epoxy composites with chitosan – Synthesis, mechanical properties, and dimensional stability |
author_facet |
Sarmin S.N.; Jawaid M.; Zaki S.A.; Radzi A.M.; Fouad H.; Khiari R.; Rahayu S.; Amini M.H.M. |
author_sort |
Sarmin S.N.; Jawaid M.; Zaki S.A.; Radzi A.M.; Fouad H.; Khiari R.; Rahayu S.; Amini M.H.M. |
title |
Enhancing the properties of date palm fibre reinforced bio-epoxy composites with chitosan – Synthesis, mechanical properties, and dimensional stability |
title_short |
Enhancing the properties of date palm fibre reinforced bio-epoxy composites with chitosan – Synthesis, mechanical properties, and dimensional stability |
title_full |
Enhancing the properties of date palm fibre reinforced bio-epoxy composites with chitosan – Synthesis, mechanical properties, and dimensional stability |
title_fullStr |
Enhancing the properties of date palm fibre reinforced bio-epoxy composites with chitosan – Synthesis, mechanical properties, and dimensional stability |
title_full_unstemmed |
Enhancing the properties of date palm fibre reinforced bio-epoxy composites with chitosan – Synthesis, mechanical properties, and dimensional stability |
title_sort |
Enhancing the properties of date palm fibre reinforced bio-epoxy composites with chitosan – Synthesis, mechanical properties, and dimensional stability |
publishDate |
2023 |
container_title |
Journal of King Saud University - Science |
container_volume |
35 |
container_issue |
7 |
doi_str_mv |
10.1016/j.jksus.2023.102833 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85169828151&doi=10.1016%2fj.jksus.2023.102833&partnerID=40&md5=f8a43119cf80b2d1af9f89b63dba5c1b |
description |
The present work deals with the mechanical behavior of dual bonding filler; chitosan (CTS) and date palm (DP) fibre in bio-epoxy composites. The primary objective of this research was to find out if the addition of CTS particles to a DP/bio-epoxy composite could enhance its mechanical properties. Bio-composites are being developed to better understand and manipulate the unique features of these versatile polysaccharides. CTS was included into the bio-epoxy matrix through solution mixing. Bio-epoxy composites with 40% DP fibre loading were developed by dispersing different CTS filler ratios - 5%, 10%, 15%, and 20%. For the purpose of comparison, a control sample was prepared without the inclusion of the CTS filler. The mixture was then manually disseminated for 7–10 min before being uniformly drenched into a steel cast mould with dimensions of 150 mm (width) 150 mm (length) 3 mm (thickness) and taken to the hot press, after which it underwent heating at a temperature of 110 °C for a duration of 10 minutes, while being subjected to a significant pressure of 250 bar. Tensile properties, impact properties, flexural properties, morphological characterization, water absorption, and thickness swelling were all measured on the prepared bio-composites. Among the CTS fractions, DP/CTS20 has the highest tensile strength (24.04 MPa) and tensile modulus (4.93 GPa), flexural strength (45.11 MPa), and impact strength (2.70 J/m2). The scanning electron microscope exposes the properties of fibres and polymers, as well as the reason for tensile test deficiency. Remarkably, bio-composites with higher CTS content have elevated moisture content and dimensional instability. Generally, we diagnosis that DP/CTS20 had the best tensile, flexural, and impact properties, as well as the highest water absorption and thickness swelling of any CTS compositions. The discovery improved our knowledge of bio-composite implementation trends, allowing us to assess their potential for more dependable implementations of much more sustainable green products. Furthermore, material enhancements such as bio-epoxy toughening to change the ductility behavior to improve energy absorption or natural fibre pretreatment can improve interbonding between the matrix and filler. © 2023 The Author(s) |
publisher |
Elsevier B.V. |
issn |
10183647 |
language |
English |
format |
Article |
accesstype |
All Open Access; Gold Open Access |
record_format |
scopus |
collection |
Scopus |
_version_ |
1809677887574376448 |