The Effect of Fiber Layer Orientation on the Properties of Hybrid Kenaf/Fiberglass Polyester Matrix Composite

A hybrid composite is a combination of two or more fibers in one matrix. Hybrid composite will give better properties as compared to individual fiber-reinforced polymer composites. This research aims to study the effect of different fiber layer orientations on the properties of hybrid kenaf/fibergla...

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Published in:Materials Science Forum
Main Author: Adnan N.F.; Salim N.; Bakar N.H.A.; Roslan R.; Sarmin S.N.; Kassim M.H.M.; Amini M.H.M.
Format: Book chapter
Language:English
Published: Trans Tech Publications Ltd 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85210833648&doi=10.4028%2fp-9j6ZwY&partnerID=40&md5=ca278da4d6962a667d91c2bd9914b778
id 2-s2.0-85210833648
spelling 2-s2.0-85210833648
Adnan N.F.; Salim N.; Bakar N.H.A.; Roslan R.; Sarmin S.N.; Kassim M.H.M.; Amini M.H.M.
The Effect of Fiber Layer Orientation on the Properties of Hybrid Kenaf/Fiberglass Polyester Matrix Composite
2024
Materials Science Forum
1114

10.4028/p-9j6ZwY
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85210833648&doi=10.4028%2fp-9j6ZwY&partnerID=40&md5=ca278da4d6962a667d91c2bd9914b778
A hybrid composite is a combination of two or more fibers in one matrix. Hybrid composite will give better properties as compared to individual fiber-reinforced polymer composites. This research aims to study the effect of different fiber layer orientations on the properties of hybrid kenaf/fiberglass polyester matrix composite. Two types of the composite were produced which are Sample 1, the fiber layer orientation is fiberglass, kenaf fiber, kenaf fiber and fiberglass (FG-K-KFG), and Sample 2, the fiber layer orientation is fiberglass, kenaf fiber, fiberglass, and kenaf fiber (FG-K-FG-K). The composite is manufactured using the hand lay-up technique and hot pressed. 50 g of unsaturated polyester resin and 12 g of hardener, Methyl Ethyl Ketone Peroxide (MEKP) were mixed and apply on top of every layer of fiber before being compressed at 1000C for 10 minutes. The properties of the hybrid composite were determined by completing five types of tests which are tensile test, impact test, water absorption test, thermogravimetric analysis (TGA), and scanning electron microscope (SEM). The results showed that Sample 2 (FG-K-FG-K) has higher tensile strength compared to Sample 1 (FG-K-K-FG) with the value of 30.97 MPa and 0.23 MPa respectively. For the water absorption test, Sample 1 (FG-K-K-FG) with a value of 239.21% has the highest water absorption properties compared to Sample 2 (FG-K-FG-K) with a value of 180.22%. Samples 1 and 2 have no obvious differences in terms of their thermal stability characteristics for the TGA test. For SEM, it is observed that both of them showed a better surface morphology image. The overall conclusion is Sample 2 (FG-K-FG-K) has high mechanical properties but needs improvement for low water absorption. © 2024 Trans Tech Publications Ltd, Switzerland.
Trans Tech Publications Ltd
02555476
English
Book chapter

author Adnan N.F.; Salim N.; Bakar N.H.A.; Roslan R.; Sarmin S.N.; Kassim M.H.M.; Amini M.H.M.
spellingShingle Adnan N.F.; Salim N.; Bakar N.H.A.; Roslan R.; Sarmin S.N.; Kassim M.H.M.; Amini M.H.M.
The Effect of Fiber Layer Orientation on the Properties of Hybrid Kenaf/Fiberglass Polyester Matrix Composite
author_facet Adnan N.F.; Salim N.; Bakar N.H.A.; Roslan R.; Sarmin S.N.; Kassim M.H.M.; Amini M.H.M.
author_sort Adnan N.F.; Salim N.; Bakar N.H.A.; Roslan R.; Sarmin S.N.; Kassim M.H.M.; Amini M.H.M.
title The Effect of Fiber Layer Orientation on the Properties of Hybrid Kenaf/Fiberglass Polyester Matrix Composite
title_short The Effect of Fiber Layer Orientation on the Properties of Hybrid Kenaf/Fiberglass Polyester Matrix Composite
title_full The Effect of Fiber Layer Orientation on the Properties of Hybrid Kenaf/Fiberglass Polyester Matrix Composite
title_fullStr The Effect of Fiber Layer Orientation on the Properties of Hybrid Kenaf/Fiberglass Polyester Matrix Composite
title_full_unstemmed The Effect of Fiber Layer Orientation on the Properties of Hybrid Kenaf/Fiberglass Polyester Matrix Composite
title_sort The Effect of Fiber Layer Orientation on the Properties of Hybrid Kenaf/Fiberglass Polyester Matrix Composite
publishDate 2024
container_title Materials Science Forum
container_volume 1114
container_issue
doi_str_mv 10.4028/p-9j6ZwY
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85210833648&doi=10.4028%2fp-9j6ZwY&partnerID=40&md5=ca278da4d6962a667d91c2bd9914b778
description A hybrid composite is a combination of two or more fibers in one matrix. Hybrid composite will give better properties as compared to individual fiber-reinforced polymer composites. This research aims to study the effect of different fiber layer orientations on the properties of hybrid kenaf/fiberglass polyester matrix composite. Two types of the composite were produced which are Sample 1, the fiber layer orientation is fiberglass, kenaf fiber, kenaf fiber and fiberglass (FG-K-KFG), and Sample 2, the fiber layer orientation is fiberglass, kenaf fiber, fiberglass, and kenaf fiber (FG-K-FG-K). The composite is manufactured using the hand lay-up technique and hot pressed. 50 g of unsaturated polyester resin and 12 g of hardener, Methyl Ethyl Ketone Peroxide (MEKP) were mixed and apply on top of every layer of fiber before being compressed at 1000C for 10 minutes. The properties of the hybrid composite were determined by completing five types of tests which are tensile test, impact test, water absorption test, thermogravimetric analysis (TGA), and scanning electron microscope (SEM). The results showed that Sample 2 (FG-K-FG-K) has higher tensile strength compared to Sample 1 (FG-K-K-FG) with the value of 30.97 MPa and 0.23 MPa respectively. For the water absorption test, Sample 1 (FG-K-K-FG) with a value of 239.21% has the highest water absorption properties compared to Sample 2 (FG-K-FG-K) with a value of 180.22%. Samples 1 and 2 have no obvious differences in terms of their thermal stability characteristics for the TGA test. For SEM, it is observed that both of them showed a better surface morphology image. The overall conclusion is Sample 2 (FG-K-FG-K) has high mechanical properties but needs improvement for low water absorption. © 2024 Trans Tech Publications Ltd, Switzerland.
publisher Trans Tech Publications Ltd
issn 02555476
language English
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