The Effects of Stacking Sequence on the Tensile and Flexural Properties of Kenaf/Jute Fibre Hybrid Composites

The aim of this study to analyze the effects of the stacking sequence of kenaf and jute fibers on the tensile and flexural properties of the kenaf/jute hybrid composites. Kenaf/jute/kenaf (K/J/K), jute/kenaf/jute (J/K/J) and neat epoxy (EP) composites were prepared using the hand lay-up technique wh...

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Published in:Journal of Natural Fibers
Main Authors: T. Khan, M. T. H. Sultan, A. U. M. Shah, A. H. Ariffin, M. Jawaid
Format: Article
Language:English
Published: Taylor & Francis Group 2021-03-01
Subjects:
Online Access:http://dx.doi.org/10.1080/15440478.2019.1629148
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author T. Khan
M. T. H. Sultan
A. U. M. Shah
A. H. Ariffin
M. Jawaid
author_facet T. Khan
M. T. H. Sultan
A. U. M. Shah
A. H. Ariffin
M. Jawaid
author_sort T. Khan
collection DOAJ
container_title Journal of Natural Fibers
description The aim of this study to analyze the effects of the stacking sequence of kenaf and jute fibers on the tensile and flexural properties of the kenaf/jute hybrid composites. Kenaf/jute/kenaf (K/J/K), jute/kenaf/jute (J/K/J) and neat epoxy (EP) composites were prepared using the hand lay-up technique while maintaining total fiber loading of 30 wt%. Mechanical properties were analyzed by using Instron Universal Testing machines. The obtained results showed that the K/J/K hybrid composites exhibited the highest tensile strength (43.21 MPa) and flexural strength (75.57 MPa) as compared with J/K/J hybrid composites. K/J/K hybrid composites also display better tensile and flexural modulus of 3.60 GPa and 4.63 GPa, respectively, as compared to J/K/J hybrid and neat epoxy composites. The morphological properties of tensile and flexural fracture samples of the hybrid composites were analyzed by using scanning electron microscopy (SEM). It’s clear from SEM that fiber pull-out, and matrix cracks occurs in all composites, but K/J/K hybrid composites display better fiber/matrix interfacial bonding. We concluded from this work that layering sequence plays an important role in the mechanical performance of hybrid composites and attributed that fabricated hybrid composites can be used in engineering application such as interiors for aircrafts and automotive.
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spelling doaj-art-97fbf424c3c640d7b9010f313f43b1912025-08-19T22:16:49ZengTaylor & Francis GroupJournal of Natural Fibers1544-04781544-046X2021-03-0118345246310.1080/15440478.2019.16291481629148The Effects of Stacking Sequence on the Tensile and Flexural Properties of Kenaf/Jute Fibre Hybrid CompositesT. Khan0M. T. H. Sultan1A. U. M. Shah2A. H. Ariffin3M. Jawaid4Universiti Putra MalaysiaUniversiti Putra MalaysiaUniversiti Putra MalaysiaUniversiti Putra MalaysiaUniversiti Putra MalaysiaThe aim of this study to analyze the effects of the stacking sequence of kenaf and jute fibers on the tensile and flexural properties of the kenaf/jute hybrid composites. Kenaf/jute/kenaf (K/J/K), jute/kenaf/jute (J/K/J) and neat epoxy (EP) composites were prepared using the hand lay-up technique while maintaining total fiber loading of 30 wt%. Mechanical properties were analyzed by using Instron Universal Testing machines. The obtained results showed that the K/J/K hybrid composites exhibited the highest tensile strength (43.21 MPa) and flexural strength (75.57 MPa) as compared with J/K/J hybrid composites. K/J/K hybrid composites also display better tensile and flexural modulus of 3.60 GPa and 4.63 GPa, respectively, as compared to J/K/J hybrid and neat epoxy composites. The morphological properties of tensile and flexural fracture samples of the hybrid composites were analyzed by using scanning electron microscopy (SEM). It’s clear from SEM that fiber pull-out, and matrix cracks occurs in all composites, but K/J/K hybrid composites display better fiber/matrix interfacial bonding. We concluded from this work that layering sequence plays an important role in the mechanical performance of hybrid composites and attributed that fabricated hybrid composites can be used in engineering application such as interiors for aircrafts and automotive.http://dx.doi.org/10.1080/15440478.2019.1629148kenaf fibrejute fibretensile propertiesflexural propertieshybrid compositesscanning electron microscopy
spellingShingle T. Khan
M. T. H. Sultan
A. U. M. Shah
A. H. Ariffin
M. Jawaid
The Effects of Stacking Sequence on the Tensile and Flexural Properties of Kenaf/Jute Fibre Hybrid Composites
kenaf fibre
jute fibre
tensile properties
flexural properties
hybrid composites
scanning electron microscopy
title The Effects of Stacking Sequence on the Tensile and Flexural Properties of Kenaf/Jute Fibre Hybrid Composites
title_full The Effects of Stacking Sequence on the Tensile and Flexural Properties of Kenaf/Jute Fibre Hybrid Composites
title_fullStr The Effects of Stacking Sequence on the Tensile and Flexural Properties of Kenaf/Jute Fibre Hybrid Composites
title_full_unstemmed The Effects of Stacking Sequence on the Tensile and Flexural Properties of Kenaf/Jute Fibre Hybrid Composites
title_short The Effects of Stacking Sequence on the Tensile and Flexural Properties of Kenaf/Jute Fibre Hybrid Composites
title_sort effects of stacking sequence on the tensile and flexural properties of kenaf jute fibre hybrid composites
topic kenaf fibre
jute fibre
tensile properties
flexural properties
hybrid composites
scanning electron microscopy
url http://dx.doi.org/10.1080/15440478.2019.1629148
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