Mechanical characterization of Carbon Fibre and Graphene Oxide Reinforced Epoxy Hybrid Composite

In this study, graphene oxide (GO) and carbon fibre (CF) reinforced epoxy hybrid composite has been fabricated by vacuum resin infusion method and the influence of GO reinforcement on the tensile and flexural properties has been investigated. Three different concentration of GO 0.2, 0.4 and 0.6 wt%...

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Main Authors: Sakib, Md. Nazmus, Asif Iqbal, AKM, Muhammad Nuruzzaman, Dewan
Format: Book Chapter
Language:English
Published: Springer Singapore 2021
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/31408/1/NazmusSakib2021_Chapter_MechanicalCharacterizationOfCa.pdf
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author Sakib, Md. Nazmus
Asif Iqbal, AKM
Muhammad Nuruzzaman, Dewan
author_facet Sakib, Md. Nazmus
Asif Iqbal, AKM
Muhammad Nuruzzaman, Dewan
author_sort Sakib, Md. Nazmus
collection UMP
description In this study, graphene oxide (GO) and carbon fibre (CF) reinforced epoxy hybrid composite has been fabricated by vacuum resin infusion method and the influence of GO reinforcement on the tensile and flexural properties has been investigated. Three different concentration of GO 0.2, 0.4 and 0.6 wt% were used to develop hybrid composite samples. The results show that both the tensile and flexural strength increase once GO is added to the epoxy-CF composite. Among the three different concentration of GO, 0.4 wt% GO reinforced hybrid composite exhibits superior mechanical properties and can be considered as the optimum value in augmenting the mechanical performance of the hybrid composite.
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spelling UMPir314082021-05-11T17:03:40Z http://umpir.ump.edu.my/id/eprint/31408/ Mechanical characterization of Carbon Fibre and Graphene Oxide Reinforced Epoxy Hybrid Composite Sakib, Md. Nazmus Asif Iqbal, AKM Muhammad Nuruzzaman, Dewan TJ Mechanical engineering and machinery In this study, graphene oxide (GO) and carbon fibre (CF) reinforced epoxy hybrid composite has been fabricated by vacuum resin infusion method and the influence of GO reinforcement on the tensile and flexural properties has been investigated. Three different concentration of GO 0.2, 0.4 and 0.6 wt% were used to develop hybrid composite samples. The results show that both the tensile and flexural strength increase once GO is added to the epoxy-CF composite. Among the three different concentration of GO, 0.4 wt% GO reinforced hybrid composite exhibits superior mechanical properties and can be considered as the optimum value in augmenting the mechanical performance of the hybrid composite. Springer Singapore 2021-02-19 Book Chapter PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/31408/1/NazmusSakib2021_Chapter_MechanicalCharacterizationOfCa.pdf Sakib, Md. Nazmus and Asif Iqbal, AKM and Muhammad Nuruzzaman, Dewan (2021) Mechanical characterization of Carbon Fibre and Graphene Oxide Reinforced Epoxy Hybrid Composite. In: Lecture Notes in Mechanical Engineering. Lecture Notes in Mechanical Engineering book series (LNME . Springer Singapore, https://link.springer.com/bookseries/11236, pp. 155-161. ISBN 978-981-15-9505-9 https://doi.org/10.1007/978-981-15-9505-9_15
spellingShingle TJ Mechanical engineering and machinery
Sakib, Md. Nazmus
Asif Iqbal, AKM
Muhammad Nuruzzaman, Dewan
Mechanical characterization of Carbon Fibre and Graphene Oxide Reinforced Epoxy Hybrid Composite
title Mechanical characterization of Carbon Fibre and Graphene Oxide Reinforced Epoxy Hybrid Composite
title_full Mechanical characterization of Carbon Fibre and Graphene Oxide Reinforced Epoxy Hybrid Composite
title_fullStr Mechanical characterization of Carbon Fibre and Graphene Oxide Reinforced Epoxy Hybrid Composite
title_full_unstemmed Mechanical characterization of Carbon Fibre and Graphene Oxide Reinforced Epoxy Hybrid Composite
title_short Mechanical characterization of Carbon Fibre and Graphene Oxide Reinforced Epoxy Hybrid Composite
title_sort mechanical characterization of carbon fibre and graphene oxide reinforced epoxy hybrid composite
topic TJ Mechanical engineering and machinery
url http://umpir.ump.edu.my/id/eprint/31408/1/NazmusSakib2021_Chapter_MechanicalCharacterizationOfCa.pdf
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