Tensile Behaviour of MWCNTs-Modified Epoxy Grout for Pipeline Repair

Infill material in the pipeline repair system works by filling the gap that is usually caused by corrosion before the fibre wrapper can be applied for pipeline recovery. In this study, nanocomposites were prepared by adding a small amount of Multi-walled carbon nanotubes (MWCNT) to an existing comme...

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Main Authors: Arifin Hanis Hazirah, Zainal Nurfarahin, Zardasti Libriati, Yahya Nordin, Lim Kar Sing, Lai Jian Wey, Md Noor Norhazilan
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201820306013
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spelling doaj-806058afea7142ecb1a589c402e929b02021-03-02T06:51:11ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012030601310.1051/matecconf/201820306013matecconf_iccoee2018_06013Tensile Behaviour of MWCNTs-Modified Epoxy Grout for Pipeline RepairArifin Hanis HazirahZainal NurfarahinZardasti LibriatiYahya NordinLim Kar SingLai Jian WeyMd Noor NorhazilanInfill material in the pipeline repair system works by filling the gap that is usually caused by corrosion before the fibre wrapper can be applied for pipeline recovery. In this study, nanocomposites were prepared by adding a small amount of Multi-walled carbon nanotubes (MWCNT) to an existing commercial epoxy resin grout aiming to evaluate their behaviour regarding neat epoxy grout as infill material in composite repair for steel pipeline subjected to external metal loss. The dispersion of the nanoparticles in the epoxy resin has been conducted through ultrasonic and calendaring technique. The results of modified epoxy grout were compared to neat epoxy grout to identify if the MWCNTs are advantageous to existing materials. By comparing the results, 0.5% of MWCNT filler has significantly improved the strength by almost 53.3%. In addition, the results also indicate that MWCNT filler has increased the modulus of elasticity of the infill material. Furthermore, the morphologies image displayed that MWCNTs has been well merged into the matrix, and made the fracture cross section rougher through sharing the stress. Therefore, it demonstrated the intrinsic potential of the CNTs in modifying the properties of the composites.https://doi.org/10.1051/matecconf/201820306013
collection DOAJ
language English
format Article
sources DOAJ
author Arifin Hanis Hazirah
Zainal Nurfarahin
Zardasti Libriati
Yahya Nordin
Lim Kar Sing
Lai Jian Wey
Md Noor Norhazilan
spellingShingle Arifin Hanis Hazirah
Zainal Nurfarahin
Zardasti Libriati
Yahya Nordin
Lim Kar Sing
Lai Jian Wey
Md Noor Norhazilan
Tensile Behaviour of MWCNTs-Modified Epoxy Grout for Pipeline Repair
MATEC Web of Conferences
author_facet Arifin Hanis Hazirah
Zainal Nurfarahin
Zardasti Libriati
Yahya Nordin
Lim Kar Sing
Lai Jian Wey
Md Noor Norhazilan
author_sort Arifin Hanis Hazirah
title Tensile Behaviour of MWCNTs-Modified Epoxy Grout for Pipeline Repair
title_short Tensile Behaviour of MWCNTs-Modified Epoxy Grout for Pipeline Repair
title_full Tensile Behaviour of MWCNTs-Modified Epoxy Grout for Pipeline Repair
title_fullStr Tensile Behaviour of MWCNTs-Modified Epoxy Grout for Pipeline Repair
title_full_unstemmed Tensile Behaviour of MWCNTs-Modified Epoxy Grout for Pipeline Repair
title_sort tensile behaviour of mwcnts-modified epoxy grout for pipeline repair
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Infill material in the pipeline repair system works by filling the gap that is usually caused by corrosion before the fibre wrapper can be applied for pipeline recovery. In this study, nanocomposites were prepared by adding a small amount of Multi-walled carbon nanotubes (MWCNT) to an existing commercial epoxy resin grout aiming to evaluate their behaviour regarding neat epoxy grout as infill material in composite repair for steel pipeline subjected to external metal loss. The dispersion of the nanoparticles in the epoxy resin has been conducted through ultrasonic and calendaring technique. The results of modified epoxy grout were compared to neat epoxy grout to identify if the MWCNTs are advantageous to existing materials. By comparing the results, 0.5% of MWCNT filler has significantly improved the strength by almost 53.3%. In addition, the results also indicate that MWCNT filler has increased the modulus of elasticity of the infill material. Furthermore, the morphologies image displayed that MWCNTs has been well merged into the matrix, and made the fracture cross section rougher through sharing the stress. Therefore, it demonstrated the intrinsic potential of the CNTs in modifying the properties of the composites.
url https://doi.org/10.1051/matecconf/201820306013
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AT zainalnurfarahin tensilebehaviourofmwcntsmodifiedepoxygroutforpipelinerepair
AT zardastilibriati tensilebehaviourofmwcntsmodifiedepoxygroutforpipelinerepair
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