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Characterization and preparation of conductive exfoliated graphene nanoplatelets kenaf fibre hybrid polypropylene composites

Idumah, Christopher Igwe and Hassan, Azman (2016) Characterization and preparation of conductive exfoliated graphene nanoplatelets kenaf fibre hybrid polypropylene composites. Synthetic Metals, 212 . pp. 91-104. ISSN 0379-6779

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Official URL: https://www.scopus.com/inward/record.uri?eid=2-s2....

Abstract

Exfoliated graphene nanoplatelets (GNP) kenaf fiber (KF) hybrid polypropylene (PP) composites materials were prepared by melt extrusion followed by injection molding. PP/KF/MAPP/GNP composites 0-5 phr were prepared and characterized using X-ray diffraction (XRD), differential scanning calorimetre (DSC), thermogravimetry analysis (TGA), heat deflection temperature (HDT), thermal mechanical analysis (TMA), Fourier transform infrared (FTIR) spectroscopy analysis, field emission scanning electron microscopy. The morphological studies revealed a homogenous dispersion of GNPs in PP/KF/MAPP/GNP up to 3 phr loading after which agglomeration occurred. Flexural strength and modulus were enhanced by 70% and 98% respectively at 3 phr GNPs loading which were the highest values obtained. Interestingly, the highest value for the impact strength was also recorded at 3 phr loading. Thermal conductivity increased by 88%, CTE decreased by 80%, water absorption and thickness swelling decreased while HDT improved. The thermal stability of the composites were generally improved at all GNP loading with the highest at 3 phr. From the overall results, it is obvious that the optimum concentration of GNPs in the PP/KF/MAPP/GNP system in terms of both mechanical and thermal properties was 3 phr loading. Although, the mechanical and thermal properties of the composites were improved, the FTIR analysis did not reveal any chemical interaction between GNP and the PP/KF/MAPP system.

Item Type:Article
Uncontrolled Keywords:Chemical analysis, Extrusion molding, Field emission microscopes, Fourier transform infrared spectroscopy, Graphene, Hemp, Hybrid materials, Impact strength, Injection molding, Kenaf fibers, Melt spinning, Nanocomposites, Polypropylenes, Scanning electron microscopy, Thermal expansion, Thermodynamic properties, Thermodynamic stability, Thermogravimetric analysis, Water absorption, X ray diffraction, Field emission scanning electron microscopy, GNP, Heat deflection temperature, mechanical, Mechanical and thermal properties, Polymer nanocomposite, Thermal mechanical analysis, Thermogravimetry analysis, Thermal conductivity, Agglomeration, Composites, Extrusion, Impact Strength, Injection Molding, Kenaf, Polypropylene
Subjects:T Technology > TP Chemical technology
Divisions:Chemical Engineering
ID Code:73921
Deposited By: Fahmi Moksen
Deposited On:22 Nov 2017 12:07
Last Modified:22 Nov 2017 12:07

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