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Bio-Based Epoxy/Amine Reinforced with Reduced Graphene Oxide (rGO) or GLYMO-rGO: Study of Curing Kinetics, Mechanical Properties, Lamination and Bonding Performance

Rehman, Sheikh, Gomez, Julio, Villaro, Elvira, Cossey, Dwane and Karagiannidis, Panagiotis (2022) Bio-Based Epoxy/Amine Reinforced with Reduced Graphene Oxide (rGO) or GLYMO-rGO: Study of Curing Kinetics, Mechanical Properties, Lamination and Bonding Performance. Nanomaterials. ISSN 2079-4991

Item Type: Article

Abstract

In this work, we report the synthesis and study of nanocomposites with a biobased epoxy/amine (Epilok 60-600G/Curamine 30-952) matrix reinforced with reduced graphene oxide (rGO) or functionalised with 3-glycidoxypropyltrimethoxysilane (GLYMO-rGO). These graphene related materials (GRMs) were first dispersed into a Curamine hardener using bath ultrasonication, followed by the addition of epoxy resin. Curing kinetics were studied by DSC under non-isothermal and isothermal conditions. The addition of 1.5 wt% of GLYMO-rGO into the epoxy matrix was found to increase the degree of cure by up to 12% and glass transition temperature by 14 °C. Mechanical testing showed that the addition of 0.05 wt% GLYMO-rGO improves Young’s modulus and tensile strength by 60% and 16%, respectively, compared to neat epoxy. Carbon fibre reinforced polymer (CFRP) laminates were prepared via hand lay up, using the nanocomposite system GRM/Epilok/Curamine as matrix, and were cut as CFRP adherents for lap shear joints. GRM/Epilok/Curamine was also used as adhesive to bond CFRP/CFRP and CFRP/aluminium adherents. The addition of 0.1 wt% GLYMO-rGO into the adhesive and CRFP adherents showed improved lap shear strength by 23.6% compared to neat resin, while in the case of CFRP/Aluminium joints the increase was 21.2%.

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More Information

Depositing User: Panagiotis Karagiannidis

Identifiers

Item ID: 14315
Identification Number: https://doi.org/10.3390/nano12020222
ISSN: 2079-4991
URI: http://sure.sunderland.ac.uk/id/eprint/14315
Official URL: https://www.mdpi.com/journal/nanomaterials

Users with ORCIDS

ORCID for Panagiotis Karagiannidis: ORCID iD orcid.org/0000-0002-2709-4161

Catalogue record

Date Deposited: 17 Jan 2022 09:12
Last Modified: 25 Jan 2022 08:46

Contributors

Author: Panagiotis Karagiannidis ORCID iD
Author: Sheikh Rehman
Author: Julio Gomez
Author: Elvira Villaro
Author: Dwane Cossey

University Divisions

Faculty of Technology

Subjects

Engineering > Automotive Engineering
Sciences > Chemistry
Engineering > Mechanical Engineering

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