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Thermal Characterization of Graphene Oxide-Epoxy Nanocomposites Produced by Aqueous Emulsion
The present study desired to obtain a nanocomposite of epoxy resin reinforced with graphene oxide (OG), for aerospace application, produced by aqueous emulsion. It was obtained proof bodies with 0.00 wt%, 0.10 wt%, 0.25 wt% and 0.50 wt% in weight of nanoparticles, to check the influence of it in the final quality of the obtained product. The validation of the results was done by the application thermal characterization by differential scanning calorimetry (DSC). It was seen that the nanocomposite reinforced with 0.10 wt% of OG showed the best results, the average glass transition temperature, at 2 °C, compared to the pure resin.
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[1] Zhong, Yujia; Zhen, Zhen; Zhu, Hongwei. Graphene: Fundamental research and potential applications. Flatchem, (s.l.), v. 4, p.20-32, ago. 2017. Elsevier BV. j.flatc.2017.06.008.
[2] Rahim, Ishrat; Shah, Mutabar; IQBAL, Mahmood; Wahab, Fazal; Khan, Afzal; Khan, Shah Haider Fabrication and electrical characterizations of graphene nanocomposite thin film based heterojunction diode. Physica B: Condensed Matter, (s.l.), v. 524, p.97-103, nov. 2017. Elsevier BV. 10.1016/j.physb.2017.07.073.
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[4] Park, Saibom; Park, Saibom; He, Siyao; Wang, Jianeng; Stein, Andreas; Macosko, Christopher W. Graphene-polyethylene nanocomposites: Effect of graphene functionalization. Polymer, (s.l.), v. 104, p.1-9, nov. 2016. Elsevier BV.
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[6] Velmurugan, R.; MOHAN, T. P. Epoxy-Clay Nanocomposites and Hybrids: Synthesis and Characterization. Journal Of Reinforced Plastics And Composites, (s.l.), v. 28, n. 1, p.17-37, 18 jul. 2008. SAGE Publications.
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[13] DA Silva, L. V.; Pezzin, S. H.; Rezende, M. C.; Campos, A. S.. Glass fiber/carbon nanotubes/epoxy three-component composites as radar absorbing materials. Polymer Composites, (s.l.), v. 37, n. 8, p.2277-2284, 20 mar. 2015. Wiley-Blackwell.
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