Effects of nano-sized boron nitride (BN) reinforcement in expandable graphite based in-tumescent fire retardant coating

Zulkurnain, E.S. and Ahmad, F. and Gillani, Q.F. (2016) Effects of nano-sized boron nitride (BN) reinforcement in expandable graphite based in-tumescent fire retardant coating. In: UNSPECIFIED.

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Abstract

The purpose of in-tumescent fire retardant coating (IFRC) is to protect substrate from fire attack by limiting heat transfer. A range of coating formulations have been prepared using Bisphenol A epoxy resin BE-188 and polyamide solidifier H-2310 as two-part binder, ammonium polyphosphate (APP) as acid source, melamine (MEL) as the blowing agent, expandable graphite (EG) as carbon source and nano-boron nitride (BN) as inorganic nano filler. The filler was used to improve the performances of the APP-EG-MEL coating. The effects of nano-BN on the char morphology and thermal degradation were investigated by fire test, thermo gravimetric analysis (TGA), Fourier transform infrared spectroscopy (FTIR), X- ray photoelectron spectroscopy (XPS) and field emission scanning electron microscopy (FESEM). The results showed that by substituting or reinforcing of 4 weight percentage of nano-BN, residual weight of the char increases by 23.82 compared to APP-EG-MEL coating without filler. Higher carbon content was obtained in the char and a more compact char was produced. The results indicated that nano-BN could be used as a filler to improve thermal stability of the APP-EG-MEL coating. © Published under licence by IOP Publishing Ltd.

Item Type: Conference or Workshop Item (UNSPECIFIED)
Additional Information: cited By 6; Conference of 14th International Symposium on Advanced Materials, ISAM 2015 ; Conference Date: 12 October 2015 Through 16 October 2015; Conference Code:123856
Uncontrolled Keywords: Blowing agents; Boron nitride; Coatings; Epoxy resins; Field emission microscopes; Fillers; Fires; Flammability testing; Fourier transform infrared spectroscopy; Graphite; Gravimetric analysis; Heat transfer; Nitrides; Photodegradation; Reinforcement; Scanning electron microscopy; Thermodynamic stability; Thermogravimetric analysis, Ammonium polyphosphates; Bisphenol A epoxy resin; Coating formulations; Expandable graphite; Field emission scanning electron microscopy; Fire retardant coating; Residual weight; Weight percentages, X ray photoelectron spectroscopy
Depositing User: Mr Ahmad Suhairi UTP
Date Deposited: 09 Nov 2023 16:18
Last Modified: 09 Nov 2023 16:18
URI: https://khub.utp.edu.my/scholars/id/eprint/6832

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