Flammability, Smoke, Mechanical Behaviours and Morphology of Flame Retarded Natural Fibre/Elium® Composite

Воспламеняемость, дымообразование, механические свойства и морфология огнезащищённого композита на основе натурального волокна и Elium®
Pooria Khalili, Brina Blinzler, Roland Kádár, Roeland Bisschop, Michael Försth, Per Blomqvist
2019-08-21

Elium resincone calorimetryflame retardantsgraphene nanoplateletsnatural fibre composites
The work involves fabrication of natural fibre/Elium® composites using resin infusion technique. The jute fabrics were treated using phosphorus-carbon based flame retardant (FR) agent, a phosphonate solution and graphene nano-platelet (GnP), followed by resin infusion, to produce FR and graphene-based composites. The properties of these composites were compared with those of the Control (jute fabric/Elium®). As obtained from the cone calorimeter and Fourier transform infrared spectroscopy, the peak heat release rate reduced significantly after the FR and GnP treatments of fabrics whereas total smoke release and quantity of carbon monoxide increased with the incorporation of FR. The addition of GnP had almost no effect on carbon monoxide and carbon dioxide yield. Dynamic mechanical analysis demonstrated that coating jute fabrics with GnP particles led to an enhanced glass transition temperature by 14%. Scanning electron microscopy showed fibre pull-out locations in the tensile fracture surface of the laminates after incorporation of both fillers, which resulted in reduced tensile properties.
1
Both filler treatments produced fibre pull-out sites in tensile fracture surfaces, leading to reduced tensile properties.
2
Flame-retardant and graphene treatments significantly reduced the peak heat release rate compared with untreated control composites.
3
Flame-retardant incorporation increased total smoke release and carbon monoxide production, while graphene had little effect on carbon monoxide or carbon dioxide yields.
4
Graphene nanoplatelet coating increased the composite glass transition temperature by 14% according to dynamic mechanical analysis.
5
Natural fibre/Elium® composites were fabricated by resin infusion using phosphorus-carbon flame retardant, phosphonate, and graphene nanoplatelet treatments.

flame-retarded natural jute fibre/Elium® composites containing phosphonate-based flame retardant and graphene nanoplatelets

flammability, smoke and gas emission, thermo-mechanical behavior, and tensile-fracture morphology of the treated composites

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2019-08-21
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Authors
Pooria Khalili
Brina Blinzler
Roland Kádár
Roeland Bisschop
Michael Försth
Per Blomqvist
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