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Barrier effect of flame retardant systems in poly(methyl methacrylate): Study of the efficiency of the surface treatment by octylsilane of silica nanoparticles in combination with phosphorous fire retardant additives
17
Citations
30
References
2011
Year
Pmma MatrixEngineeringChemistryChemical EngineeringFire RetardancyAnalytical PyrolysisFire ResistanceFire BehaviourFlame Retardant SystemsPolymer ChemistryFire ChemistryMaterials ScienceFire SafetyBarrier EffectNanomaterialsCombustion SciencePolymer ScienceMaterials CharacterizationFunctional MaterialsPolymer AdditiveSilica Nanoparticles
SUMMARY In this work, flame retardant systems comprising ammonium polyphosphate (AP423) and hydrophilic (A200) or hydrophobic (R805) nanometric silica were incorporated into PMMA. The following techniques were performed to detail the fire behaviour of the composites: mass loss cone calorimetry, pyrolysis‐combustion flow calorimetry, pyrolysis‐gas chromatography–mass spectrometry, thermogravimetric analysis, X‐ray diffraction analysis, Fourier transform infrared spectroscopy and microscopic observations. The best fire behaviour was obtained with the surface‐treated silica in the presence of AP423. The formation of a new crystalline phase from the interactions between AP423 and R805 silica and a strong barrier effect due to a layered residue were the main modes of action of this system. Moreover, we have shown that the difference between the AP423 + R805 and AP423 + A200 systems was due to poor dispersion of the silica into the PMMA matrix in the latter formulation. Copyright © 2011 John Wiley & Sons, Ltd.
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