Journal of Physics Conference Series · 2016 · 34 citations · 15 references
Reinforcement MaterialEngineeringAluminium NanopowdersMechanical EngineeringPolymer NanocompositesThermoplastic CompositePolymer Matrix CompositesChemical EngineeringFire RetardancyPolymer CompositesThermal StabilityPolymer ChemistryMaterials ScienceComposite TechnologyBoric AcidFiber-reinforced CompositeMechanical PropertiesEpoxy PolymersPolymer ScienceMechanical CharacteristicsNanocompositeEpoxy Composites
The epoxy polymers are characterized by low thermal stability and high flammability. Nanoparticles are considered to be effective fillers of polymer composites for improving their thermal and functional properties. In this work, the epoxy composites were prepared using epoxy resin ED-20, polyethylene polyamine as a hardener, aluminum nanopowder and boric acid fine powder as flame-retardant filler. The thermal characteristics of the obtained samples were studied using thermogravimetric analysis and differential scanning calorimetry. The mechanical characteristics of epoxy composites were also studied. It was found that an addition of all fillers enhances the thermal stability and mechanical characteristics of the epoxy composites. The best thermal stability showed the epoxy composite filled with boric acid. The highest flexural properties showed the epoxy composite based on the combination of boric acid and aluminum nanopowder.
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Recent developments in the fire retardancy of polymeric materials
Aravind Dasari, Zhong‐Zhen Yu, Guipeng Cai et al. · Progress in Polymer Science · 2013 · 646 citations · Full text
Fire retardancy of polymeric materials
J.J. Shea · IEEE Electrical Insulation Magazine · 2001 · 353 citations