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首页> 外文期刊>Journal of thermal analysis and calorimetry >Cone calorimeter analysis of flame retardant poly (methyl methacrylate)-silica nanocomposites
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Cone calorimeter analysis of flame retardant poly (methyl methacrylate)-silica nanocomposites

机译:阻燃聚(甲基丙烯酸甲酯) - 硅氧烷纳米复合材料的锥形量热计分析

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Nanocomposite is a promising method to reduce fire hazards of polymers. Specifically due to increased interfacial area between polymer and nanofillers, polymer nanocomposites have an advantage in reducing fire hazards efficiently even when the flame retardant additives are at a concentration of 5 mass% or less. In theory, crosslinking between the polymer chains can create a carbon-dense structure to enhance char formation, which can further promote the flame retardancy. However, little research has been done to explore the flammability of crosslinking polymer nanocomposites with a low concentration of nanosilica particles. In this study, crosslinked and non-crosslinked poly (methyl methacrylate) (PMMA) nanocomposites of a low concentration of nanosilica particles have been prepared via an in situ method. Their fire properties were tested by using the cone calorimeter at the heat flux of 50 kW m(-2). Although silica-containing flame retardants tend to negatively affect the ignitability and soot production especially at a high concentration, through the condensed phase mechanism, the samples of high loading rate of nanosilica particles show better fire retardancy performance in the aspect of flammability, including decreased heat release rate, mass loss rate, and total heat release. Additionally, crosslinking indeed attributes to the less intensive combustion of crosslinked PMMA samples, especially at a low concentration of nanosilica. The combination of nanosilica particles with the modification of the internal structure of the polymer nanocomposites might be a good strategy to improve fire retardancy.
机译:纳米复合材料是减少聚合物火灾危害的有希望的方法。特别是由于聚合物和纳米填料之间的界面面积增加,即使阻燃添加剂的浓度为5质量%或更少,聚合物纳米复合材料也具有有效地降低火灾危险。理论上,聚合物链之间的交联可以产生碳密集结构以增强炭形成,这可以进一步促进阻燃性。然而,已经进行了很少的研究来探讨交联聚合物纳米复合材料以低浓度的纳米粒子颗粒的易燃性。在该研究中,通过原位方法制备低浓度的纳米硅颗粒的交联和非交联的聚(甲基丙烯酸甲酯)(PMMA)纳米复合材料。通过使用50 kW m(-2)的热通量的锥形量热计测试它们的火质。虽然含二氧化硅的阻燃剂倾向于对浓度的高浓度产生负面影响,但是通过冷凝相机制,纳米硅颗粒的高负载率的样品在易燃性方面表现出更好的阻燃性能,包括降低的热量释放率,质量损失率和总热释放。另外,交联确实属于交联PMMA样品的较小燃烧,尤其是低浓度的纳米磷酸盐。纳米硅颗粒与聚合物纳米复合材料的内部结构的改性的组合可能是改善阻燃性的良好策略。

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