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Rotational Molding of Polyamide-6 Nanocomposites with Improved Flame Retardancy

机译:具有改进的阻燃性的聚酰胺6纳米复合材料的滚塑

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The aim of this work was to develop polyamide-6/ organic-modified montmorillonite (omMMT) nanocomposites for the production of hollow parts by rotational molding. Particular emphasis was placed on the mechanical and flame retardancy properties needed for the fabrication of vessels for flammable liquids. The morphology of the melt compounded nanocomposites, produced by melt compounding, was investigated by X-ray diffraction measurements (WAXD), and Transmission Electron Microscopy (TEM) showed an exfoliated structure. Rheological measurements were used in order to verify whether the viscosity of materials was adequate for rotational molding. While thermomechanical analysis has revealed that neat PA6 and its nanocomposites were not suitable for rotational molding, due to the very low thermal stability of the polymer, the addition of a thermal stabilizer, shifted the onset of degradation to higher temperatures, thus widening the processing window of both PA6 and PA6 nanocomposites. Large-scale vessel prototypes were obtained by rotational molding of thermo-stabilized PA6 and its nanocomposites, and samples extracted from the rotomolded parts were characterized with respect to physical and mechanical properties. It was found that the PA6 nanocomposites exhibited significant improvements at cone calorimeter tests in comparison with neat PA6.
机译:这项工作的目的是开发聚酰胺6 /有机改性的蒙脱土(omMMT)纳米复合材料,用于通过旋转成型生产中空零件。特别强调了制造易燃液体容器所需的机械和阻燃性能。通过X射线衍射测量(WAXD)研究了通过熔融复合产生的熔融复合纳米复合材料的形态,并且透射电子显微镜(TEM)显示了剥离的结构。使用流变学测量来验证材料的粘度是否足以用于滚塑。尽管热机械分析表明,纯净的PA6及其纳米复合材料不适合滚塑,但由于聚合物的热稳定性极低,因此添加了热稳定剂,可将降解的开始转移到更高的温度,从而扩大了加工范围PA6和PA6纳米复合材料。通过对热稳定的PA6及其纳米复合材料进行旋转成型获得了大规模的容器原型,并对从滚塑零件提取的样品进行了物理和机械性能表征。已发现,与纯净的PA6相比,PA6纳米复合材料在锥形量热仪测试中显示出显着的改进。

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