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Effect of Flame Retardants on the Thermal, Burning,and Char Formation Behaviour of Polypropylene-Nanoclay Compounded Polymers

机译:阻燃剂对聚丙烯 - 纳米粘土复合聚合物热,燃烧和炭形成特性的影响

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The effect of different flame retardant types on the thermal stability, flammability and char formation tendency of polypropylene (PP) nano/micro composite is studied. PP, compatabiliser, nanoclay, UV-stabiliser and different flame retardants have been compounded in a twin screw extruder to produce polymers with improved thermal and flame retardant properties. Thermal analysis has been used to study the thermal properties, and limiting oxygen index (LOI) and slightly modified UL-94 test for flammability of the samples. All flame retardants acting in the condensed phase (phosphorus- and nitrogen- containing) lowered the rate of decomposition, whereas halogenated flame retardants had a little effect. The addition of nanoclay with or without flame retardants increased the thermal stability of all samples and helped in char formation. All samples with flame retardants and no clay, burnt completely, which is not unexpected, given the low levels (5%) of flame retardants used here. However, the flame spread was low. On addition of clay to the compounded polymer, a change in burning behaviour was observed, flame spread was reduced and samples self-extinguished, except for the one containing melamine phosphate. A tube furnace was used for char formation at different temperatures and the charred structures have beenexamined with digital images, optical and scanning electron microscopy, and FTIR. This information has been used to understand the mechanisms of thermal degradation of different flame retarded PP - nano/micro composite samples.
机译:研究了不同阻燃剂类型对聚丙烯(PP)纳米/微复合材料的热稳定性,易燃性和炭形成趋势的影响。 PP,compatabiliser,纳米粘土,UV稳定剂和不同的阻燃剂已配混双螺杆挤出机,以具有改进的热性能和阻燃性能产生的聚合物。热分析已用于研究热性质,并限制氧指数(LOI)和略微改性的UL-94试验样品的可燃性。所有作用于缩合相的阻燃剂(含磷和含氮)降低了分解速率,而卤化阻燃剂有一点效果。添加或不含阻燃剂的纳米粘土增加了所有样品的热稳定性,并有助于炭形成。所有具有阻燃剂和没有粘土的样品,完全烧尽,这不是意外的,鉴于此处使用的阻燃剂的低水平(5%)。然而,火焰蔓延低。在向配混聚合物中加入粘土,观察到燃烧行为的变化,降低火焰涂抹并自熄,除了含有三聚氰胺磷酸三三聚氰胺的样品。管炉用于不同温度下的炭形成,并且烧焦的结构已经用数字图像,光学和扫描电子显微镜和FTIR探索。该信息已被用于了解不同火焰延迟PP - 纳米/微复合材料样品的热降解的机制。

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