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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Flammability properties of polymer nanocomposites with single-walled carbon nanotubes:effects of nanotube dispersion and concentration
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Flammability properties of polymer nanocomposites with single-walled carbon nanotubes:effects of nanotube dispersion and concentration

机译:具有单壁碳纳米管的聚合物纳米复合材料的可燃性:纳米管分散和浓度的影响

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摘要

The effects of the dispersion and concentration of single walled carbon nanotube (SWNT) on the flammability of polymer/SWNT nanocomposites were investigated.The polymer matrix was poly (methyl methacrylate) (PMMA) and the SWNT were dispersed using a phase separation ('coagulation') method.Dispersion of SWNTs in these nanocomposites was characterized by optical microscopy on a micrometer scale.Flammability properties were measured with a cone calorimeter in air and a gasification device in a nitrogen atmosphere.In the case where the nanotubes were relatively well-dispersed,a nanotube containing network structured layer was formed without any major cracks or openings during the burning tests and covered the entire sample surface of the nanocomposite.However,nanocomposites having a poor nanotube dispersion or a low concentration of the nanotubes (0.2% by mass or less) formed numerous black discrete islands with vigorous bubbling occurring between these islands.Importantly,the peak heat release rate of the nanocomposite that formed the network layer is about a half of those,which formed the discrete islands.It is proposed that the formation of the discrete islands is due to localized accumulation of the nanotubes as a result of fluid convection accompanying bubble formation and rise of the bubbles to the surface through the molten sample layer and bursting of the bubbles at the surface.The network layer acts as a heat shield to slow the thermal degradation of PMMA.
机译:研究了单壁碳纳米管(SWNT)的分散度和浓度对聚合物/ SWNT纳米复合材料可燃性的影响。聚合物基体为聚甲基丙烯酸甲酯(PMMA),并通过相分离(``凝结'')分散SWNT方法):用微米级光学显微镜表征SWNTs在这些纳米复合材料中的分散度;用锥形量热仪在空气中和在氮气气氛中的气化装置测量易燃性;在纳米管相对分散的情况下,在燃烧测试期间形成了包含纳米管的网络结构层,没有任何大的裂纹或开口,并且覆盖了纳米复合材料的整个样品表面。但是,纳米复合材料的纳米管分散性差或纳米管浓度低(0.2质量%较少)形成许多黑色的离散岛,这些岛之间发生剧烈的起泡。形成网络层的纳米复合材料的租赁速率约为形成离散岛的纳米复合材料的一半。提出离散岛的形成是由于伴随气泡形成的流体对流导致纳米管的局部积累并通过熔化的样品层将气泡上升到表面,并使气泡在表面破裂。网络层充当隔热罩,可减缓PMMA的热降解。

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