首页> 外文会议>International conference on blowing agents and foaming processes >POLY(STYRENE-CO-ACRYLONITRILE) FOAMING WITH SUPERCRITICAL CO_2: INFLUENCE OF NANOCLAY ON THE FOAM MORPHOLOGY AND FLAMMABILITY
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POLY(STYRENE-CO-ACRYLONITRILE) FOAMING WITH SUPERCRITICAL CO_2: INFLUENCE OF NANOCLAY ON THE FOAM MORPHOLOGY AND FLAMMABILITY

机译:聚(苯乙烯 - 共丙烯腈)用超临界CO_2发泡:纳米粘土对泡沫形态和易燃性的影响

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Polymeric foams are attractive materials due to their low weight, high impact resistance, thermal insulation, etc. However, these materials, mainly composed of voids, are highly flammable, which limits their use in several applications, like house decoration. For a few years, lamellar nanoclays are driving an increasing interest due to their ability to modify polymers combustion behaviour with only a few percent of well-dispersed filler while increasing the material strength. In this work, we have used supercritical carbon dioxide (CO_2) as the physical blowing agent in order to prepare poly(styrene-co-acrylonitrile)/clay nanocomposite foams. The influence of the foaming conditions on the cellular structure is first deeply investigated, with a particular emphasis on nanoclay effect on the cell size and cell density. Then, the burning behavior of the nanocomposite foams is characterized with cone calorimetry. The peak of heat release rate (PHRR) is assessed as a function of the nanoclay delamination level and the percentage of nanofiller added. The lamellar nanofiller shows fire retardancy as attested by the significant experimentally observed PHRR drop. In a last step, the clay is combined with a non-halogenated flame retardant, melamine polyphosphate. We observe that the two fillers act in synergy to reduce further the PHRR.
机译:由于它们的低重量,高抗冲击性,保温等,聚合物泡沫是具有吸引力的材料,但是,这些材料主要由空隙组成,是高度易燃的,这限制了它们在几种应用中的使用,如房屋装饰。几年来,由于它们在增加材料强度的同时,由于其改变聚合物燃烧行为的能力而推动了越来越多的分散填料的能力,因此越来越感兴趣。在这项工作中,我们用了超临界二氧化碳(CO_2)作为物理发泡剂,以制备聚(苯乙烯 - 共丙烯腈)/粘土纳米复合泡沫。首先深深研究了发泡条件对细胞结构对细胞结构的影响,特别强调了对细胞尺寸和细胞密度的纳米粘土效应。然后,纳米复合泡沫的燃烧行为的特征在于锥形量热法。作为纳米粘土分层水平的函数评估热释放速率(PHRR)的峰值,并添加纳米填充物的百分比。层状纳米填充物显示出通过显着的实验观察到的PHRR降低的阻燃性。在最后一步中,粘土与非卤化阻燃剂,三聚氰胺多磷酸盐结合。我们观察到两种填充物在协同作用中起步减少PHRR。

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