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Influence of aluminum hydroxide and expandable graphite on the flammability of polyisocyanurate-polyurethane foams

机译:氢氧化铝和可膨胀石墨对多异氰脲酸酯 - 聚氨酯泡沫燃烧性的影响

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The aim of this work was to verify the influence of expandable graphite (EG) and aluminum hydroxide (ATH) fillers on the flammability of polyisocyanurate-polyurethane (PIR). Limited oxygen index increased to 72.5 with an incorporation of 16 phr (parts per hundred of matrix) EG and 50 phr ATH into the matrix (total weight percent was 39.76%). Cone calorimetry was employed to study the flammability properties of these PIR/ATH/EG composites. Scanning electron microscopy analysis was conducted to study the char characteristics of the composites after the cone calorimetry tests. It was found ATH could effectively induce "villi" like particles, which made the intumescent char denser, on the surface of EG. The compact char layer could effectively impede the transport of bubbles and heat. ATH and EG accelerated the initial degradation and fluffy char was quickly generated on the surface. Thus, degradation products of the composite were slowed down and the diffusion of volatile combustible fragments to flame zone was delayed.
机译:这项工作的目的是验证可扩展石墨(例如)和氢氧化铝(ATH)填料对多异氰脲酸酯 - 聚氨酯(PIR)的易燃性的影响。有限的氧指数增加到72.5,掺入16phr(百分之一的基质),例如50phrAth进入基质(总重量为39.76%)。使用锥形量热法研究这些PIR / ATH /例如复合材料的可燃性性质。进行扫描电子显微镜分析以研究锥形量热试验后复合材料的炭特性。它被发现可以有效地诱导颗粒的“villi”,它使膨胀型焦点更密集,在例如例如。紧凑型炭层可以有效地妨碍气泡和热量的运输。 ATH和例如加速初始劣化和蓬松的焦炭在表面上很快产生。因此,减慢了复合材料的降解产物,并且挥发性可燃片段向火焰区的扩散被延迟。

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