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首页> 外文期刊>Polymers for advanced technologies >Phosphonium-modified layered silicate epoxy resins nanocomposites and their combinations with ATH and organo-phosphorus fire retardants
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Phosphonium-modified layered silicate epoxy resins nanocomposites and their combinations with ATH and organo-phosphorus fire retardants

机译:磷改性的层状硅酸盐环氧树脂纳米复合材料及其与ATH和有机磷阻燃剂的组合

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Phosphonium-modified layered silicate epoxy resin nanocomposites were evaluated by testing the thermal/thermo-mechanical properties [differential scanning calorimetry (DSC), thermogravi-metric analysis (TGA), torsional pendulum, Sharpy toughness], flammability (limiting oxygen index LOI) and fire behavior (cone calorimeter with different irradiations). The morphology of the composites was determined using scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The drying conditions of phosphonium-modified layered silicate were varied in order to improve the nanocomposite formation and properties. The results were compared with using a commercial ammonium-modified montmorillonite. Enhanced nanocomposite formation was found for the commercial systems due to the amount of excess surfactant, but this effect was overcompensated through the advanced morphology of the phosphonium-modified systems. Several fire retardancy mechanisms and their specific influence on the different fire properties, such as ignitability, flammability, flame spread, total heat release (fire load), and the production of CO and smoke were discussed comprehensively. The main mechanism of layered silicate is a barrier formation influencing the flame spread in developing fires. Several minor mechanisms are significant, but important fire properties such as flammability or fire load are hardly influenced. Hence combinations with aluminum hydroxide and organo-phosphorus flame retardants were evaluated. The combination with aluminum hydroxide was a promising approach since it shows superposition in properties such as the fire load and only in some properties very little antagonism. The combination with an organo-phosphorus flame retardant disillusions, since it was characterized mainly by antagonism.
机译:通过测试热/热机械性能[差示扫描量热法(DSC),热重分析(TGA),扭摆,夏普韧性],可燃性(极限氧指数LOI)和着火行为(锥形量热计具有不同的辐射)。使用扫描电子显微镜(SEM)和透射电子显微镜(TEM)确定复合材料的形态。改变phospho改性的层状硅酸盐的干燥条件以改善纳米复合材料的形成和性质。将结果与使用商业铵改性的蒙脱石进行了比较。由于过量的表面活性剂的量,对于商业体系发现增强的纳米复合物形成,但是这种作用通过the改性体系的高级形态而被过度补偿。全面讨论了几种阻燃机理及其对不同火特性的具体影响,例如可燃性,可燃性,火焰蔓延,总热量释放(火负荷)以及CO和烟气的产生。层状硅酸盐的主要机理是在火势蔓延中影响火焰蔓延的屏障形成。几个较小的机制很重要,但是重要的火灾特性(如可燃性或火负荷)几乎不受影响。因此,评估了与氢氧化铝和有机磷阻燃剂的组合。与氢氧化铝的组合是一种有前途的方法,因为它在诸如火负荷的性质上显示出叠加,并且仅在某些性质中显示出极小的拮抗作用。与有机磷阻燃剂幻灭相结合,因为它的主要特征是拮抗作用。

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