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Modification of poly(styrene-block-butadiene-block-styrene) SBS with phosphorus containing fire retardants

机译:用含磷阻燃剂改性聚(苯乙烯 - 嵌段 - 丁二烯 - 嵌段 - 苯乙烯)sBs

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摘要

An elaborate survey of the chemical modification methods for endowing highly flammable SBS with increased fire resistant properties by means of chemical modification of the polymer backbone with phosphorus containing fire retardant species is presented. Optimal conditions for free radical addition of the Psingle bondH containing fire retardants to a double bonds of poly(butadiene) block of SBS were found, affording varied degree of the modification (0.2–21 mol%). Alternatively, a two-step procedure based on an epoxidation step followed by hydrolysis of the epoxides with phosphoric acid was developed resulting in 20 mol% of poly(butadiene) block modification. Based on TGA results, organophosporus-modified SBS was found to be amenable to charring – a property which correlated directly with the reduced flammability of the modified polymer observed in Cone Calorimetry tests. Furthermore, conceptually novel application of the H3PO4 modified SBS as a fire retardant additive for bitumen material, in combination with synergetic melamine species, offered 25% better self-extinguishing properties of such formulation already at a low loading level of the fire retardant components (3.5 wt.%).
机译:本文详细介绍了通过用含磷阻燃剂对聚合物主链进行化学改性,赋予高阻燃性的高易燃SBS化学改性方法。发现了将含阻燃剂的Psingle bondH自由基加到SBS的聚(丁二烯)嵌段双键上的最佳条件,提供了不同程度的修饰(0.2-21 mol%)。或者,开发了基于环氧化步骤的两步程序,然后用磷酸将环氧化物水解,得到20摩尔%的聚丁二烯嵌段改性。根据TGA结果,发现有机磷改性的SBS易于炭化-该性质与锥量热测试中观察到的改性聚合物可燃性降低直接相关。此外,将H3PO4改性的SBS作为沥青材料的阻燃添加剂与协同的三聚氰胺物种结合,在概念上的新颖应用在低含量的阻燃剂组分下已经提供了这种配方25%的更好的自熄性(3.5重量%)。

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