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Effects of shell thickness of polystyrene-encapsulated Mg(OH)2 on flammability and rheological properties of high-impact polystyrene composites

机译:聚苯乙烯包裹的Mg(OH)2的壳厚度对高抗冲聚苯乙烯复合材料的可燃性和流变性能的影响

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Polystyrene (PS)-encapsulated magnesium hydroxide (Mg(OH)2) particles with various shell thicknesses were successfully prepared using a method of in situ polymerization of styrene in a high-speed mixer. High-impact polystyrene (HIPS)/Mg(OH)2 composites were prepared by melt blending. They were characterized using cone calorimetry, horizontal burning rate, rheology and scanning electron microscopy in order to investigate the effects of the shell thickness of the PS-encapsulated Mg(OH)2 on the flame retardancy and rheological properties of the resulting composites. Rheological tests showed that the composites containing encapsulated Mg(OH)2 had a stronger solid-like response at low frequency than that of the sample containing untreated Mg(OH)2. However, with PS/Mg(OH)2 ratio increasing up to 6.0 wt% and above, the dynamic viscosity, loss modulus and storage modulus of HIPS/Mg(OH)2 composites decreased. The optimum PS/Mg(OH)2 ratio, 4.5 wt%, was determined using a new 'crossover point' rheological method. The combustion tests showed that compared to the composites containing untreated Mg(OH)2, the fire retardancy of the composites containing PS-encapsulated Mg(OH)2 was improved significantly. Also, there appeared to be a critical PS/Mg(OH)2 ratio, namely 6.0 wt%, for optimum flame-retarding properties. However with the continuous increase of PS/Mg(OH)2 ratio, the fire resistance of the composites declined somewhat, which can be explained by acceleration of combustion of the composites due to the introduction of free PS chains of low molecular weight on the surface of Mg(OH)2.
机译:使用高速混合器中苯乙烯的原位聚合方法,成功制备了具有各种壳厚度的聚苯乙烯(PS)包裹的氢氧化镁(Mg(OH)2)颗粒。通过熔融共混制备高抗冲聚苯乙烯(HIPS)/ Mg(OH)2复合材料。使用锥形量热法,水平燃烧速率,流变学和扫描电子显微镜对它们进行了表征,以研究PS封装的Mg(OH)2的壳厚度对所得复合材料的阻燃性和流变性的影响。流变测试表明,与未处理的Mg(OH)2样品相比,含有封装的Mg(OH)2的复合材料在低频下具有更强的固相响应。然而,随着PS / Mg(OH)2的比例增加到6.0重量%以上,HIPS / Mg(OH)2复合材料的动态粘度,损耗模量和储能模量降低。使用新的“交叉点”流变方法确定了最佳PS / Mg(OH)2比例为4.5 wt%。燃烧测试表明,与包含未处理的Mg(OH)2的复合材料相比,包含PS封装的Mg(OH)2的复合材料的阻燃性得到了显着改善。同样,对于最佳的阻燃性能,似乎存在临界的PS / Mg(OH)2比,即6.0重量%。然而,随着PS / Mg(OH)2比率的不断增加,复合材料的耐火性有所下降,这可以通过在表面引入低分子量的游离PS链来加速复合材料的燃烧来解释。的Mg(OH)2。

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