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Crystalline Syndiotactic Polystyrene as Reinforcing Agent of cis-1,4-Polybutadiene Rubber

机译:结晶间规聚苯乙烯作为顺式1,4-聚丁二烯橡胶的增强剂

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摘要

Syndiotactic polystyrene (sPS), a thermoplastic polymer characterized by high crystallinity,good chemical resistance and high modulus, has been successfully tested as a reinforcing agent for cis-1,4-polybutadiene (PB) rubber. Blends of sPS and PB have been in situ synthesized using a multistep polymerization process catalyzed by monocyclopentadienyl titanium compounds activated with MAO. This procedure assures an intimate mixing of the components and homogeneous dispersion of the sPS particles having dimension from few hundreds of nanometers to micrometers. The analysis of the mechanical properties of the sPS-PB blends obtained using this process showed enhanced Young’s modulus, toughness,σbreak and ε break: these properties were found to be 1 order of magnitude higher than those of PB and comparable to those of PB charged with inorganic filler as carbon black or silica. A multiblock copolymer (sPSB) comprising segments of sPS and PB was successfully in situ synthesized with the sPS and PB homopolymers and found to be an active compatibilizer of these blends producing a novel semicrystalline phase at the interphase between the sPS particles and the PB matrix.
机译:间规聚苯乙烯(sPS)是一种具有高结晶度,良好的耐化学性和高模量的热塑性聚合物,已成功地用作顺式1,4-聚丁二烯(PB)橡胶的增强剂。 sPS和PB的共混物已通过多步聚合工艺原位合成,该工艺由MAO活化的单环戊二烯基钛化合物催化。该程序确保了组分的紧密混合和尺寸从几百纳米到微米的sPS颗粒的均匀分散。使用此方法获得的sPS-PB共混物的机械性能分析表明,其杨氏模量,韧性,σ断裂和ε断裂均得到增强:发现这些性能比PB的性能高1个数量级,并且与带电的PB相当与无机填料,如炭黑或二氧化硅。包含sPS和PB链段的多嵌段共聚物(sPSB)已成功地与sPS和PB均聚物原位合成,被发现是这些共混物的活性增容剂,可在sPS颗粒和PB基质之间的界面处产生新型半结晶相。

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