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Filler-filler interaction and filler-polymer interaction in carbon black and silica filled Exxpro (TM) polymer

机译:炭黑和二氧化硅填充的Exxpro(TM)聚合物中的填料-填料相互作用和填料-聚合物相互作用

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Due to the presence of reactive benzylic bromide, Exxpro has much better interaction with silica in comparison with polybutadiene as demonstrated by the high bound rubber level. The better silica/Exxpro interaction is further substantiated by the low degree of filler network formation in comparison to that observed for silica filled polybutadiene as demonstrated by the much smaller deviation of low strain shear modulus from the Guth-Gold relationship for the silica filled Exxpro. Silane treatement of silica reduces filler network formation in polybutadiene but has only slight effect on silica filled Exxpro indicating that even without silane treatment silica already disperse well in Exxpro due to high degree of filler/polymer interaction. This result in silica filled Exxpro compound exhibiting better processability (lower shear viscosity) as well as dynamic performances for tire applications (higher tan delta at-20 and 0 degreesC, lower tan delta at 60degreesC). We speculate that nucleophilic substitution reaction takes place between benzylic bromide and surface hydroxide group of silica. [References: 20]
机译:由于存在反应性苄基溴,Exxpro与聚丁二烯相比,与二氧化硅的相互作用要好得多,这是由高结合橡胶含量证明的。与二氧化硅填充的聚丁二烯观察到的填充剂网络形成程度相比,更好的二氧化硅/ Exxpro相互作用进一步证实了这一点,这是由于低应变剪切模量与二氧化硅填充的Exxpro的Guth-Gold关系的偏差较小而证明的。二氧化硅的硅烷处理减少了聚丁二烯中填料网络的形成,但对二氧化硅填充的Exxpro仅有很小的影响,表明即使没有硅烷处理,由于填料/聚合物之间的高度相互作用,二氧化硅也已经很好地分散在Exxpro中。这导致二氧化硅填充的Exxpro化合物显示出更好的加工性能(较低的剪切粘度)以及轮胎应用的动态性能(在20和0摄氏度下较高的tanδ,在60摄氏度下较低的tanδ)。我们推测亲核取代反应发生在苄基溴和二氧化硅的表面氢氧化物基团之间。 [参考:20]

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