首页> 外文会议>Fall Technical Meeting of the Rubber Division, American Chemical Society >Flocculation Kinetics and Filler-Rubber Interaction in Silica-Reinforced NR Compounds
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Flocculation Kinetics and Filler-Rubber Interaction in Silica-Reinforced NR Compounds

机译:絮凝动力学和二氧化硅增强NR化合物中的填料 - 橡胶相互作用

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The dispersion stability of silica aggregates in the rubber matrix is one of the concerns for silica-filled compounds. Silica aggregates tend to flocculate due to their poor compatibility with the rubbers and consequent strong tendency for self-association. The flocculation process can occur during compound storage as well as at the onset of vulcanization. This present work studies the kinetics of the flocculation process in silica-reinforced natural rubber (NR) compounds by following the changes of the storage modulus during thermal annealing under conditions applied for vulcanization. The results demonstrate that silica flocculation can be effectively suppressed by increasing compound dump temperature and amount of silane, as these result in a better degree of dispersion, higher degrees of hydrophobation and filler-rubber interaction. The compounds containing highly dispersible silicas exhibit greater filler-rubber interaction, but their flocculation processes develop faster when compared to the compounds filled with conventional silicas. Epoxidation of NR clearly influences the filler-rubber interaction, but shows no clear evidence of a change of flocculation rate.
机译:橡胶基质中二氧化硅聚集体的分散稳定性是二氧化硅填充化合物的缺点之一。二氧化硅聚集体倾向于由于它们与橡胶的差和随之而来的自我关联的强烈趋势来絮凝。絮凝过程可以在化合物存储期间以及硫化的开始期间发生。本研究通过以下在硫化条件下,通过以下储存模量的变化来研究二氧化硅增强天然橡胶(NR)化合物的絮凝过程的动力学。结果表明,通过增加复合倾卸温度和硅烷量,可以有效地抑制二氧化硅絮凝,因为这些结果较好程度的分散体,较高的疏水性和填料 - 橡胶相互作用。含有高可分散的二氧化硅的化合物具有更大的填充 - 橡胶相互作用,但与填充有常规二氧化硅的化合物相比,它们的絮凝过程产生更快。 NR的环氧化显然会影响填充橡胶相互作用,但没有显示出絮凝率变化的明确证据。

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