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DEVELOPMENT OF HIGH PERFORMANCE RUBBER COMPOSITES FROM ALKOXIDE-BASED SILICA AND SOLUTION STYRENE BUTADIENE RUBBER

机译:烷氧基硅胶和溶液苯乙烯丁二烯橡胶高效橡胶复合材料的研制

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The solution SBR and silica-based composites are prepared by hydrolysis of tetraethylorthosilicate in the presence of an organic solution of SBR and n-butylamine as catalyst. Further addition of bis[3-(triethoxysilyl)propyl]tetrasulfide, a silane coupling agent, improves the performance and properties of the composites. All the results are compared with commercial precipitated silica at similar loading conditions. The generated silica particles from this alkoxide route resulted in lower Mooney viscosity of the compound and showed less filler flocculation compared with standard commercial precipitated silica in reference compounds. A detailed dynamic mechanical study also indicated that alkoxide silica in model tire compounds could offer a lower rolling resistance and a higher wet skid resistance compared to the reference. Other properties such as heat build-up, rebound resilience, and hysteresis loss were found to be very promising for alkoxide silica composites, too. The silica particles (aggregated) developed by the alkoxide method were relatively large (similar to 150-200 nm) compared with the primary particles of precipitated commercial silica. The synthesis of sol gel silica particles in presence of the polymer allowed for the trapping of some polymer molecules inside the filler aggregates and therefore offers exceptional mechanical reinforcement of the rubber.
机译:通过在SBR和正丁胺作为催化剂的有机溶液存在下水解四乙酯硅酸盐制备溶液SBR和二氧化硅基复合材料。进一步加入双[3-(三乙氧基甲硅烷基)丙基]四硫化物,硅烷偶联剂,提高了复合材料的性能和性质。将所有结果与类似负载条件的商业沉淀二氧化硅进行比较。来自该醇盐路由的产生的二氧化硅颗粒导致化合物的低门尼粘度,与参考化合物中的标准商业沉淀二氧化硅相比显示较少的填充絮凝。详细的动态机械研究还表明,与参考文献相比,模型轮胎化合物中的醇盐二氧化硅可以提供较低的滚动阻力和更高的湿滑阻力。发现其他性质如热积聚,反弹弹性和滞后损失也非常有希望对醇盐二氧化硅复合材料非常有前途。与沉淀的商业二氧化硅的初级颗粒相比,由醇盐法开发的二氧化硅颗粒(聚集体)相对较大(类似于150-200nm)。在聚合物存在下溶胶凝胶二氧化硅颗粒的合成允许捕获填料聚集体内的一些聚合物分子,因此提供橡胶的卓越机械加固。

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