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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Preparation, structure, and properties of solution-polymerized styrene-butadiene rubber with functionalized end-groups and its silica-filled composites
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Preparation, structure, and properties of solution-polymerized styrene-butadiene rubber with functionalized end-groups and its silica-filled composites

机译:具有端基官能化的溶液聚合丁苯橡胶及其二氧化硅填充复合材料的制备,结构和性能

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摘要

With anionic polymerization, the solution-polymerized styrene-butadiene rubber (SSBR) and solutionpolymerized styrene-butadiene rubber with alkoxysilane-functionalization at two ends of macromolecular chains (A-SSBR) were synthesized by dilithium as initiator. The occurrences of end-group functionalization and condensation reaction were confirmed, but also the molecular structure parameters and end-functionalized efficiency of A-SSBR grafted alkoxysilane groups onto the ends of its macromolecular chains were calculated through the characterizations. By this novel structural modification, there were chemical bondings rather than conventional physical adsorption between silica and rubber matrix. This novel technology was beneficial to not only immobilizing the free chain ends to decrease the amount of macromolecular chains' free terminals, but also chemically bonding the rubber chains on the surfaces of silica particles to enhance the filler-polymer interaction significantly. Furthermore, the covering layer of end-functionalized macromolecular chains around the silica particles was conducive to reducing the silica agglomeration and improving the silica dispersion. The structures, morphologies, and properties of SiO_2/SSBR and SiO_2/A-SSBR composites prepared by co-coagulation and mechanical blending, were investigated. The results showed that SiO_2/A-SSBR composites behaved better comprehensive performances including higher wet skid resistance and lower rolling resistance than SiO_2/SSBR composites. Consequently, A-SSBR was an ideal material for the green tire treads.
机译:通过阴离子聚合,以二锂为引发剂,合成了在高分子链的两端具有烷氧基硅烷官能化的溶液聚合的丁苯橡胶(SSBR)和溶液聚合的丁苯橡胶(A-SSBR)。证实了端基官能化和缩合反应的发生,同时通过表征计算了A-SSBR接枝的烷氧基硅烷基团在其大分子链的末端的分子结构参数和端基官能化效率。通过这种新颖的结构修饰,二氧化硅和橡胶基质之间存在化学键合而不是常规的物理吸附。这项新技术不仅有益于固定自由链末端以减少大分子链的自由末端数量,而且还有助于化学键合二氧化硅颗粒表面上的橡胶链,从而显着增强填料与聚合物之间的相互作用。此外,二氧化硅颗粒周围的末端官能化的大分子链的覆盖层有利于减少二氧化硅的团聚并改善二氧化硅的分散性。研究了通过共混和机械共混制备的SiO_2 / SSBR和SiO_2 / A-SSBR复合材料的结构,形貌和性能。结果表明,与SiO_2 / SSBR复合材料相比,SiO_2 / A-SSBR复合材料具有更好的综合性能,包括较高的耐湿滑性和较低的滚动阻力。因此,A-SSBR是生胎面的理想材料。

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