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Using Epoxidized Solution Polymerized Styrene-Butadiene Rubbers (ESSBRs) as Coupling Agents to Modify Silica without Volatile Organic Compounds

机译:使用环氧化溶液聚合的丁苯橡胶(ESSBR)作为偶联剂来改性二氧化硅而没有挥发性有机化合物

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摘要

Rubber used in tire is usually strengthened by nanofiller, and the most popular nanofiller for tire tread rubber is nano silica, which can not only strengthen rubber but also lower the tire rolling resistance to reduce fuel consumption. However, silica particles are difficult to disperse in the rubber matrix because of the abundant silicon hydroxyl on their surface. Silane coupling agents are always used to modify silica and improve their dispersion, but a large number of volatile organic compounds (VOCs) are emitted during the manufacturing of the nanosilica/rubber composites because of the condensation reaction between silane coupling agents and silicon hydroxyl on the surface of silica. Those VOCs will do great harm to the environment and the workers’ health. In this work, epoxidized solution polymerized styrene-butadiene rubbers (ESSBR) with different epoxy degrees were prepared and used as macromolecular coupling agents aimed at fully eliminating VOCs. Fourier transform infrared (FTIR) spectroscopy and nuclear magnetic resonance (NMR) analyses verified that the different ESSBRs were successfully synthesized from solution polymerized styrene-butadiene rubbers (SSBR). With the help of the reaction between epoxy groups and silicon hydroxyl without any VOC emission, nanosilica can be well dispersed in the rubber matrix when SSBR partially replaced by ESSBR which was proved by Payne effect and TEM analysis. Dynamic and static mechanical testing demonstrated that silica/ESSBR/SSBR/BR nanocomposites have better performance and no VOC emission compared with Bis-(γ-triethoxysilylpropyl)-disulfide (TESPD) modified silica/rubber nanocomposites. ESSBR is very hopeful to replace traditional coupling agent TESPD to get high properties silica/rubber nanocomposites with no VOCs emission.
机译:轮胎中使用的橡胶通常通过纳米填料来增强,而用于轮胎胎面胶的最受欢迎的纳米填料是纳米二氧化硅,它不仅可以增强橡胶强度,而且可以降低轮胎的滚动阻力以降低燃料消耗。然而,由于二氧化硅颗粒在其表面上存在大量的硅羟基,因此其难以分散在橡胶基质中。硅烷偶联剂一直用于改性二氧化硅并改善其分散性,但由于硅烷偶联剂与硅羟基上的硅羟基之间发生缩合反应,因此在纳米二氧化硅/橡胶复合材料的制造过程中会散发大量挥发性有机化合物(VOC)。二氧化硅表面。这些挥发性有机化合物会严重危害环境和工人的健康。在这项工作中,制备了具有不同环氧度的环氧化溶液聚合的丁苯橡胶(ESSBR),并将其用作旨在完全消除VOC的大分子偶联剂。傅里叶变换红外光谱(FTIR)和核磁共振(NMR)分析证明,不同的ESSBR是由溶液聚合的丁苯橡胶(SSBR)成功合成的。通过环氧基和硅羟基之间的反应而没有任何VOC排放,当SSBR部分被ESSBR取代时,纳米二氧化硅可以很好地分散在橡胶基质中,这通过佩恩效应和TEM分析证明。动态和静态力学测试表明,与Bis-(γ-三乙氧基甲硅烷基丙基)-二硫化物(TESPD)改性的二氧化硅/橡胶纳米复合材料相比,二氧化硅/ ESSBR / SSBR / BR纳米复合材料具有更好的性能,并且没有VOC排放。 ESSBR非常希望取代传统的偶联剂TESPD,从而获得无VOC排放的高性能二氧化硅/橡胶纳米复合材料。

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