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Optimization of mixing conditions for silica-reinforced natural rubber tire tread compounds

机译:二氧化硅增强天然橡胶轮胎胎面胶混合条件的优化

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摘要

The dump temperature and mixing interval between rubber, silica, and silane coupling agent for silica-filled natural rubber (NR) tire tread compounds using bis-triethoxysilylpropyl tetrasulfide (TESPT) as silane were optimized. The dump temperature turns out to be the key parameter governing the properties of the silica-filled NR compounds. The increase in viscosity of the compounds by changing the dump temperature from 100 to 150 °C indicates that inevitably some cross-linking of NR occurs by sulfur contained in TESPT, simultaneous with the silanization reaction between silica and silane. However, the viscosity decreases again when dump temperatures above 150 °C are applied, indicating a dominant occurrence of degradation of the NR molecules. The results are in good agreement with bound rubber contents. The overall properties indicate that a dump temperature in the range of 135–150 °C and a silica–silane–rubber mixing interval of 10 min are the most appropriate mixing conditions for silica-filled NR compounds with TESPT as coupling agent.
机译:优化了使用双三乙氧基甲硅烷基丙基四硫化物(TESPT)作为硅烷的,用于填充二氧化硅的天然橡胶(NR)轮胎胎面胶的橡胶,二氧化硅和硅烷偶联剂之间的倾卸温度和混合间隔。最终,转储温度是控制填充二氧化硅的NR化合物性能的关键参数。通过将倾卸温度从100改变为150来增加化合物的粘度,这表明TESPT中所含的硫不可避免地会引起NR的某些交联,同时发生了二氧化硅和硅烷之间的硅烷化反应。但是,当施加高于150°C的倾倒温度时,粘度再次降低,这表明NR分子降解的主要发生原因。结果与结合的橡胶含量非常吻合。总体性能表明,对于以TESPT为偶联剂的二氧化硅填充的NR化合物,转储温度为135–150°C,二氧化硅-硅烷-橡胶的混合间隔为10分钟是最合适的混合条件。

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