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In situ silica reinforcement of natural rubber by sol–gel process via rubber solution

机译:通过橡胶溶液的溶胶-凝胶法原位二氧化硅增强天然橡胶

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The in situ silica filling of natural rubber (NR) was carried out via the sol–gel reaction using tetraethoxysilane. The effect of the in situ silica content on the curing, mechanical, dynamic mechanical and thermal properties of the composite vulcanizate materials was investigated in comparison to that with a commercial silica preparation. The Mooney viscosity of the in situ silica filled NR vulcanizates showed a lower value compared with that of the commercial filled ones. The mechanical properties of the in situ silica composite materials, i.e., the moduli and compression set, were improved compared with the commercial silica filler NR vulcanizates. The reinforcement effect of in situ silica did not accord with the Smallwood equation but in contrast was in good agreement with the Guth and Gold equation using a shape factor (f) which itself was in close agreement with estimates derived from independent TEM analysis. The pseudo-network structure of the in situ silica was low, which resulted in a lower storage modulus at 25 °C. By filling NR with in situ silica, the thermal properties of the composite vulcanized material were also improved, and well dispersed in situ silica particles within the NR matrix were also observed.
机译:天然橡胶(NR)的原位二氧化硅填充是通过使用四乙氧基硅烷的溶胶-凝胶反应进行的。与市售二氧化硅制剂相比,研究了原位二氧化硅含量对复合硫化橡胶材料的固化,机械,动态机械和热性能的影响。原位填充二氧化硅的NR硫化橡胶的门尼粘度显示出比市售填充的门尼粘度更低的值。与市售二氧化硅填料NR硫化橡胶相比,原位二氧化硅复合材料的机械性能,即模量和压缩永久变形得到改善。原位二氧化硅的增强效果不符合Smallwood方程,但与形状因子(f)的Guth和Gold方程却非常吻合,后者本身与独立TEM分析得出的估计值非常吻合。原位二氧化硅的伪网络结构较低,导致在25°C下较低的储能模量。通过用原位二氧化硅填充NR,还改善了复合硫化材料的热性能,并且还观察到原位二氧化硅颗粒充分分散在NR基质中。

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