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Effect of Silane Coupling Agent on Filler and Rubber Interaction of Silica Reinforced Solution Styrene Butadiene Rubber

机译:硅烷偶联剂对二氧化硅增强溶液苯乙烯丁二烯橡胶填充剂和橡胶相互作用的影响

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In the present article, the influence of bis-(triethoxysi-Iylpropyl)-tetrasulfide (TESPT) content on the visco-elastic behavior of silica filled Solution Styrene Butadiene Rubber (SSBR) was carefully studied in terms of loss tangent spectrum and bound rubber content. The results showed that both relative tan δ area and tan δ_(max) of filled SSBR with TESPT were detected to present maximum value at 2.5 wt% TESPT(with respect to silica loading). Larger tan 3 area and tan δ_(max) meant more chains participating in the glass transition in the present system, which is reflected by the variation of effective filler volume with TESPT content. The interaction between filler and rubber can be improved remarkably when a little amount of TESPT up to 2.5 wt% was incorporated, whereas as the TESPT content exceeds 2.5 wt% the filler-rubber interaction was weakened, which was also proven by TEM images and Payne effect. The bound rubber content of this SSBR system studied presents the same tendency as tan δ_(max). Once TESPT linked with rubber chains, the condensation reaction between silica and SCA is somewhat hindered because of the difficulty in diffusion of large molecules after SCA is chemically bonded with rubber molecules. The network structure of the filled SSBR was analyzed by applying elasticity model. The consecutive increase of crosslink density compensated the reduction of topological tube-like constrains and thus tensile strength continued to ascend with TESPT content, but sacrificed the ultimate strain.
机译:在本文中,从损耗角正切谱图和结合橡胶含量的角度仔细研究了双(三乙氧基硅烷基丙基)-四硫化物(TESPT)含量对二氧化硅填充的溶液丁苯橡胶(SSBR)的粘弹行为的影响。 。结果表明,检测到填充有TESPT的SSBR的相对tanδ面积和tanδ_(max)在TESPT为2.5 wt%时呈现最大值(相对于二氧化硅载量)。 tan 3更大的面积和tanδ_(max)意味着在本系统中更多的链参与玻璃化转变,这可通过有效填料体积随TESPT含量的变化来反映。当少量的TESPT含量不超过2.5 wt%时,填料与橡胶之间的相互作用可以得到显着改善,而当TESPT含量超过2.5 wt%时,填料与橡胶的相互作用减弱,这也得到TEM图像和Payne的证实。影响。研究的该SSBR体系的结合橡胶含量与tanδ_(max)具有相同的趋势。一旦TESPT与橡胶链连接,由于SCA与橡胶分子化学键合后大分子难以扩散,因此二氧化硅和SCA之间的缩合反应会受到一定程度的阻碍。应用弹性模型分析了填充SSBR的网络结构。交联密度的连续增加补偿了拓扑管状约束的减少,因此拉伸强度随着TESPT含量的增加而不断提高,但牺牲了最终应变。

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