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Effect of Sulfur Variation on the Vulcanizate Structure of Silica-Filled Styrene-Butadiene Rubber Compounds with a Sulfide–Silane Coupling Agent

机译:用硫化物 - 硅烷偶联剂对二氧化硅填充苯乙烯 - 丁二烯橡胶化合物硫化结构的硫变化的影响

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摘要

The vulcanizate structure of filled compounds is affected by filler–rubber interactions (FRI) and the chemical crosslink density (CCD) of the matrix rubber. In particular, in filled compounds using a silica–silane system, FRIs due to silica–rubber coupling are a major influencing factor for the vulcanizate structure and physical properties. In this study, the effect of sulfur variation on the vulcanizate structure of silica-filled solution styrene–butadiene rubber compounds using a sulfide–silane coupling agent was studied. The vulcanizate structure according to sulfur variation was quantitatively analyzed using the swelling test and Flory–Rehner and Kraus equations. As the sulfur content increased, both FRI and the CCD increased, and it was confirmed that sulfur variation influenced the silica–rubber coupling efficiency through increased FRI. In addition, field emission scanning electron microscope images showed that increased FRI contributed to improvements in silica dispersion, abrasion resistance, and energy loss characteristics.
机译:填充化合物的硫化酸盐结构受填料 - 橡胶相互作用(FRI)和基质橡胶的化学交联密度(CCD)的影响。特别地,在使用二氧化硅硅烷体系的填充化合物中,由于二氧化硅 - 橡胶偶联的纤维是硫化酸盐结构和物理性质的主要影响因素。在该研究中,研究了使用硫化物 - 硅烷偶联剂的二氧化硅填充溶液苯乙烯 - 丁二烯橡胶化合物的硫化物变化对硫化溶液苯乙烯 - 丁二烯橡胶化合物的影响。使用溶胀试验和血液再葫芦和Kraus方程定量分析根据硫变异的硫化结构。随着硫含量的增加,Fri和CCD都增加,并且证实硫变异通过升高而影响二氧化硅 - 橡胶偶联效率。此外,场发射扫描电子显微镜图像显示,增加的FRI有助于改善二氧化硅分散体,耐磨性和能量损失特性。

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