首页> 外文期刊>International journal of nanomechanics science and technology >REINFORCEMENT EFFECTS IN SBR RUBBER/MODIFIED SHUNGITE NANOCOMPOSITES
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REINFORCEMENT EFFECTS IN SBR RUBBER/MODIFIED SHUNGITE NANOCOMPOSITES

机译:SBR橡胶/改性的褐铁矿纳米复合材料的增强效果

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摘要

The method of obtaining high-strength elastomeric composites based on the matrix of a copolymer of styrene butadiene (E-SBR, 30% styrene), filled with particles of mineral shungite, whose main components are carbon and silica, is proposed. As a result of the researches, it has been established that the most efficient method of regulating the properties of the considered composites is the use of nanoscale particles of shungite as a filler in combination with the surface modifier of 3-thiocyanatopropyl-triethoxysilane, providing a high degree of dispersion of the filler in the volume of the composite matrix. Based on FE modeling, it is shown that the effect of improving the mechanical properties of the composite is associated with the increase in the relative volume content of interphase zones of bound rubber with decreasing particle size.
机译:提出了一种基于苯乙烯丁二烯共聚物(E-SBR,30%苯乙烯)的基质填充高强度弹性体复合材料的方法,该共聚物中填充了以碳和二氧化硅为主要成分的矿物钨矿。研究的结果表明,调节所考虑的复合材料性能的最有效方法是使用纳米级的菱铁矿颗粒作为填料与3-硫氰酸根合丙基-三乙氧基硅烷的表面改性剂结合使用,从而提供填料在复合基质体积中的高度分散。基于有限元模型,表明改善复合材料机械性能的效果与随着粒径减小结合橡胶相间区域相对体积含量的增加有关。

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