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Influence of Untreated and Novel Electron Beam Modified Surface Coated Silica Filler on Dynamic Mechanical Thermal Properties of Ethylene-Octene Copolymer

机译:未经处理的新型电子束改性表面涂层二氧化硅填料对乙烯-辛烯共聚物动态力学热性能的影响

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An extensive study on dynamic mechanical thermal analysis has been carried out to investigate the effect of filler-filler and polymer-filler interaction in cured ethylene-octene copolymer reinforced by unmodified and modified silica.The silica was treated with trimethylolpropane triacrylate (TMPTA) or triethoxyvinyl silane (TEVS),followed by electron beam irradiation at room temperature.Modification of the silica filler,especially via silanization,significantly reduces filler-filler networking,as evidenced from the strain sweep tests,and thus helps reduce the Payne effect,particularly at high filler loadings.The effect of modification is quantified with the help of a new mathematical model correlating the storage modulus and the volume fraction of the filler.The enhancement in the storage modulus at high temperatures and changes in the loss tangent at the glass transition temperature suggest definite improvement in the polymer-filler interaction in the case of these modified fillers.The results obtained from the master curves constructed based on the time-temperature-superposition principle further support the findings.
机译:进行了广泛的动态力学热分析研究,研究了填料-填料和聚合物-填料之间的相互作用对未改性和改性二氧化硅增强的固化乙烯-辛烯共聚物的影响。硅烷(TEVS),然后在室温下进行电子束辐照。二氧化硅填料的改性,特别是通过硅烷化,大大降低了填料与填料的网络,从应变扫描测试中可以看出,从而有助于降低Payne效应,尤其是在高温下在新的数学模型的帮助下量化了改性的效果,该数学模型将填料的储能模量与体积分数相关联。高温下储能模量的提高以及玻璃化转变温度下损耗角正切的变化表明在这些改性填料的情况下,聚合物与填料之间的相互作用得到了明显的改善。从基于时间-温度-叠加原理构造的主曲线获得的结果进一步支持了这一发现。

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