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Effects of Different Grafting Density of Amino Silane Coupling Agents on Thermomechanical Properties of Cross-Linked Epoxy Resin

机译:不同移植密度氨基硅烷偶联剂对交联环氧树脂热机械性能的影响

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摘要

In order to study the influences of amino silane coupling agents with different grafting densities on the surface of nano silica on the thermomechanical properties of cross-linked epoxy resin, the molecular dynamics method was used to establish an amorphous model and calculate the mechanical properties, glass transition temperature, mean square displacement, hydrogen bond, binding energy, and radial distribution function of the composite models in this paper. The results are as follows: with the increase of the grafting density of an amino silane coupling agent on the surface of nano silica particles, the mechanical properties and glass transition temperature of epoxy resin showed a trend of increasing first and then decreasing. When the grafting ratio was 9%, the mechanical properties and glass transition temperature of the epoxy resin were the largest, and the glass transition temperature was increased by 41 K. At the same time, it was found that the higher the grafting ratio, the lower the chain movement ability, but the higher the binding energy. Besides, the binding energy between the nanoparticles of the grafted silane coupling agent and epoxy resin was negatively correlated with the temperature. By analyzing the hydrogen bond and radial distribution function, the results showed that the improvement of the grafted silane coupling agent on the surface of the nanoparticle to the thermomechanical properties of the epoxy resin was related to the OH···O and NH···O hydrogen bonds. The analysis results indicated that the proper grafting density should be selected based on the established model size, selected nanoparticle diameter, and epoxy resin materials in order to better improve the thermomechanical properties of the epoxy resin.
机译:为了研究在交联环氧树脂的热机械性质对纳米二氧化硅表面的不同接枝密度对氨基硅烷偶联剂对交联环氧树脂的热机械性能的影响,使用分子动力学方法来建立无定形模型并计算机械性能,玻璃本文中的复合模型的转变温度,均方位移,氢键,粘合能力和径向分布功能。结果如下:随着纳米二氧化硅颗粒表面上的氨基硅烷偶联剂的移植密度的增加,环氧树脂的机械性能和玻璃化转变温度显示出首先增加,然后减少趋势。当接枝比为9%时,环氧树脂的机械性能和玻璃化转变温度最大,玻璃化转变温度升高41k。同时发现嫁接比率越高,降低链球运动能力,但结合能量越高。此外,接枝硅烷偶联剂和环氧树脂的纳米颗粒之间的结合能量与温度呈负相关。通过分析氢键和径向分布函数,结果表明,将接枝硅烷偶联剂对环氧树脂的热机械性能的接枝硅烷偶联剂的改善与哦···o和nh ...有关。 o氢键。分析结果表明,应基于所建立的模型尺寸,选定的纳米颗粒直径和环氧树脂材料来选择适当的移植密度,以便更好地改善环氧树脂的热机械性能。

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