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The effects of shape and mass fraction of nano-SiO2 on thermomechanical properties of nano-SiO2/DGEBA/MTHPA composites: A molecular dynamics simulation study

机译:纳米SiO2形状和质量分数对纳米SiO2 / DGEBA / MTHPA复合材料热机械性能的影响:分子动力学模拟研究

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摘要

The doping of nano-SiO2 filler is one of the main methods of improving the thermomechanical properties of epoxy resin (EP) composite insulating materials, and the characteristics of the filler is one of the important factors affecting the modification effect. In this paper, the effects of the shape and mass fraction of nano-SiO2 particles on the microstructure and thermomechanical properties of EP composites were studied by molecular dynamics simulation. The results show that the bonding energy (EBinding) between the spherical SiO2 filler and matrix is the largest, and the fraction free volume (FFV) and the mean square displacement (MSD) of the composite model are the lowest. With the increase of the filler mass fraction, the EBinding between the filler and matrix changed little, whereas both FFV and MSD showed a monotonous downward trend. The introduction of nano-SiO2 fillers can significantly improve the thermomechanical properties of the composites. The shape of the filler has little effect on the glass transition temperature (Tg), coefficient of thermal expansion (CTE), and mechanical properties of the composites. Increasing the mass fraction of the filler can obviously improve the modification effect. When the mass fraction of SiO2 is 15 wt. %, the Tg of the material increased by about 35 K, the glass state CTE decreased by about 35%, and the Young’s modulus and shear modulus increased by 24.56% and 32.45%, respectively.
机译:纳米二氧化硅填料的掺杂是改善环氧树脂(EP)复合绝缘材料的热机械性能的主要方法之一,并且所述填料的特征是影响改性效果的重要因素之一。在本文中,通过分子动力学模拟研究了EP复合材料的微观结构和热机械性能的纳米SiO 2颗粒的形状和质量分数的影响。结果表明,球形二氧化硅填料和基质之间的粘结能量(EBinding)是最大的,并且分数自由体积(FFV)和复合模型的均方位移(MSD)是最低的。与填料的质量分数的增加,填料和基质之间的EBinding变化不大,而FFV和MSD两者呈单调下降的趋势。引入纳米SiO2填料可以显著提高复合材料的热机械性能。填料的形状对玻璃化转变温度(Tg)的热膨胀系数(CTE)的,系数几乎没有影响,和复合材料的机械性能。增加填充物的质量分数可明显改善的修饰效果。当SiO 2的质量分数为15重量%时,材料的Tg增加了约35 K,玻璃状态CTE降低约35%,和杨氏模量和剪切模量分别增加24.56%和32.45%。

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