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Local Elastic Constants for Epoxy-Nanotube Composites from Molecular Dynamics Simulation

机译:分子动力学模拟研究环氧树脂纳米管复合材料的局部弹性常数

摘要

A method from molecular dynamics simulation is developed for determining local elastic constants of an epoxy/nanotube composite. The local values of C11, C33, K12, and K13 elastic constants are calculated for an epoxy/nanotube composite as a function of radial distance from the nanotube. While the results possess a significant amount of statistical uncertainty resulting from both the numerical analysis and the molecular fluctuations during the simulation, the following observations can be made. If the size of the region around the nanotube is increased from shells of 1 to 6 in thickness, then the scatter in the data reduces enough to observe trends. All the elastic constants determined are at a minimum 20 from the center of the nanotube. The C11, C33, and K12 follow similar trends as a function of radial distance from the nanotube. The K13 decreases greater distances from the nanotube and becomes negative which may be a symptom of the statistical averaging.
机译:从分子动力学模拟的方法被开发出来,以确定环氧/纳米管复合材料的局部弹性常数。计算环氧/纳米管复合材料的C11,C33,K12和K13弹性常数的局部值,作为到纳米管的径向距离的函数。尽管结果具有大量的统计不确定性,这些不确定性是由数值分析和模拟过程中的分子波动引起的,但可以进行以下观察。如果纳米管周围区域的大小从1个外壳的厚度增加到6个外壳,则数据中的散射将减少到足以观察趋势。确定的所有弹性常数都距纳米管的中心至少20。 C11,C33和K12遵循类似的趋势,即距纳米管的径向距离的函数。 K13与纳米管的距离减小,并且变为负数,这可能是统计平均值的征兆。

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