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Interface Characterization of Epoxy Resin Nanocomposites: A Molecular Dynamics Approach

机译:环氧树脂纳米复合材料的界面表征:分子动力学方法

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In polymer nanocomposites, the interface region between the matrix and the fillers has been identified as a key interaction region that strongly determines the properties of the final material. Determining its structure is crucial from several points of view, from modeling (i.e., properties prediction) to materials science (i.e., understanding properties/structure relationships). In the presented paper, a method for characterizing the interface region of polymer nanocomposites is described using molecular dynamics (MD) simulations. In particular, the structure of the polymer within the interface region together with its dimension in terms of thickness were analyzed through density profiles. Epoxy resin nanocomposites based on diglycidyl ether of bisphenol A (DGEBA) were studied using this approach, and the interface region with triple walled carbon nanotubes (TWCNT) and carbon fibers (CF) was characterized. The effect of carbon nanotube diameter, type of hardener, and effect of epoxy resin cross-linking degree on interface thickness were analyzed using MD models. From this analysis no general rule on the effect of these parameters on the interface thickness could be established, since in some cases overlapping effects between the analyzed parameters were observed, and each specific case needs to be analyzed independently in detail. Results show that the diameter has an impact on interface thickness, but this effect is affected by the cross-linking degree of the epoxy resin. The type of hardener also has a certain influence on the interface thickness.
机译:在聚合物纳米复合材料中,基质和填料之间的界面区域已被确定为关键相互作用区域,该区域强烈决定了最终材料的性能。从建模(即,性能预测)到材料科学(即,了解性能/结构关系)的几种观点,确定其结构是至关重要的。在本文中,使用分子动力学(MD)模拟描述了表征聚合物纳米复合材料界面区域的方法。特别地,通过密度分布图分析了界面区域内的聚合物的结构及其厚度方面的尺寸。用这种方法研究了基于双酚A的二缩水甘油醚的环氧树脂纳米复合材料(DGEBA),并表征了三壁碳纳米管(TWCNT)和碳纤维(CF)的界面区域。使用MD模型分析了碳纳米管直径,硬化剂类型和环氧树脂交联度对界面厚度的影响。通过这种分析,无法建立关于这些参数对界面厚度的影响的一般规则,因为在某些情况下,观察到的分析参数之间存在重叠效应,并且每种具体情况都需要独立进行详细分析。结果表明,直径对界面厚度有影响,但是这种影响会受到环氧树脂的交联度的影响。硬化剂的类型也对界面厚度有一定影响。

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