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Fundamental Characterization of Asphalt Clay Nanocomposites

机译:沥青粘土纳米复合材料的基本表征

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This study aims at characterizing the nanostructure and microstructure and the mechanical behavior of asphalt clay nanocomposites. To this end, various atomic force microscopy (AFM) techniques (i.e., tapping mode imaging, force spectroscopy, and nanoindentation) and X-ray diffraction (XRD) experiments were conducted on asphalt binders modified with different contents of a nanoclay material. The AFM images and XRD results indicated that the nanoclay had an exfoliated structure within the nanocomposite. In addition, the AFM images showed better interaction between the nanoclay layers and the distinct asphalt domains containing the so-called "beelike" structures as compared to the flat asphalt matrix. The results of the force spectroscopy experiments indicated that the inclusion of the nanoclay material significantly enhanced the adhesive forces of asphalt materials, while it had a slightly adverse effect on the cohesive forces. Furthermore, the nanoclay material improved the stiffness and hardness of the asphalt binder measured in the indentation tests. However, this enhancement was affected by the temperature and nanoclay percentage. The results of this study suggest that the mechanical behavior of the asphalt clay nanocomposite can be explained by the formation of a rigid percolating network consisting of the exfoliated nanoclay layers and the fractal asphaltene aggregates in the asphalt binder. The onset of the rigidity percolation appears to be dependent on the effective radius of the asphaltene aggregates and the spacing between the nanoclay layers, a conclusion that may require further experimentation to validate.
机译:这项研究旨在表征沥青粘土纳米复合材料的纳米结构和微观结构以及力学行为。为此,对用不同含量的纳米粘土材料改性的沥青粘合剂进行了各种原子力显微镜(AFM)技术(即,敲击模式成像,力谱和纳米压痕)和X射线衍射(XRD)实验。 AFM图像和XRD结果表明纳米粘土在纳米复合材料中具有剥离的结构。另外,与平坦的沥青基质相比,AFM图像显示出纳米粘土层与包含所谓的“蜂状”结构的独特的沥青域之间更好的相互作用。力谱实验的结果表明,纳米粘土材料的加入显着增强了沥青材料的粘合力,而对内聚力有轻微的不利影响。此外,纳米粘土材料改善了压痕测试中测得的沥青粘合剂的刚度和硬度。但是,这种增强受到温度和纳米粘土百分比的影响。这项研究的结果表明,沥青粘土纳米复合材料的力学行为可以通过形成刚性的渗滤网络来解释,该渗滤网络由剥落的纳米粘土层和沥青粘结剂中的分形沥青质聚集体组成。刚度渗流的开始似乎取决于沥青质骨料的有效半径和纳米粘土层之间的间距,这一结论可能需要进一步的实验来验证。

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