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Production, Characterization, and Mechanical Behavior of Cementitious Materials Incorporating Carbon Nanofibers

机译:掺有碳纳米纤维的胶凝材料的生产,表征和力学行为

摘要

Carbon nanotubes (CNTs) and carbon nanofirbers (CNFs) have excellent properties (mechanical, electrical, magnetic, etc.), which can make them effective nanoreinforcements for improving the properties of materials. The incorporation of CNT/Fs in a wide variety of materials has been researched extensively in the past decade. However, the past study on the reinforcement of cementitious materials with these nanofilaments has been limited. The findings from those studies indicate that CNT/Fs did not significantly improve the mechanical properties of cementitious materials. Two major parameters influence the effectiveness of any discrete inclusion in composite material: The dispersion quality of the inclusions and the interfacial bond between the inclusions and matrix. The main focus of this dissertation is on the dispersion factor, and consists of three main tasks: First a novel thermodynamic-based method for dispersion quantification was developed. Second, a new method, incorporating the utilization of silica fume, was devised to improve and stabilize the dispersion of CNFs in cement paste. And third, the dispersion quantification method and mechanical testing were employed to measure, compare, and correlate the dispersion and mechanical properties of CNF-incorporated cement paste produced with the conventional and new methods. Finally, the main benefits, including the increase in strength and resistance to shrinkage cracking, obtained from the utilization of CNFs in cement paste will be presented. The investigations and the corresponding results show that the novel dispersion quantification method can be implemented easily to perform a wide variety of tasks ranging from measuring dispersion of nanofilaments in composites using their optical/SEM micrographs as input, to measuring the effect of cement particle/clump size on the dispersion of nano inclusions in cement paste. It was found that cement particles do not affect the dispersion of nano inclusions in cement paste significantly while the dispersion of nano inclusions can notably degenerates if the cement particles are agglomerated. The novel dispersion quantification method shows that, the dispersion of CNFs in cement paste significantly improves by utilizing silica fume. However, it was found that the dispersion of silica fume particles is an important parameter and poorly dispersed silica fume cannot enhance the overall dispersion of nano inclusions in cementitious materials. Finally, the mechanical testing and experimentations showed that CNFs, in absence of moist curing, even if poorly dispersed, can provide important benefits in terms of strength and crack resistance.
机译:碳纳米管(CNT)和碳纳米纤维(CNF)具有出色的性能(机械,电气,磁性等),可以使其成为有效的纳米增强材料,以改善材料的性能。在过去的十年中,已经广泛研究了将CNT / Fs掺入多种材料中。但是,过去用这些纳米丝增强水泥材料的研究受到限制。这些研究的结果表明,CNT / Fs并未显着改善胶凝材料的机械性能。影响复合材料中任何离散夹杂物有效性的两个主要参数:夹杂物的分散质量以及夹杂物与基体之间的界面键。本文的主要研究重点是色散因子,主要包括三个方面的任务:首先,提出了一种基于热力学的色散定量方法。其次,设计了一种利用硅粉的新方法,以改善和稳定CNF在水泥浆中的分散。第三,采用分散定量方法和力学性能测试,比较,比较和关联了用传统方法和新方法生产的含CNF的水泥浆的分散性和力学性能。最后,将介绍在水泥浆中利用CNF所获得的主要好处,包括提高强度和抗收缩龟裂性。研究和相应的结果表明,这种新型的分散体定量方法可以轻松实施,以执行多种任务,从使用光学/ SEM显微照片作为输入测量复合物中纳米丝的分散性,到测量水泥颗粒/团块的效果。水泥浆中纳米夹杂物的分散大小。发现水泥颗粒不会显着影响纳米夹杂物在水泥浆中的分散,而如果水泥颗粒聚结,则纳米夹杂物的分散会显着退化。新型的分散定量方法表明,利用硅粉可以显着改善CNF在水泥浆中的分散。然而,已发现硅粉颗粒的分散是重要的参数,分散不佳的硅粉不能增强胶结材料中纳米夹杂物的总体分散性。最后,机械测试和实验表明,即使没有很好的分散,CNFs仍能保持良好的强度和抗裂性,即使没有湿固化也能提供重要的好处。

著录项

  • 作者

    Yazdanbakhsh Ardavan;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en_US
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