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Mechanical Characterization of Concrete Reinforced with Different Types of Carbon Nanotubes

机译:不同类型碳纳米管增强混凝土的力学性能

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The main purpose of this study is to characterize the mechanical properties of concrete reinforced with carbon nanotubes (CNT). For this, an extensive experimental program was carried out involving the production and characterization of concrete mixes with five types of CNT, in terms of flexural, splitting tensile and compressive strength, ultrasonic pulse velocity, elastic modulus and fracture toughness. The dispersion ability of CNT in a wide range of pH aqueous suspensions was evaluated prior to their incorporation in concrete. It was found that 0.05-0.1% of CNT were effective to improve all tested properties, increasing the compressive, flexural and splitting tensile strength, as well as the fracture energy and elastic modulus up to 23%, 18%, 27%, 42% and 15%, respectively. The CNT showed great potential to improve the crack resistance and the fracture toughness of concrete, especially in the pre-peak performance of concrete. In relative to other types of CNT, concrete containing higher dosages of lower aspect ratio CNT had the highest improvement of mechanical strength. This is explained by the lower structural damage and higher dispersion capacity of this type of CNT in high pH environments. Nevertheless, higher aspect ratio CNT showed better contribution for the fracture energy, due to their more efficient bridging effect.
机译:这项研究的主要目的是表征碳纳米管(CNT)增强的混凝土的机械性能。为此,进行了广泛的试验计划,涉及生产和表征具有五种类型的CNT的混凝土混合物,包括挠曲,劈裂拉伸和压缩强度,超声脉冲速度,弹性模量和断裂韧性。在将CNT掺入混凝土之前,先对CNT在各种pH的水悬浮液中的分散能力进行了评估。发现0.05-0.1%的CNT有效改善了所有测试的性能,提高了压缩,弯曲和劈裂拉伸强度,断裂能和弹性模量分别高达23%,18%,27%,42%和15%。碳纳米管具有提高混凝土的抗裂性和断裂韧性的巨大潜力,特别是在混凝土的峰前性能方面。相对于其他类型的CNT,包含较高剂量低纵横比CNT的混凝土的机械强度提高幅度最大。这可以通过在高pH环境中这种类型的CNT较低的结构破坏和较高的分散能力来解释。然而,高纵横比的CNT由于其更有效的桥接效应,显示出对断裂能的更好贡献。

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