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Effect of Adding Carbon Nanotubes on Corrosion Rates and Steel-Concrete Bond

机译:添加碳纳米管对腐蚀速率和钢混凝土键合的影响

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摘要

This paper presents a continuation of the evaluation of utilizing Nano Carbon Tubes (CNTs) in reinforced concrete (CNT-CRETE). The compressive, tensile and bond strengths of the samples with and without CNTs were investigated. Scanning Electron Microscope (SME) was utilized to study the microstructure of the prepared samples. In addition, the corrosion resistance of CNT-CRETE, was measured and compared to traditional concrete. Four mixes were prepared, with 0.01%, 0.02%, and 0.03%, CNTs by weight of cement, along with a control mix without CNTs. The results of the experimental work showed that adding CNTs led to an increase in the compressive, tensile and bond strengths of specimens compared to those of the control specimen. SEM examination for control and CNTs specimens showed that CNTs specimen were well structured compared with the control specimen and this affirms that CNTs act as bridges across micro cracks, which explains the improvement in mechanical properties. The diameter of steel bars played a significant role in failure mechanism for pull-out testing and corrosion resistance. In general, adding CNTs to the concrete mix increased the rate of corrosion for steel bars within the low risk limits. Benefits from using CNTs were limited to moderate. Mineral/chemical admixtures or fibers provide better improvements in the mechanical properties of concrete without the problems associated with dispersing CNTs and the health hazard of handling a Nano material.
机译:本文提出了在钢筋混凝土(CNT-CRETE)中使用纳米碳管(CNT)的评估的延续。研究了具有和不具有CNT的样品的抗压强度,抗张强度和粘结强度。利用扫描电子显微镜(SME)研究所制备样品的微观结构。此外,测量了CNT-CRETE的耐腐蚀性并将其与传统混凝土进行了比较。制备了四种混合物,其中含有水泥重量的0.01%,0.02%和0.03%的CNT,以及不含CNT的对照混合物。实验工作的结果表明,与对照样品相比,添加CNT可以提高样品的抗压,拉伸和粘结强度。对照样品和CNTs样品的SEM检查显示,与对照样品相比,CNTs样品结构良好,这表明CNTs充当了微裂纹的桥梁,这说明了机械性能的提高。钢筋的直径在拉拔测试的破坏机理和耐腐蚀性中起着重要作用。通常,在混凝土混合物中添加CNT可在低风险范围内提高钢筋的腐蚀速率。使用碳纳米管的好处仅限于中等。矿物/化学外加剂或纤维可更好地改善混凝土的机械性能,而不会出现分散CNT和处理纳米材料对健康造成危害的问题。

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