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Improvement of Electrical Conductivity in Carbon Fiber-Concrete Composites using Self Consolidating Technology

机译:利用自合并技术改善碳纤维混凝土复合材料的电导率

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This paper presents the investigation of the effectiveness of self consolidating technology to improve the dispersion of carbon fibers and, therefore, electrical conductivity in concrete. The reduced working viscosity and void filling abilities of self-consolidating concrete (SCC) will be explored to address the problem of fiber dispersion. The practical results of this exploration will be applied to an electrical self-heating concrete system which uses resistive heating to provide heat to concrete in freezing environments for deicing or snow melting purposes. Resistivity of plain concrete with normal fiber, plain concrete with surfactant treated fiber, and SCC with plain fiber was experimentally determined over sample temperatures ranging from +20°C - -20°C. In all samples, it was observed that as temperature decreases, resistivity increases exponentially. Resistivity was also compared across sample types and carbon fiber composition. It was found that different mixing techniques had significant effects on sample resistivity, though there remain problems to be solved in using long carbon fibers in SCC.
机译:本文介绍了自巩固技术改善碳纤维分散的有效性的研究,因此,混凝土中的导电性。将探讨自合并混凝土(SCC)的减少的工作粘度和空隙填充能力,以解决纤维分散的问题。该勘探的实际结果将应用于电热混凝土系统,该系统采用电阻加热,在冷冻环境中为混凝土提供热量,以进行除冰或雪熔化目的。用正常纤维的普通混凝土电阻率,用表面活性剂处理纤维的普通混凝土,以及具有平滑纤维的SCC通过试验从+ 20℃-20℃的样品温度测定。在所有样品中,观察到,随着温度降低,电阻率指数增加。在样品类型和碳纤维组合物中也比较电阻率。发现不同的混合技术对试样电阻率有显着影响,尽管在SCC中使用长碳纤维存在仍有问题。

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