Exploration of the Effect of Carbon Fiber Ratio and Dimensions on Electrical Conductivity in Mortars

Hacer Uzunalioglu, S. Yazıcıoğlu, Adem Ahiskali, H. Çağlar
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Abstract

This study was carried out on Class F and C fly ash reinforced, carbon fiber added mortar samples as a substitute for PÇ42,5 cement. Carbon fiber was added in different sizes at rates of 0.5%, 1%, and 3% in order to investigate the effects of the size and ratio of carbon fiber on electrical conductivity. 33 different series were formed such as obtained Class F; without fly ash 10%, 20% and Class C; without fly ash, 10%, 20% with samples without carbon fiber and with carbon fiber having dimensions 5 mm and 10 mm. The water/cement ratio was prepared to take the value of 22-23cm in the flow table test.,A viscosity regulator of 0.1% of the fine material was used in order to ensure homogeneous distribution of carbon fiber in the mortar. 3 samples were prepared for each series in order to reduce the margin of error. Electrical conductivity, compressive and tensile strength tests were applied to the oven dry and naturally moist conditions of the samples that completed their 7, 28 and 56 days curing periods. Increasing the carbon fiber size increased the tensile strengths and increasing the carbon fiber ratio increased the tensile strengths. It has been observed that carbon fiber increases the electrical conductivity, but the conductivity decreases depending on time, and as the sizes and proportions of the carbon fiber fibers increase, the compressive strength decreases due to the void effect in the mortar, while the compressive strength increases with the increase in the fly ash ratio. The microstructure and carbon fiber distribution of the samples were examined using SEM (Scanning Electron Microscopy) and it was seen that the carbon fiber distribution was in a way that supports the electrical conductivity measurement. The study allowed the size and proportion effect of carbon fiber in mortars to be compared with C and Class F reinforced mortar samples.
碳纤维配比及尺寸对砂浆电导率影响的探讨
本研究采用F类和C类粉煤灰增强、碳纤维添加砂浆样品替代PÇ42,5水泥。分别以0.5%、1%和3%的比例加入不同尺寸的碳纤维,考察碳纤维尺寸和配比对导电性能的影响。形成了33个不同的系列,如获得F类;不含粉煤灰10%、20%和C级;不含粉煤灰,10%,20%,样品不含碳纤维,尺寸为5mm和10mm的碳纤维。水灰比在流动表试验中取22-23cm的值。为保证碳纤维在砂浆中的均匀分布,采用0.1%的细料粘度调节剂。为了减小误差范围,每个系列准备了3个样本。电导率、抗压和抗拉强度测试分别应用于烘箱干燥和自然潮湿条件下,完成了7、28和56天的养护期。增大碳纤维尺寸可提高拉伸强度,增大碳纤维比可提高拉伸强度。碳纤维提高了砂浆的导电性,但导电性随时间的延长而降低;随着碳纤维纤维尺寸和配比的增加,砂浆的抗压强度因孔隙效应而降低,而抗压强度随着粉煤灰掺量的增加而增加。利用扫描电子显微镜(SEM)对样品的微观结构和碳纤维分布进行了分析,发现碳纤维的分布与电导率的测量有一定的关系。本研究将碳纤维在砂浆中的尺寸和比例效应与C级和F级增强砂浆样品进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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