An Experimental Investigation of the Effects of Fly Ash and Nano Titanium Dioxide (n-TiO2) Usage as Viscosity Modifying Agents(VMAs) in Cement-Based Grouts on Rheological Parameters.

F. Celik
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引用次数: 3

Abstract

The effects of n-TiO2 additions at different amounts by mass (0.0%, 0.3%, 0.6%, 0.9%, 1.2% and 1.5%) on rheological properties (plastic viscosity and yield stress) of cement-based grouts incorporated with fly ash as mineral additive at different constitutes (0%-for control purpose, 5%, 10%, 15%, 20%, 25% and 30%) were investigated by analysis of experiments in this study. To prepare all samples, w/b ratio was defined as 1.0. To prevent sedimentation of TiO2 nanoparticles in free water and to supply uniform distribution of TiO2 nanoparticles in water with help of removing of these nanoparticles from each other, Ultrasonication method was applied by using a Horn type Ultrasonic Homogenizer in this experimental study. All experimental viscosity values of the cement-based grout samples were also obtained by using Coaxial Rotating Cylinder Rheometer test machine. Modified Bingham analytical model was used to investigate on this study for reference grout samples because of it shows dilatant (shear-thickening) flow behavior. Test results show that plastic viscosity values of the grout samples obtained by addition of FA remarkably decrease with rising amount of n-TiO2. Yield stress of fresh grout mixtures increases with respect to increase amount of FA content in all grout mixtures with different proportions of n-TiO2. the usage of FA as a mineral additive in cement-based grouts has improved the yield stress value of the samples. Since n-TiO2 has such a low specific surface area, the water requirement of the grout matrix tends to increase. Therefore, this situation causes increasing of cohesion. The developed ANNs model has been able to predict the plastic viscosity and yield stress of cement-based grouts containing TiO2 nanoparticle doped fly ash with very low error rates and high accuracy
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粉煤灰和纳米二氧化钛(n-TiO2)作为黏度改性剂对水泥基灌浆流变参数影响的实验研究。
通过实验分析,研究了不同质量掺量(0.0%、0.3%、0.6%、0.9%、1.2%和1.5%)的n-TiO2对粉煤灰作为矿物添加剂掺入水泥基灌浆不同组成(对照为0%、5%、10%、15%、20%、25%和30%)的流变特性(塑性粘度和屈服应力)的影响。制备所有样品时,定义w/b比为1.0。为了防止TiO2纳米粒子在自由水中沉积,并通过去除水中的TiO2纳米粒子来保证TiO2纳米粒子在水中的均匀分布,本实验研究采用超声法,使用Horn型超声均质机。水泥基浆液样品的所有实验黏度值均由同轴旋转圆筒流变仪试验机获得。参考浆液样品表现出剪胀(剪切-增稠)流动特性,采用修正Bingham分析模型进行研究。试验结果表明,随着n-TiO2用量的增加,FA加入后的浆液样品的塑性黏度值显著降低。不同n-TiO2配比的新浆液混合物屈服应力随FA含量的增加而增大。在水泥基灌浆中加入FA作为矿物添加剂,提高了试样的屈服应力值。由于n-TiO2具有如此低的比表面积,因此浆液基质的需水量趋于增加。因此,这种情况导致了凝聚力的增加。所建立的人工神经网络模型能够以极低的错误率和较高的精度预测掺TiO2纳米颗粒粉煤灰水泥基灌浆的塑性黏度和屈服应力
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