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Compressive Strength and Chloride Resistance of Metakaolin Concrete

机译:偏高岭土混凝土的抗压强度和抗氯化物性能

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摘要

In the present research work, investigations were carried out to improve the performance of concrete in terms of strength and resistance to chloride-ion-penetration by incorporating metakaolin (MK) as mineral admixture in concrete. Parametric study was carried out by considering w/cm ratio, various percentage of MK and age of concrete as parameters to understand the effect of each parameter. The study was conducted for different water-to-cement metakaolin ratio (w/cm) ratios of 0.32,0.35,0.4 and 0.5. The MK proportion was varied from 0 to 15% with an increment of 5% and ages of concrete from 3 to 90 days were considered and experiments performed accordingly. The effects of above said parameters on the various properties of concrete such as workability, compressive strength, chloride penetrability (Rapid chloride permeability test as per ASTM C 1202), pH of concrete and depth of penetration of chloride ions were investigated, and the results of MK concrete were compared with the conventional concrete. From the results, it was observed that MK concrete showed greater strength for higher w/cm ratios (0.4 and 0.5) and its resistance to chloride ion penetration was more or less consistent for all w/cm ratios and the optimal amount of MK resulted significant reduction in chloride ion penetration. A Multiple non-linear regression analysis was used to develop a statistical model to predict the strength and found to have good correlation between the observed and predicted values. It was concluded that the concrete developed in this study have significant potential for use on real time projects.
机译:在当前的研究工作中,进行了研究,通过在混凝土中掺入偏高岭土(MK)作为矿物掺合料来提高混凝土的强度和抗氯离子渗透性。通过将w / cm比,MK的不同百分比和混凝土的年龄作为参数进行参数研究,以了解每个参数的影响。针对不同的水灰比偏高岭土比(w / cm)为0.32、0.35、0.4和0.5进行了研究。 MK的比例从0到15%随5%的变化而变化,并且考虑了3到90天的混凝土龄期,并据此进行了实验。研究了上述参数对混凝土各种性能的影响,如可加工性,抗压强度,氯离子渗透性(根据ASTM C 1202的快速氯离子渗透性测试),混凝土的pH值和氯离子的渗透深度,并得出了结果。将MK混凝土与常规混凝土进行了比较。从结果可以看出,MK混凝土在较高的w / cm比率(0.4和0.5)下显示出更高的强度,并且对氯离子渗透的抵抗力在所有w / cm比率下或多或少一致,最佳的MK量导致减少氯离子渗透。使用多元非线性回归分析来开发统计模型以预测强度,并发现观测值与预测值之间具有良好的相关性。结论是,本研究开发的混凝土在实时项目中具有巨大的潜力。

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