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Mechanical and microstructural properties of recycled reactive powder concrete containing waste glass powder and fly ash at standard curing

机译:含废玻璃粉和粉煤灰的再生活性粉末混凝土在标准养护下的力学和微观结构性能

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The objective of this study is to develop recycled reactive powder concrete from local waste raw materials and investigate their combined effect on mechanical properties for sustainable construction. Waste glass powder from construction sites and waste fly ash from cement industries in three different percentages were utilized for full replacement of silica fume. Waste ceramic powder was also utilized to replace quartz powder fully. Recycled reactive powder concrete were developed from Portland cement, finely dispersed waste glass powder, waste ceramic powder, waste fly ash, fine sand, admixture, steel fibres and water at standard curing and using hand mixing. All raw materials were analyzed for X-Ray Fluorescence analysis. To evaluate the mechanical performances of the developed concrete, compressive and flexural strengths were investigated experimentally and compared with the control mix. The experimental results indicated that replacing the silica fume fully by finely dispersed local waste glass powder and fly ash is a promising approach for local structural construction applications. A mean compressive strength of 62.9MPa and flexural strength of 8.8MPa were developed using 50% glass powder 50% fly ash at 28th days standard curing. In this study, 17.56% larger compressive strength and 30.6% flexural strength improvements were observed as compared to the control mix.
机译:这项研究的目的是从当地的废料中开发再生的反应性粉末混凝土,并研究它们对机械性能的综合影响,以实现可持续建筑。建筑工地的废玻璃粉和水泥行业的废粉煤灰以三种不同的百分比用于完全替代硅粉。废陶瓷粉也被用来完全替代石英粉。再生反应性粉末混凝土是由波特兰水泥,细分散的废玻璃粉,废陶瓷粉,废粉煤灰,细砂,外加剂,钢纤维和水在标准养护条件下手工混合而成。分析所有原材料以进行X射线荧光分析。为了评估已开发混凝土的机械性能,对试验的抗压强度和抗弯强度进行了实验研究,并与控制混合物进行了比较。实验结果表明,用细分散的废玻璃粉和粉煤灰完全替代硅粉是用于局部结构施工应用的一种有前途的方法。在第28天标准固化时,使用50%玻璃粉和50%粉煤灰的平均抗压强度为62.9MPa,抗弯强度为8.8MPa。在这项研究中,与对照组相比,抗压强度提高了17.56%,抗弯强度提高了30.6%。

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