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Assessment of nano-TiO 2 and class F fly ash effects on flexural fracture and microstructure of binary blended concrete

机译:纳米TiO 2 和F级粉煤灰对二元混合混凝土弯曲断裂和微观结构的影响评估。

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Flexural fracture analysis with an emphasis on microstructural assessment of self-compacting concrete (SCC) containing class F fly ash (FA) and titanium dioxide (TiO_(2)) nanopowder has been carried out in this paper. For this purpose, Portland cement was replaced by low volumes of FA as 5, 10, and 15 wt% and nanopowder as 1–5 wt%. Flexural and compressive strengths were determined at different ages and empirical relationships were obtained to predict flexural strength based on compressive strength at different ages. Microstructures of different concrete mixtures were also investigated by scanning electron microscopy (SEM). It was found that addition of FA could lead to flexural strength decrease at earlier ages; however, improvement of the flexural strength could be achieved at higher ages. TiO_(2)nanopowder as a partial replacement of cement up to 4 wt% could accelerate C-S-H gel formation as a result of increased crystalline Ca(OH)_(2)amount at the early age of hydration and hence increase flexural strength of concrete specimens. TiO_(2)nanopowder could also improve the microstructure of concrete by shifting the distributed pores to finer and less harmful pores.
机译:本文进行了以F级粉煤灰(FA)和二氧化钛(TiO_(2))纳米粉为材料的自密实混凝土(SCC)的微观断裂评估为重点的弯曲断裂分析。为此,波特兰水泥被低含量的FA(5、10和15 wt%)和纳米粉(1-5 wt%)代替。确定了不同年龄的抗弯强度和抗压强度,并获得了经验关系,以基于不同年龄的抗压强度来预测抗弯强度。还通过扫描电子显微镜(SEM)研究了不同混凝土混合物的微观结构。研究发现,添加FA可能导致较早年龄的弯曲强度下降;但是,较高的年龄可以提高抗弯强度。 TiO_(2)纳米粉作为水泥的部分替代品,最多可替代4 wt%,这可能是由于水合初期结晶Ca(OH)_(2)含量增加,导致CSH凝胶形成加快,从而提高了混凝土试样的抗弯强度。 TiO_(2)纳米粉还可以通过将分布的孔转移到更细,危害较小的孔来改善混凝土的微观结构。

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