Optimization of the concrete through the addition of nanosilice, using aggregates of the cantera de Añashuayco de Arequipa

P. W. C. Arredondo, C. Lazo, Angel Antonio Ruiz Pico
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引用次数: 1

Abstract

The present research work is carried out using the experimental study to evaluate the concrete made with Aggregates of the Quarry with Addition of Nanosilica containing micro-fine nanoparticles of amorphous silica dioxide (Si O 2 ). Nanosilica has pozzolanic properties that, upon contact with water, reacts with hydrated cement to form more particles of C-S-H (gel), which reduces porosity by partially filling the pores to refine the structure and therefore gives us greater compressive strength. The recommendation of this study is to implement low-cost, low-rise housing construction. The microstructure properties of the cement paste are improved with the addition of Nanosilica. Nanoparticles have high specific surface areas, and their surfaces are very active; an intense pozzolanic reaction between Nanosilica and CH, would accelerate the pozzolanic reactions between SIO 2 and water molecules. Therefore, the smaller the pore volume, the higher the compressive strength and water absorption capacity of Nanosilica-modified pastes results. The volume of the pores was reduced along with the increase of the Nanosilica dose. The cement and sand mixture without Nanosilica after 7 days of curing, shows a porous structure.
通过添加纳米硅来优化混凝土,使用Añashuayco de Arequipa中心的骨料
本文的研究工作是通过实验研究来评价在采石场骨料中添加纳米二氧化硅(Si O 2)对混凝土的影响。纳米二氧化硅具有火山灰性质,与水接触后,与水化水泥反应形成更多的C-S-H(凝胶)颗粒,通过部分填充孔隙来减少孔隙率,从而改善结构,从而提高抗压强度。本研究建议推行低成本、低层住宅建设。纳米二氧化硅的加入改善了水泥浆体的微观结构性能。纳米粒子具有很高的比表面积,并且它们的表面非常活跃;纳米二氧化硅与CH之间剧烈的火山灰反应,会加速二氧化硅与水分子之间的火山灰反应。因此,孔隙体积越小,纳米硅改性膏体的抗压强度和吸水能力越高。孔隙体积随纳米二氧化硅剂量的增加而减小。不含纳米二氧化硅的水泥砂混合物在养护7天后呈现多孔结构。
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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