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Mechanical and microstructural characterization of rice husk ash and A1_2O_3 nanoparticles modified cement concrete

机译:水稻壳灰和A1_2O_3纳米粒子改性水泥混凝土机械和微观结构特征

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Waste and by-product materials both in their macro and micro-sizes are nowadays gaining more importance and consideration for their use as a partial substitute of the virgin concrete s constituents. Nanoparticles have now also gained widespread recognition and used in various construction applications, especially cement-based materials. The present paper examines the impacts of a combination of Al2O3 nanoparticles along with Rice Husk Ash (RHA) on both mechanical properties (Flexure, Splitting tensile and Compressive) strengths and durability properties, including resistance to hydrochloric acid attack and chloride permeation. RHA substituted Portland cement (PC) at a fixed amount of 10%, and Al2O3 nanoparticles have been utilized as a partial substitution of PC at 1%, 2%, 3%, and 4%. Surface morphology and microstructure of modified cement concretes were assessed by means of the Scanning Electron Microscope (SEM). The results revealed that Al2O3 nanoparticles have double effects as a filling material. As a reactive one, increasing contribution in the volume of calcium silicate hydrates (C-S-H) formed thereby increases the strengths and durability properties of concrete material. It has also been found that 3% content of Al2O3 nanoparticles is the optimum content to substitute part of the cement leading to the greatest mechanical and durability properties enhancement. The combination of up to 3% Al2O3 nanoparticles along with 10%RHA to design modified cement concretes with enhanced strength and durability performances have revealed to be efficient and productive for eco-friendly concrete material. (C) 2020 Elsevier Ltd. All rights reserved.
机译:现在,废物和副产物材料在其宏观和微尺寸中,现在可以更加重视和考虑它们作为原始混凝土组成分的部分替代品。纳米粒子现在也具有广泛的识别,并用于各种施工应用,特别是基于水泥的材料。本文研究了Al2O3纳米颗粒的组合以及稻壳灰(RHA)对机械性能(弯曲,分裂拉伸和压缩)强度和耐久性的影响,包括耐盐酸侵蚀和氯化物渗透。 RHA以固定量为10%的替代物替代的波特兰水泥(PC),并且Al2O3纳米颗粒已被用作1%,2%,3%和4%的PC的部分取代。通过扫描电子显微镜(SEM)评估改性水泥混凝土的表面形态和微观结构。结果表明,Al 2 O 3纳米颗粒具有双效应作为填充材料。作为反应性的,形成的硅酸钙水合物(C-S-H)的体积增加提高了混凝土材料的强度和耐久性。还发现,3%的Al 2 O 3纳米颗粒含量是替代部分水泥的最佳含量,导致最大的机械和耐久性性能增强。最高可达3%的Al 2 O 3纳米颗粒以及10%RHA设计改性水泥混凝土,具有增强的强度和耐用性性能,为生态友好的混凝土材料有效和生产。 (c)2020 elestvier有限公司保留所有权利。

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