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硅灰和磨细稻壳灰在胶凝体系中作为活性二氧化硅的火山灰反应活性:一项比较研究。

Pozzolanic Reactivity of Silica Fume and Ground Rice Husk Ash as Reactive Silica in a Cementitious System: A Comparative Study.

作者信息

Xu Weiting, Lo Tommy Yiu, Wang Weilun, Ouyang Dong, Wang Penggang, Xing Feng

机构信息

Guangdong Provincial Key Laboratory of Durability for Marine Civil Engineering, College of Civil Engineering, Shenzhen University, Shenzhen 518060, China.

Department of Architectural and Civil Engineering, City University of Hong Kong, Hong Kong, China.

出版信息

Materials (Basel). 2016 Mar 1;9(3):146. doi: 10.3390/ma9030146.

Abstract

This study comparably assessed the pozzolanic effect of silica fume (SF) and ground rice husk ash (RHA) as supplementary cementing materials on the properties of blended cement pastes and concretes. A commonly commercial silica fume (SF) and locally-produced rice husk ash (RHA) samples with two finenesses (one with larger size than cement and the other with smaller size than cement) were used in this study. Material properties of SF and RHA were experimentally characterized. Hydration and mechanical properties of cement pastes incorporating SF and RHA were determined by thermogravimetric analysis (TGA) and compressive strength tests, respectively. Properties of concretes regarding workability, mechanical property, durability, and microstructure were evaluated. Results showed that, although the finely ground RHA used in this study possessed lower SiO₂ content and higher particle size compared to SF, it exhibited comparable pozzolanic reactivity with SF due to the nano-scale pores on its each single particle, leading to a higher specific surface area. The optimal replacement levels of SF and RHA were 10% by weight of cement in pastes and concretes. Although addition of SF and RHA led to a significant reduction in slump for the fresh mixtures, inclusion of up to 30% of SF or 15% of ground RHA did not adversely affect the strength of concretes. At the same mix, incorporation of finely-ground RHA in cement composites provided comparable mechanical properties, hydration degree, and durability with SF blended cement composites, owing to the porous structure and high specific surface area of RHA particles. Microstructure morphology analysis of concretes explored by scanning electron microscopy (SEM) further validated the strength and the durability test results.

摘要

本研究对硅灰(SF)和磨细稻壳灰(RHA)作为辅助胶凝材料对水泥净浆和混凝土性能的火山灰效应进行了对比评估。本研究使用了一种常见的商业硅灰(SF)和两种细度的本地生产的稻壳灰(RHA)样品(一种粒径大于水泥,另一种粒径小于水泥)。对SF和RHA的材料性能进行了实验表征。分别通过热重分析(TGA)和抗压强度试验测定了掺入SF和RHA的水泥净浆的水化和力学性能。对混凝土的工作性、力学性能、耐久性和微观结构性能进行了评估。结果表明,尽管本研究中使用的细磨RHA与SF相比SiO₂含量较低且粒径较大,但由于其单个颗粒上的纳米级孔隙,导致比表面积较高,其火山灰反应活性与SF相当。SF和RHA在净浆和混凝土中的最佳取代水平均为水泥重量的10%。虽然添加SF和RHA导致新鲜混合物的坍落度显著降低,但掺入高达30%的SF或15%的磨细RHA不会对混凝土强度产生不利影响。在相同配合比下,由于RHA颗粒的多孔结构和高比表面积,在水泥基复合材料中掺入细磨RHA可提供与SF掺合水泥基复合材料相当的力学性能、水化程度和耐久性。通过扫描电子显微镜(SEM)对混凝土微观结构形态的分析进一步验证了强度和耐久性试验结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7725/5456714/c4f1b5f766fb/materials-09-00146-g001.jpg

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