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涉及结晶型防水外加剂和波特兰石灰石水泥的水泥基复合材料的创新性微观结构与耐久性研究

Inventive Microstructural and Durability Investigation of Cementitious Composites Involving Crystalline Waterproofing Admixtures and Portland Limestone Cement.

作者信息

Azarsa Pejman, Gupta Rishi, Biparva Alireza

机构信息

Department of Civil Engineering, Facility for Innovative Materials and Infrastructure Monitoring (FIMIM), University of Victoria, 3800 Finnerty Rd., Victoria, BC V8P 5C2, Canada.

Kryton International Inc., 1645 East Kent Ave N, Vancouver, BC V5P 2S8, Canada.

出版信息

Materials (Basel). 2020 Mar 20;13(6):1425. doi: 10.3390/ma13061425.

Abstract

The durability of a cement-based material is mainly dependent on its permeability. Modifications of porosity, pore-structure and pore-connectivity could have significant impacts on permeability improvement, which eventually leads to more durable materials. One of the most efficient solutions in this regard is to use permeability reducing admixtures (PRA). Among these admixtures for those structures exposed to hydro-static pressure, crystalline waterproofing admixtures (CWA) have been serving in the construction industries for decades and according to ACI 212-chemical admixtures' report, it has proven its capability in permeability reduction and durability-enhancement. However, there is substantial research being done on its durability properties at the macro level but very limited information available regarding its microstructural features and chemical characteristics at the micro level. Hence, this paper presents one of the first reported attempts to characterize microstructural and chemical elements of hydration products for cementitious composites with CWA called K, P and X using Scanning Electron Microscopy (SEM). Backscattered SEM images taken from a polished-section of one CWA type-K-admixture were analyzed in ImageJ to obtain paste matrix porosity, indicating a lower value for the CWA-K mixture. X-ray analysis and SEM micrographs of polished sections were examined to identify chemical compositions based on atomic ratio plots and brightness differences in backscatter-SEM images. To detect chemical elements and the nature of formed crystals, the fractured surfaces of three different CWA mixtures were examined. Cementitious composites with K admixture indicated needle-like crystal formation-though different from ettringite; X and P admixtures showed sulfur peaks in Energy Dispersive Spectrum (EDS) spectra, like ettringite. SEM images and X-ray analyses of mixtures incorporating Portland Limestone Cement (PLC) indicated lower-than-average porosity but showed different Si/Ca and Al/Ca atomic ratios.

摘要

水泥基材料的耐久性主要取决于其渗透性。孔隙率、孔隙结构和孔隙连通性的改变对改善渗透性可能会产生重大影响,最终使材料更耐用。在这方面,最有效的解决方案之一是使用减渗外加剂(PRA)。在这些用于承受静水压力结构的外加剂中,结晶型防水外加剂(CWA)已在建筑行业应用数十年,并且根据美国混凝土学会(ACI)212 - 化学外加剂报告,它已证明其在降低渗透性和提高耐久性方面的能力。然而,关于其宏观层面的耐久性性能有大量研究,但关于其微观结构特征和微观层面化学特性的信息却非常有限。因此,本文首次尝试利用扫描电子显微镜(SEM)对含有CWA(分别称为K、P和X)的水泥基复合材料水化产物的微观结构和化学元素进行表征。从一种CWA - K型外加剂的抛光截面获取的背散射SEM图像在ImageJ中进行分析,以获得浆体基质孔隙率,结果表明CWA - K混合物的孔隙率较低。对抛光截面的X射线分析和SEM微观图像进行检查,以根据原子比图和背散射SEM图像中的亮度差异确定化学成分。为了检测化学元素和所形成晶体的性质,对三种不同CWA混合物的断裂表面进行了检查。含K外加剂的水泥基复合材料显示出针状晶体形成——尽管与钙矾石不同;X和P外加剂在能量色散谱(EDS)光谱中显示出硫峰,与钙矾石类似。掺入波特兰石灰石水泥(PLC)的混合物的SEM图像和X射线分析表明孔隙率低于平均水平,但显示出不同的Si/Ca和Al/Ca原子比。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e571/7143351/85bb38efdda1/materials-13-01425-g001.jpg

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