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石墨烯对水泥基材料水和氯离子渗透性作用机制的洞察

Insights into the Mechanism of Graphene Acting on Water and Chloride Ion Permeability of Cement-Based Materials.

作者信息

Dong Jianmiao, Zhuang Jiaqiao, Li Wanjin, Zou Mingxuan, He Qi, Luo Shuqiong

机构信息

School of Civil Engineering and Architecture, Guangxi University of Science and Technology, Liuzhou 545006, China.

College of Biological & Environmental Sciences, Zhejiang Wanli University, Ningbo 315000, China.

出版信息

Materials (Basel). 2023 May 22;16(10):3881. doi: 10.3390/ma16103881.

Abstract

Due to its excellent mechanical properties and high aspect ratio, graphene can significantly improve the water and chloride ion permeability resistance of cementitious materials. However, few studies have investigated the effect of graphene size on the water and chloride ion permeability resistance of cementitious materials. The main issues are as follows: How do different sizes of graphene affect the water and chloride ion permeability resistance of cement-based materials, and by what means do they affect these properties? To address these issues, in this paper, two different sizes of graphene were used to prepare graphene dispersion, which was then mixed with cement to make graphene-reinforced cement-based materials. The permeability and microstructure of samples were investigated. Results show that the addition of graphene effectively improved both the water and chloride ion permeability resistance of cement-based materials significantly. The SEM (scanning electron microscope) images and XRD (X-ray diffraction) analysis show that the introduction of either type of graphene could effectively regulate the crystal size and morphology of hydration products and reduce the crystal size and the number of needle-like and rod-like hydration products. The main types of hydrated products are calcium hydroxide, ettringite, etc. The template effect of large-size graphene was more obvious, and a large number of regular flower-like cluster hydration products were formed, which made the structure of cement paste more compact and thus significantly improved the resistance to the penetration of water and chloride ions into the matrix of the concrete.

摘要

由于其优异的力学性能和高长径比,石墨烯能够显著提高胶凝材料的抗水和抗氯离子渗透性能。然而,很少有研究探讨石墨烯尺寸对胶凝材料抗水和抗氯离子渗透性能的影响。主要问题如下:不同尺寸的石墨烯如何影响水泥基材料的抗水和抗氯离子渗透性能,以及它们通过何种方式影响这些性能?为了解决这些问题,本文使用两种不同尺寸的石墨烯制备石墨烯分散体,然后将其与水泥混合制成石墨烯增强水泥基材料。对样品的渗透性和微观结构进行了研究。结果表明,添加石墨烯有效地显著提高了水泥基材料的抗水和抗氯离子渗透性能。扫描电子显微镜(SEM)图像和X射线衍射(XRD)分析表明,两种类型石墨烯的引入均可有效调控水化产物的晶体尺寸和形貌,减少针状和棒状水化产物的晶体尺寸和数量。主要水化产物类型为氢氧化钙、钙矾石等。大尺寸石墨烯的模板效应更为明显,形成了大量规则的花状簇状水化产物,使水泥浆体结构更加致密,从而显著提高了水和氯离子向混凝土基体渗透的阻力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b92b/10222090/fcda82232203/materials-16-03881-g001.jpg

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