Preparation and Hardening Performance of a Novel Surface Treatment Agent for Portland Cement–Based Materials

IF 3.2 3区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
Kaiyue Huang, Yue Li, Ji Zhang, Yanfang Wu, Hui Yang
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Abstract

Surface treatment is essential for enhancing the mechanical performance of Portland cement–based materials. In this study, polymerized siloxane (PS) is proposed as a novel surface treatment agent. PS was synthesized from tetramethoxysilane through hydrolysis and condensation, yielding polymerized siloxanes with a final molecular weight ranging from 200 to 2,000 g/mol, as confirmed by various characterization methods. The PS was subsequently applied and solidified on the surfaces of cured Portland cement samples. Nanoindentation tests revealed significant increases in surface hardness, with cement and mortar showing improvements from 260 to 920 MPa and 352 to 751 MPa, respectively, following the PS treatment. The improvement in modulus indicates the formation of high-density calcium silicate hydrate (HD C-S-H) on the surfaces of the cement-based materials. With the treatment of PS, the surface of cement-based materials is covered with HD C-S-H generated by the reaction of PS and Ca(OH)2, resulting in a smooth surface without pores. AFM measurements revealed a substantial decrease in the surface roughness of the cement following PS application. Surface and cross-sectional morphologies observed via SEM and EDS confirmed the penetration depth of PS, evidenced by the distribution of Si and C elements. This study introduces PS as an effective surface treatment agent for achieving high-hardness surfaces on Portland cement–based materials.
新型硅酸盐水泥基材料表面处理剂的制备及其硬化性能研究
表面处理是提高硅酸盐水泥基材料力学性能的关键。本研究提出聚合硅氧烷(PS)作为一种新型表面处理剂。以四甲基氧基硅烷为原料,经水解缩合合成了聚硅氧烷,经各种表征方法证实,聚硅氧烷的最终分子量在200 ~ 2000 g/mol之间。PS随后被应用于固化波特兰水泥样品的表面并固化。纳米压痕测试显示,经过PS处理后,水泥和砂浆的表面硬度分别从260 MPa提高到920 MPa和352 MPa提高到751 MPa。模量的提高表明高密度水化硅酸钙(HD C-S-H)在水泥基材料表面形成。经PS处理后,水泥基材料表面被PS与Ca(OH)2反应生成的HD C-S-H覆盖,表面光滑无孔。AFM测量结果显示,在使用PS后,水泥的表面粗糙度显著降低。通过SEM和EDS观察到的表面和截面形貌证实了PS的渗透深度,Si和C元素的分布证明了PS的渗透深度。本研究介绍了PS作为一种有效的表面处理剂,在硅酸盐水泥基材料上实现高硬度表面。
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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来源期刊
Journal of Materials in Civil Engineering
Journal of Materials in Civil Engineering 工程技术-材料科学:综合
CiteScore
5.80
自引率
9.40%
发文量
512
审稿时长
6.1 months
期刊介绍: The Journal of Materials in Civil Engineering covers the development, processing, evaluation, applications, and performance of construction materials in civil engineering.
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