材料科学
溶解
吸附
硅醇
粘附
水泥
表面改性
浸出(土壤学)
化学工程
表面粗糙度
阳离子聚合
胶凝的
复合材料
核化学
高分子化学
化学
有机化学
土壤水分
催化作用
土壤科学
工程类
环境科学
作者
Bo Pang,Yantao Jia,Yunsheng Zhang,Henmei Ni,Guojian Liu,Wei She,Lin Yang,Rusheng Qian
标识
DOI:10.1016/j.matdes.2019.107673
摘要
In this paper, a stable but highly reactive potassium silanol coupling agent (PSCA) solution for cementitious materials repair was prepared via the cationic complexation method under −20 °C. Furthermore, here we report an innovative magnesium fluorosilicate (MF)- and PSCA-combined treatment for repairing the surface of old cement-based materials. The effect and mechanism of MF and PSCA on the chemical reaction, adhesion properties, durability, and surface morphology of cement-based materials were systematically studied. The results revealed that MF acts to immobilize soluble Ca2+ (with the dissolution rate of Ca2+ decreased by 62.53%), to harden the surface (with an increase from 0.975 GPa to 2.420 GPa), as well as to roughen the surface (with the roughness average increased by 80.61%). Moreover, after spraying the surface with PSCA, MF promotes cross-linking by forming a potassium salt with K+ to form organic-inorganic chemical bonds. Indeed, the adsorption orientation effect formed by MF and PSCA leads to a good coupling effect; therefore, the leaching rate of Ca2+ is reduced by 62.53%. By adopting such a surface-treatment method, the slant-shear strength and the pull-off adhesion strength after the repair are increased by ~12% to 40%, while the water aging resistance is remarkably improved. Keywords: Magnesium fluorosilicate, Repair, Potassium silanol coupling agent, Leaching, Cement-based material, Organic-inorganic composite
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