Florean Carmen Teodora, Chira Mihail, Vermeșan Horațiu, Gabor Timea, Hegyi Andreea, Crișan Claudia Alice, Câmpian Cristina
Faculty of Materials and Environmental Engineering, Technical University of Cluj-Napoca, 103-105 Muncii Boulevard, 400641 Cluj-Napoca, Romania.
National Institute for Research and Development in Construction, Urban Planning and Sustainable Spatial Development URBAN-INCERC Cluj-Napoca Branch, 117 Calea Florești, 400524 Cluj-Napoca, Romania.
Materials (Basel). 2024 Aug 6;17(16):3895. doi: 10.3390/ma17163895.
The aim of this paper was to examine the effects of adding TiO nanoparticles to cementitious compositions and partially substituting natural aggregates with recycled aggregates consisting of glass, brick, slag, or textolite, and to examine the material's ability to resist corrosion under the action of chloride ions existent in the environment that attack the steel reinforcement. The results show that the changes in the cementitious composite when it comes to the composition and microstructure influence the formation of the oxide passivating layer of the reinforcement. The addition of TiO nanoparticles and recycled aggregates impacts the kinetics and corrosion mechanism of the reinforcement. An addition of 3% TiO was found to be optimal for reinforcement protection. Electrochemical impedance spectroscopy confirmed the results obtained by open-circuit potential and linear polarization tests. The classification of favorable conditions indicates that compositions with recycled aggregates and 3% TiO are the most effective, with compositions in which the natural aggregates were partially substituted with slag being the most effective.
本文的目的是研究在胶凝材料组合物中添加二氧化钛纳米颗粒以及用由玻璃、砖块、矿渣或层压织物制成的再生骨料部分替代天然骨料的效果,并研究该材料在侵蚀钢筋的环境中存在的氯离子作用下抵抗腐蚀的能力。结果表明,胶凝复合材料在组成和微观结构方面的变化会影响钢筋氧化物钝化层的形成。二氧化钛纳米颗粒和再生骨料的添加会影响钢筋的动力学和腐蚀机制。发现添加3%的二氧化钛对钢筋保护最为理想。电化学阻抗谱证实了通过开路电位和线性极化测试获得的结果。有利条件的分类表明,含有再生骨料和3%二氧化钛的组合物最为有效,其中天然骨料部分被矿渣替代的组合物最为有效。