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碳酸水环境下隧道水泥基材料的抗侵蚀特性 被引量:2
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作者 李康 邹敏 +2 位作者 王希 谢永江 刘娟红 《建筑材料学报》 EI CAS CSCD 北大核心 2024年第5期408-417,共10页
对比了多种水泥基材料在碳酸水加速侵蚀前后的抗压强度、材料内部的物相迁移和孔结构特征.结果表明:碳酸水侵蚀后水泥基材料强度的发展受到限制,Ca(OH)_(2)和CaCO_(3)含量同时降低,孔径粗化且有害孔的比例增大;以水化硅酸钙凝胶和Ca(OH)... 对比了多种水泥基材料在碳酸水加速侵蚀前后的抗压强度、材料内部的物相迁移和孔结构特征.结果表明:碳酸水侵蚀后水泥基材料强度的发展受到限制,Ca(OH)_(2)和CaCO_(3)含量同时降低,孔径粗化且有害孔的比例增大;以水化硅酸钙凝胶和Ca(OH)_(2)为主要水化产物的胶凝体系最容易受到碳酸水的侵蚀,且Ca(OH)_(2)含量越高,水泥基材料抗碳酸水侵蚀的能力越弱;以钙矾石为主要水化产物的胶凝体系抗碳酸水侵蚀的能力明显增强. 展开更多
关键词 隧道泥基材料 碳酸水侵蚀 物相分析 孔结构 Rietveld法
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Carbonated water erosion characteristics and mechanism of tunnel lining cement-based materials in karst environment
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作者 ZOU Min LIU Juan-hong LI Kang 《Journal of Central South University》 2025年第8期3015-3034,共20页
The study aims to investigate the carbonated water erosion mechanism of lining concrete in tunnels traversing karst environment and enhance its resistance.In this study,dynamic carbonated water erosion was simulated t... The study aims to investigate the carbonated water erosion mechanism of lining concrete in tunnels traversing karst environment and enhance its resistance.In this study,dynamic carbonated water erosion was simulated to assess erosion depth,microstructure,phase migrations,and pore structure in various tunnel lining cement-based materials.Additionally,Ca^(2+)leaching was analyzed,and impact of Ca/Si molar ratio in hydration products on erosion resistance was discussed by thermodynamic calculations.The results indicate that carbonated water erosion caused rough and porous surface on specimens,with reduced portlandite and CaCO_(3) content,increased porosity,and an enlargement of pore size.The thermodynamic calculations indicate that the erosion is spontaneous,driven by physical dissolution and chemical reactions dominated by Gibbs free energy.And the erosion reactions proceed more spontaneously and extensively when Ca/Si molar ratio in hydration products was higher.Therefore,cement-based materials with higher portlandite content exhibit weaker erosion resistance.Model-building concrete,with C-S-H gel and portlandite as primary hydration products,has greater erosion susceptibility than shotcrete with ettringite as main hydration product.Moreover,adding silicon-rich mineral admixtures can enhance the erosion resistance.This research offers theory and tech insights to boost cement-based material resistance against carbonated water erosion in karst tunnel engineering. 展开更多
关键词 tunnel lining cement-based materials carbonated water erosion phase analysis pore structure Ca/Si molar ratio
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