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水泥技术, 2026, 1(4): 1-8    doi: 10.19698/j.cnki.1001-6171.20264001
  实验研究 本期目录 | 过刊浏览 | 高级检索 |

矿物掺合料对掺微胶囊水泥基材料力学性能及耐久性能的影响研

1 建筑材料工业技术情报研究所,北京  100024

2 北京工业大学材料科学与工程学院,北京  100124;

3 北京建筑材料科学研究总院有限公司,北京  100041;

Study on the Influence of Mineral Admixtures on the Mechanical Properties and Durability of Cement-based Materials Included Microcapsules

1 Institute of Technical Information for Building Materials Industry, Beijing 100024, China;

2 College of Materials Science and EngineeringBeijing University of Technology, Beijing 100124, China;

3 Beijing Building Materials Academy of Sciences Research, Beijing 100041, China

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摘要 
为改善微胶囊自修复水泥基材料因界面缺陷引起的力学性能与耐久性能劣化问题,以掺环氧树脂(EP)、四乙烯五胺(TEPA)双微胶囊的水泥胶砂为研究对象,系统对比分析了纳米SiO2、硅灰(SF)和矿粉(GGBFS)三种矿物掺合料对其力学性能、抗氯离子渗透性能、抗硫酸盐侵蚀性能、抗碳化性能及抗冻融性能的影响规律,并进一步揭示了其作用机理。结果表明,三种矿物掺合料均可通过微填充效应与火山灰效应协同优化浆体孔结构,增强微胶囊与水泥基体之间的界面结合性能,有效改善掺微胶囊水泥胶砂的力学性能与耐久性能。其中,纳米SiO2与SF在提高抗氯离子渗透性能、抗硫酸盐侵蚀性能及抗冻融循环性能方面表现更优,而GGBFS对抗折强度和抗压强度的提升效果最为显著。总体而言,矿物掺合料能够有效弥补微胶囊引入导致的水泥基体本体性能损失,为自修复水泥基材料的工程应用提供了理论依据与技术支撑。
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马文旭
孙大伟
宋俊甫
王肇嘉
崔素萍
关键词:  矿物掺合料  微胶囊  水泥胶砂  力学性能  耐久性能    
Abstract: 

To address the degradation of mechanical and durability properties of microcapsule-based self-healing cementitious materials caused by interfacial defects, this study focused on cement mortars containing dual microcapsules of epoxy resin (EP) and tetraethylenepentamine (TEPA) as the study subject. We systematically compared and analyzed the effects of three mineral admixtures — nano-SiO2, silica fume (SF), and ground granulated blast furnace slag (GGBFS) — on the material’s mechanical properties, resistance to chloride ion penetration, resistance to sulfate attack, resistance to carbonation, and freeze-thaw durability, and further elucidated their mechanisms of action. The results indicate that all three mineral admixtures can synergistically optimize the pore structure of the paste through a combination of micro-filling and pozzolanic effects, thereby enhancing the interfacial bonding between the microcapsules and the cement matrix, which effectively improves the mechanical and durability properties of the microcapsule-modified cement mortar. Among them, nano-SiO2 and SF demonstrated superior performance in enhancing resistance to chloride ion penetration, sulfate attack, and freeze-thaw cycles, while GGBFS showed the most significant improvement in flexural and compressive strengths. Overall, mineral admixtures can effectively compensate for the loss of intrinsic properties in the cement matrix caused by the introduction of microcapsules, providing a theoretical basis and technical support for the engineering application of self-healing cement-based materials.

Key words:  mineral admixtures    microcapsules    cement mortar    mechanical properties    durability
收稿日期:  2026-05-07      修回日期:  2026-07-25           出版日期:  2026-07-25      发布日期:  2026-07-25      整期出版日期:  2026-07-25
ZTFLH:  TU528  
  TQ172.1  
基金资助: 国家自然科学基金面上项目(52472020
通讯作者:  马文旭(1996—),女,博士,工程师,主要从事硫铁铝酸盐水泥相关研究。    E-mail:  1060391711@qq.com
引用本文:    
马文旭, 孙大伟, 宋俊甫, 王肇嘉, 崔素萍.

矿物掺合料对掺微胶囊水泥基材料力学性能及耐久性能的影响研 [J]. 水泥技术, 2026, 1(4): 1-8.
Ma Wenxu, Sun Dawei, Song Junfu, Wang Zhaojia, Cui Suping.

Study on the Influence of Mineral Admixtures on the Mechanical Properties and Durability of Cement-based Materials Included Microcapsules . Cement Technology, 2026, 1(4): 1-8.

链接本文:  
http://www.cemteck.com/CN/10.19698/j.cnki.1001-6171.20264001  或          http://www.cemteck.com/CN/Y2026/V1/I4/1
[1] 宋留庆, 王峰, 聂文海, 柴星腾, 朱锋. 辊磨粉磨镍铁渣粉用作混凝土掺合料的性能研究[J]. 水泥技术, 2016, 1(2): 28-30.
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