煤炭工程 ›› 2026, Vol. 58 ›› Issue (8): 203-210.doi: 10.11799/ce202608025

• 研究探讨 • 上一篇    下一篇

纳米二氧化硅与纳米氧化铝协同增强喷射混凝土性能的试验研究

马芹永,蔡志伟   

  1. 1. 安徽理工大学 土木建筑学院,安徽 淮南 232001

    2. 安徽理工大学 矿山地下工程教育部工程研究中心,安徽 淮南 232001

  • 收稿日期:2026-02-12 修回日期:2026-04-02 出版日期:2026-08-15 发布日期:2026-08-31
  • 通讯作者: 马芹永 E-mail:qyma@aust.edu.cn

Experimental study on the synergistic enhancement of shotcrete performance by nano-silica and nano-alumina

  • Received:2026-02-12 Revised:2026-04-02 Online:2026-08-15 Published:2026-08-31

摘要:

为满足地下工程对高性能喷射混凝土的需求,研究了单掺与复掺纳米二氧化硅(NS)和纳米氧化铝(NA)对其工作性能、力学性能及微观结构的影响。设计不同配合比,测试坍落度及各龄期(3728 d)抗压强度,借助数字图像相关(DIC)技术、应力-应变曲线、破坏形态和扫描电镜(SEM)分析展开研究。结果表明,单掺3%NS3%NA可提升强度,28d抗压强度较基准组分别提高15.9%11.1%,但坍落度降低;复掺体系(NSNA总掺量3%)增强效果更好,NSNA比例为21时协同效应最佳,28d抗压强度提升35.1%DIC分析表明,复掺使试件在破坏时裂缝分布更均匀,主裂缝宽度减小,应力-应变曲线下降段更平缓,延性更好。微观分析表明,NSNA通过火山灰反应生成凝胶,发挥微集料填充效应,优化界面过渡区,使结构更致密。研究证实了NSNA复掺可改善喷射混凝土综合性能,为其工程应用提供了试验依据。

关键词: 喷射混凝土, 纳米SiO2, 纳米Al2O3, 微观结构, 破坏形态, 数字图像相关

Abstract:

To meet the demand for high-performance shotcrete in underground engineering, the effects of single and combined incorporation of nano-silica (NS) and nano-alumina (NA) on its workability, mechanical properties, and microstructure were investigated. Different mix proportions with varying dosages were designed, and slump as well as compressive strength at different curing ages (3, 7, and 28 days) were tested. Digital image correlation (DIC) technology, stress-strain curves, failure patterns, and scanning electron microscopy (SEM) were employed for analysis. The results indicate that single incorporation of 3% NS or 3% NA enhances strength, with 28-day compressive strength increasing by 15.9% and 11.1% respectively compared to the control group, though slump decreases. The combined incorporation system (total NS and NA dosage of 3%) demonstrates superior strengthening effects, with the optimal synergistic ratio of NS to NA at 2:1, achieving a 35.1% increase in 28-day compressive strength. DIC analysis indicates that the combined addition results in a more uniform distribution of cracks during specimen failure, a reduction in the width of primary cracks, a gentler descending segment in the stress-strain curve, and improved ductility. Microstructural analysis further confirms that NS and NA generate gel through pozzolanic reactions, exert micro-aggregate filling effects, and optimize the interfacial transition zone, leading to a denser microstructure. This study verifies that combined incorporation of NS and NA enhances the overall performance of shotcrete, providing an experimental basis for its engineering applications.

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