兰州理工大学学报 ›› 2026, Vol. 52 ›› Issue (4): 20-32.doi: 10.13295/j.cnki.issn1673-5196.2026.04.003

• 材料科学与工程 • 上一篇    下一篇

稻壳灰对低细实度自密实混凝土的性能优化与影响机理

赵志健, 方皓, 刘乾龙*, 李勇, 张江, 李晨光   

  1. 中电建生态环境集团有限公司, 广东 深圳 518102
  • 收稿日期:2025-09-15 出版日期:2026-08-28 发布日期:2026-09-03
  • 通讯作者: 刘乾龙(1995-),男,四川成都人,硕士,高级工程师.Email:lbl_hf263@163.com

Performance optimization and influence mechanism of rice husk ash-modified low-fines self-compacting concrete

ZHAO Zhi-jian, FANG Hao, LIU Qian-long, LI Yong, ZHANG Jiang, LI Chen-guang   

  1. PowerChina Eco-Environmental Group Co., Ltd., Shenzhen 518102, China
  • Received:2025-09-15 Online:2026-08-28 Published:2026-09-03

摘要: 为促进工业废弃物资源化利用并提升道路混凝土性能,系统评估了稻壳灰(RHA)对低细度自密实混凝土(LF-SCC)路用性能的影响.以0%~50%水泥替代率为变量,开展了工作性能、力学性能和耐久性测试,并结合扫描电子显微镜(SEM)、能谱分析(EDS)与压汞法(MIP)探讨其作用机理.结果表明:20%的RHA替代率表现最佳,其28 d抗压、劈裂抗拉及抗折强度分别提升5.73%、2.48%和2.50%,抗氯离子渗透性达“极低”水平,吸水率和渗透深度分别降低75%和60%.SEM和EDS分析表明,适量RHA通过促进火山灰反应生成大量C—S—H凝胶,显著优化孔隙结构;MIP测试显示28 d后20%RHA替代率的总孔隙率仅为5.34%,最可几孔径细化至28.9 nm,有害孔占比显著减少;而过量掺入则因未反应SiO2积聚导致性能劣化,推荐20%为最佳RHA掺量.

关键词: 稻壳灰, 自密实混凝土, 路用性能, 耐久性

Abstract: To promote the resource utilization of industrial waste and enhance the performance of road concrete, the effects of rice husk ash (RHA) on the performance of low-fineness self-compacting concrete (LF-SCC) for road applications were systematically evaluated. With cement replacement rates ranging from 0% to 50%, the workability, mechanical properties, and durability tests were conducted, and the mechanisms were explored through scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), and mercury intrusion porosimetry (MIP). The results showed that the 20% RHA replacement rate yield the best performance. At 28 days, compressive strength, splitting tensile strength, and flexural strength are increased by 5.73%, 2.48%, and 2.50%, respectively. The chloride ion permeability reach an “extremely low” level, while water absorption and penetration depth are reduced by 75% and 60%, respectively. SEM and EDS analyses indicated that an appropriate amount of RHA promote pozzolanic reactions, resulting in the formation of large amounts of C—S—H gel, which significantly optimize the pore structure. MIP tests revealed that the total porosity with 20% RHA replacement rate at 28 days is only 5.34%, with the most probable pore diameter is reduced to 28.9 nm, and the proportion of harmful pores significantly is decreased. However, excessive incorporation of RHA lead to performance degradation due to the accumulation of unreacted SiO2. Therefore, the 20% RHA replacement rate is recommended as the optimal dosage.

Key words: rice husk ash, self-compacting concrete, pavement performance, durability

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