水力发电学报
            首 页   |   期刊介绍   |   编委会   |   投稿须知   |   下载中心   |   联系我们   |   学术规范   |   编辑部公告   |   English

水力发电学报 ›› 2026, Vol. 45 ›› Issue (7): 63-75.doi: 10.11660/slfdxb.20260704

• • 上一篇    下一篇

硅灰-预湿再生细骨料混凝土的水化程度及孔隙结构研究

  

  • 出版日期:2026-07-25 发布日期:2026-07-25

Hydration degree and pore structure of silica fume-prewet recycled fine aggregate concrete

  • Online:2026-07-25 Published:2026-07-25

摘要: 再生混凝土能实现建筑废弃物资源化利用,缓解天然砂石资源压力,在水利工程建设中具有广阔应用前景。针对再生细骨料(RFA)因孔隙率高、吸水性强导致的再生混凝土性能劣化问题,本文以30%替代率的RFA混凝土为研究对象,设置不同的硅灰掺量(0%、6%、12%)和干燥、半饱和预湿、全饱和预湿三种处理方式,开展抗压强度试验、核磁共振试验及热重试验,探究硅灰-预湿RFA的协同作用规律。结果表明:当硅灰掺量为6%,RFA半饱和预湿时,再生混凝土表现出最优的综合性能,相比于再生对照组RD,水化程度提高8.08%,孔隙率降低16.64%,抗压强度增加13.8%;掺入硅灰可通过其填充作用和火山灰反应优化孔隙结构;预湿RFA在早期提供稳定水化环境,中后期持续释水实现内养护条件推动水化进程;水化程度和孔隙结构特征参数与混凝土力学性能之间存在相关性。

关键词: 再生混凝土, 水化程度, 孔隙结构, 分形维数, 内养护

Abstract: Recycled concrete enables resource reutilization of construction waste materials and mitigates the depletion of natural sand and gravel resources. This study investigates recycled concrete (RCA) with a 30% substitution rate to address its performance degradation caused by high porosity and strong water absorption in recycled fine aggregates (RFA), focusing on three treatment conditions-different silica fume dosages (0%, 6% and 12%), and three drying conditions-dry, semi-saturated prewetted, and fully saturated prewetted states. We conduct experimental tests on compressive strength, and make nuclear magnetic resonance (NMR) analysis and thermogravimetric analysis, examining the synergistic effects of silica fume and prewetting on RCA. The results show that in the case of the silica ash content of 6% and the semi-saturated and prewetted RFA, the recycled concrete is best in comprehensive performance-its hydration degree increased by 8.08%, porosity reduced by 16.64%, and compressive strength increased by 13.8%, compared with the RD of the recycled control group. Prewetted RCA provides a stable hydration environment in the early curing stage, while it facilitates hydration during mid-to-late stages through releasing its sustained water that results in an internal curing condition. And, correlations exist between its hydration degree, pore structure parameters, and mechanical properties.

Key words: recycled concrete, hydration degree, pore structure, fractal dimension, internal curing

京ICP备13015787号-3
版权所有 © 2013《水力发电学报》编辑部
编辑部地址:中国北京清华大学水电工程系 邮政编码:100084 电话:010-62783813
本系统由北京玛格泰克科技发展有限公司设计开发  技术支持:support@magtech.com.cn