Ma Qunchao, Wang Kangyu, Li Qiang, Zhang Yuting
School of Civil Engineering, Zhejiang University of Technology, Hangzhou 310015, China.
School of Civil Engineering and Architecture, Wuhan University of Technology, Wuhan 430070, China.
Materials (Basel). 2025 Jul 21;18(14):3408. doi: 10.3390/ma18143408.
Fluidized solidified soil (FSS) has emerged as a promising material for marine pile scour remediation, yet its limited construction window and vulnerability to hydraulic erosion before sufficient curing constrain its broader application. This study systematically evaluates FSS formulations based on dredged sediment, cement partially replaced by silica fume (i.e., 0%, 4%, 8%, and 12%), and quicklime activation under three water-solid ratios (WSR, i.e., 0.525, 0.55, and 0.575). Experimental assessments included flowability tests, unconfined compressive strength, direct shear tests, and microstructural analysis via XRD and SEM. The results indicate that SF substitution significantly mitigates flowability loss during the 90-120 min interval, thereby extending the operational period. Moreover, the greatest enhancement in mechanical performance was achieved at an 8% SF replacement: at WSR = 0.55, the 3-day UCS increased by 22.78%, while the 7-day cohesion and internal friction angle rose by 13.97% and 2.59%, respectively. Microscopic analyses also confirmed that SF's pozzolanic reaction generated additional C-S-H gel. However, the SF substitution exhibits a pronounced threshold effect, with levels above 8% introducing unreacted particles that disrupt the cementitious network. These results underscore the critical balance between flowability and early-age strength for stable marine pile scour repair, with WSR = 0.525 and 8% SF substitution identified as the optimal mix.
流态固化土(FSS)已成为一种用于海洋桩基础冲刷修复的有前景的材料,然而其有限的施工窗口期以及在充分固化前易受水力侵蚀的特性限制了其更广泛的应用。本研究基于疏浚沉积物、用硅灰部分替代水泥(即0%、4%、8%和12%)以及在三种水固比(WSR,即0.525、0.55和0.575)下进行生石灰活化,系统地评估了FSS配方。实验评估包括流动性测试、无侧限抗压强度、直剪试验以及通过XRD和SEM进行的微观结构分析。结果表明,硅灰替代显著减轻了90 - 120分钟间隔内的流动性损失,从而延长了作业期。此外,在硅灰替代量为8%时实现了机械性能的最大提升:在WSR = 0.55时,3天无侧限抗压强度提高了22.78%,而7天的黏聚力和内摩擦角分别提高了13.97%和2.59%。微观分析还证实,硅灰的火山灰反应生成了额外的C-S-H凝胶。然而,硅灰替代呈现出明显的阈值效应,超过8%的含量会引入未反应的颗粒,从而破坏胶凝网络。这些结果强调了在稳定的海洋桩基础冲刷修复中流动性与早期强度之间的关键平衡,确定WSR = 0.525和8%的硅灰替代量为最佳配比。