工业废渣-再生细骨料协同加固淤泥质黏土地基试验研究

    EXPERIMENTAL STUDY ON SYNERGISTIC STRENGTHENING OF MUDDY CLAY FOUNDATION WITH INDUSTRIAL WASTE AND RECYCLED FINE AGGREGATE

    • 摘要: 为研究工业废渣和再生细骨料对淤泥质黏土地基的协同加固效果,本工作开展了生石灰、工业废渣基复合固化剂(简称复合固化剂)和再生细骨料加固淤泥质黏土地基的现场试验研究,对比分析了5组试验场地中地基土体的静力触探比贯入阻力、承载力、抗压强度和压缩模量等力学特性,并结合X射线衍射(XRD)和扫描电子显微镜(SEM)试验等微观测试手段,揭示了工业废渣和再生细骨料对淤泥质黏土的加固机理。试验结果表明:采用生石灰和复合固化剂对淤泥质黏土地基加固后,地基土体的比贯入阻力、承载力和压缩模量均显著提高,提高了5~10倍,而复合固化剂的加固效果明显优于生石灰;掺入10% ~30%再生细骨料,可进一步提升复合固化剂的加固效果,且提升幅度随再生细骨料掺量的增加而增大;固化土的压缩模量与其比贯入阻力、无侧限抗压强度均存在良好的线性关系,因此可通过比贯入阻力和无侧限抗压强度指标快速预测固化土的压缩模量;采用复合固化剂和再生细骨料协同加固淤泥质黏土时,复合固化剂的直接和间接水化反应产物C-S-H凝胶、AFt晶体等能够有效地填充、胶结淤泥质黏土颗粒,而再生细骨料则起到良好的骨架作用,两者协同作用共同提升了固化土的力学性能。研究成果可实现工业固废和建筑垃圾的同步资源化利用,为淤泥质黏土地基低碳加固技术提供理论基础。

       

      Abstract: In order to investigate the synergistic reinforcement effect of industrial waste residue and recycled fine aggregate on muddy clay foundation,field tests were conducted using quicklime,an industrial waste-based composite curing agent(referred to as composite curing agent),and recycled fine aggregate. The cone penetration resistance,bearing capacity,compressive strength,and compressive modulus of the foundation soil in five test sections were compared and analyzed. Microscopic testing methods such as XRD and SEM were employed to reveal the reinforcement mechanism of muddy clay treated with industrial waste and recycled fine aggregate. The results indicate that after solidification,the specific penetration resistance,bearing capacity,and compressive modulus of the foundation soil increased significantly by 5 to 10 times,with the composite curing agent exhibiting a notably better reinforcement effect than quicklime. The addition of 10% to 30% recycled fine aggregate further enhanced the improvement effect of the composite curing agent,with the degree of enhancement increasing along with the content of recycled fine aggregate. The compressive modulus of the solidified soil showed a strong linear relationship with both the specific penetration resistance and the unconfined compressive strength,allowing for rapid prediction of the compressive modulus based on these indices. When the composite curing agent and recycled fine aggregate were used together to reinforce the muddy clay,direct and indirect hydration products—such as C-S-H gel and AFt crystals—generated by the composite curing agent effectively filled and cemented the soil particles. Meanwhile,the recycled fine aggregate provided a skeletal supporting effect. The synergy between these two materials significantly improved the mechanical properties of the solidified soil. The findings of this study enable the simultaneous resource utilization of industrial solid waste,construction waste,and sludge,offering a theoretical basis for sustainable reinforcement technology of muddy clay foundations.

       

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