Comprehensive analysis of cement-stabilised dredged marine soil: Evaluating physical, microstructural, and mechanical characteristics

Bhim Kumar Dahal, Jun Jie Zheng
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Abstract

This study evaluates the index, microstructural, and mechanical behaviour of cement-stabilised soft soil. The marine soil dredged from Hangzhou is taken for the study. Different percentages of ordinary Portland cement (OPC)by dry mass were added to the soils during reconstitution, i.e., 5, 10, 15, and 20%. The reconstituted samples were analysed in the laboratory to determine basic properties such as moisture content, void ratio, density, specific gravity, consistency limits, and particle size distribution. The microstructures of the reconstituted samples were also evaluated through scanning electron microscopy. Results inferred a significant impact on the physical properties of the soil. An increase in cement content increases the consistency limits. Additionally, the specific gravity, plasticity index, and density of the treated soil initially decreased but increased upon further addition of cement content. The microstructure of the soil transformed from a dispersed to a flocculated structure, with larger and denser particles. The change in microstructure was also evident in the particle size distribution, with an increase in cement content leading to larger size particles. Finally, the unconfined compression test conducted on the reconstituted soil indicates a substantial enhancement in strength with higher cement content and prolonged curing periods.
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全面分析水泥稳定疏浚海洋土壤:评估物理、微观结构和机械特性
本研究评估了水泥稳定软土的指标、微观结构和力学性能。研究采用的是杭州疏浚的海洋土壤。在重组过程中,向土壤中添加了不同比例的普通硅酸盐水泥(OPC),即 5%、10%、15% 和 20%。重组后的样品在实验室进行分析,以确定其基本属性,如含水量、空隙率、密度、比重、稠度极限和粒径分布。还通过扫描电子显微镜对重组样品的微观结构进行了评估。结果表明,水泥对土壤的物理性质有重大影响。水泥含量的增加会提高稠度极限。此外,经过处理的土壤的比重、塑性指数和密度最初都有所下降,但随着水泥含量的进一步增加,其比重、塑性指数和密度都有所上升。土壤的微观结构从分散结构转变为絮凝结构,颗粒更大、更致密。微观结构的变化在粒径分布上也很明显,水泥含量的增加导致粒径变大。最后,对重组土壤进行的无约束压缩测试表明,随着水泥含量的增加和固化时间的延长,土壤的强度会大幅提高。
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