Wang Yuanlong, Zhao Yongqi, Han Yunshan, Zhou Min
School of Science, North University of China, Taiyuan 030051, China.
Shanxi Graduate Education Innovation Center of Underground Space Engineering, Taiyuan 030051, China.
Materials (Basel). 2021 Dec 21;15(1):14. doi: 10.3390/ma15010014.
This study aimed to determine the effect of circulating fluidised bed bottom ash (CFB-BA) content on the mechanical properties and drying shrinkage of cement-stabilised soil. Experiments were performed to study the changes in unconfined compressive strength and expansibility of cement-stabilised soil with different CFB-BA contents and the underlying mechanisms based on microscopic properties. The results show that CFB-BA can effectively increase the unconfined compressive strength of the specimen and reduce the amount of cement in the soil. When the combined content of CFB-BA and cement in the soil was 30%, the unconfined compressive strength of the specimen with C/CFB = 2 after 60 days of curing was 10.138 MPa, which is 1.4 times that of the pure cement specimen. However, the CFB-BA does not significantly improve the strength of the soil and cannot be added alone as a cementing material to the soil. Additionally, swelling tests showed that the addition of CFB-BA to cement-stabilised soil can significantly reduce the drying shrinkage. This research project provides reference values for the application of CFB-BA in cement-soil mixing piles, including compressive strength and the reduction in the shrinkage deformation of specimens.
本研究旨在确定循环流化床底灰(CFB - BA)含量对水泥稳定土力学性能和干燥收缩的影响。通过试验研究了不同CFB - BA含量的水泥稳定土无侧限抗压强度和膨胀性的变化以及基于微观特性的潜在机制。结果表明,CFB - BA能有效提高试件的无侧限抗压强度并减少土中水泥用量。当土中CFB - BA与水泥的总含量为30%时,养护60天后C/CFB = 2的试件无侧限抗压强度为10.138MPa,是纯水泥试件的1.4倍。然而,CFB - BA并不能显著提高土的强度,不能单独作为胶凝材料添加到土中。此外,膨胀试验表明,向水泥稳定土中添加CFB - BA可显著降低干燥收缩。本研究项目为CFB - BA在水泥土搅拌桩中的应用提供了参考值,包括抗压强度以及试件收缩变形的减小。