Hu Jun, Xu Chenming, Ren Junhao, Xiong Hui, Wang Zhixin, Yang Yongchang
College of Civil Engineering and Construction, Hainan University, Haikou 570228, China.
Collaborative Innovation Center of Marine Science and Technology, Hainan University, Haikou 570228, China.
Materials (Basel). 2023 Jul 27;16(15):5281. doi: 10.3390/ma16155281.
This study assessed the modification effects of zirconia-based nanopowder and cement contents and curing age on the mechanical properties of silty soil. The orthogonal test design was applied to derive the best combination of each influencing factor using the lateral unconfined compressive test. Two-dimensional particle flow code (PFC) distinct-element modeling software was also used to fit and analyze the test curves, as well as simulate the triaxial test with the derived parameters. The test results reveal the optimal combination of 20% cement, 2% zirconia-based nanopowder, and 28 d curing age. The extreme difference table was used to plot the orthogonal trend diagram, and cement content was found to be the most significant factor controlling the silty soil strength. The maximum peak stress was 2196.33 kPa under the optimum combination of factors, which could be obtained through the index estimation, and these results were experimentally verified. According to the predicted strength envelope, the cohesive force of nanopowder-cement-modified silty soil in the optimal proportion was 717.11 kPa, and the internal friction angle was 21.05°. Nano zirconium dioxide will accelerate the hydration reaction of cement, the flocculent structure produced by the hydration of cement and soil particles connected to each other, play the role of filling and anchoring, and thus increase the strength of the nano-zirconium dioxide, and the optimal dosage of nano-zirconium dioxide is 2%.
本研究评估了氧化锆基纳米粉末、水泥含量和养护龄期对粉质土力学性能的改性效果。采用正交试验设计,通过侧向无侧限抗压试验得出各影响因素的最佳组合。还使用二维颗粒流代码(PFC)离散元建模软件对试验曲线进行拟合和分析,并使用推导参数模拟三轴试验。试验结果揭示了水泥含量20%、氧化锆基纳米粉末含量2%和养护龄期28天的最佳组合。利用极差表绘制正交趋势图,发现水泥含量是控制粉质土强度的最显著因素。在因素最佳组合下,最大峰值应力为2196.33 kPa,可通过指标估算得到,且这些结果得到了试验验证。根据预测的强度包络线,最佳比例的纳米粉末-水泥改性粉质土的黏聚力为717.11 kPa,内摩擦角为21.05°。纳米二氧化锆会加速水泥的水化反应,水泥水化产生的絮凝结构与土颗粒相互连接,起到填充和锚固作用,从而提高纳米二氧化锆的强度,纳米二氧化锆的最佳用量为2%。