Zhang Xuqun, Li Zhaofeng, Tai Pei, Zeng Qing, Bai Qishan
Guangzhou Metro Design & Research Institute Co., Ltd., Guangzhou 510080, China.
School of Civil and Environmental Engineering, Harbin Institute of Technology, Shenzhen 518055, China.
Materials (Basel). 2022 May 6;15(9):3337. doi: 10.3390/ma15093337.
In cemented sand, the influences of the sampling factors (i.e., the curing time, cement-sand ratio, and initial void ratio) on the triaxial shear behavior were investigated using discrete element method. Cemented sand samples with different initial conditions were prepared and subjected to the consolidated drained triaxial shearing test. In the simulations, the peak strength, residual strength, and pre-peak stiffness of cemented sand were enhanced by increasing the curing time and cement-sand ratio, and the enhancements could be explained by the increases in bond strength and bond number. Resulting from the increases of these two sampling factors, bond breakage emerged at a greater axial strain but lower intensity. However, some uncommon phenomena were generated; that is, the contractive but strain-softening response occurred in the sample with a curing time of 3 days, and the shear band and the strain-hardening behavior coexisted in the sample with a cement-sand ratio of 1%. The peak strength and pre-peak stiffness were also enhanced by decreasing the initial void ratio, more distinctly than by increasing the curing time and cement-sand ratio. However, the residual strength, bond breakage, and failure pattern with the persistence of shear band were insensitive to this change.
在胶结砂中,采用离散元方法研究了取样因素(即养护时间、水泥砂比和初始孔隙比)对三轴剪切行为的影响。制备了具有不同初始条件的胶结砂试样,并进行了固结排水三轴剪切试验。在模拟中,通过增加养护时间和水泥砂比,胶结砂的峰值强度、残余强度和峰值前刚度得到提高,且这些提高可通过粘结强度和粘结数量的增加来解释。由于这两个取样因素的增加,粘结破坏在更大的轴向应变下出现,但强度较低。然而,产生了一些不寻常的现象;即,养护时间为3天的试样出现了收缩但应变软化的响应,水泥砂比为1%的试样中剪切带和应变硬化行为共存。通过降低初始孔隙比,峰值强度和峰值前刚度也得到提高,且比增加养护时间和水泥砂比更为明显。然而,残余强度、粘结破坏以及具有剪切带持续性的破坏模式对这种变化不敏感。