Chen Guan, Ye Yicheng, Yao Nan, Fu Fanghui, Hu Nanyan, Zhang Zhen
School of Resources and Environmental Engineering, Wuhan University of Science and Technology, Wuhan, 430081, China.
Industrial Safety Engineering Technology Research Center of Hubei Province, Wuhan, 430081, China.
Environ Sci Pollut Res Int. 2022 Nov;29(53):80109-80122. doi: 10.1007/s11356-022-23394-x. Epub 2022 Oct 3.
In order to study the effect of backfill aggregate particle size on the compressive strength and failure mode of cemented backfill, uniaxial compression tests were carried out on seven kinds of cemented backfills with different particle size gradations. By analyzing the AE characteristics during the failure process of the backfill, the damage evolution mechanism of the cemented backfill with different particle size gradations was discussed. The test results show that with the increase of the Talbot gradation index n, the compressive strength of the backfill specimens first increases and then decreases, and the failure mode gradually changes from shear failure to tensile failure. With the increase of particle size gradation, the particle size of aggregate increases, the interface between aggregate and cement matrix is more likely to be fractured, and the characteristic parameters of acoustic emission are more active. During the failure process of backfill, the AE energy rate increases rapidly in the plastic development stage, and reaches maximum value before and after the peak stress, which can be used as the precursor to judge the failure of waste rock cemented backfill. According to the test results, the damage model and constitutive equations of waste rock cemented backfill with different Talbot particle size gradations are established, which can provide engineering guidance for filling mined-out areas with waste rock to ensure safe production of mines.
为研究充填骨料粒径对胶结充填体抗压强度和破坏模式的影响,对7种不同粒径级配的胶结充填体进行了单轴压缩试验。通过分析充填体破坏过程中的声发射特性,探讨了不同粒径级配胶结充填体的损伤演化机制。试验结果表明,随着塔尔伯特级配指数n的增大,充填体试件的抗压强度先增大后减小,破坏模式逐渐由剪切破坏转变为拉伸破坏。随着粒径级配的增大,骨料粒径增大,骨料与水泥基体间的界面更容易发生断裂,声发射特征参数更加活跃。在充填体破坏过程中,声发射能量率在塑性发展阶段迅速增大,并在峰值应力前后达到最大值,可作为判断废石胶结充填体破坏的前兆。根据试验结果,建立了不同塔尔伯特粒径级配废石胶结充填体的损伤模型和本构方程,可为利用废石充填采空区以保障矿山安全生产提供工程指导。