Tan Yuye, Li Yiding, Yu Xin, Deng Yuchao, Song Zepu, Kou Yunpeng
State Key Laboratory of High-Efficient Mining and Safety of Metal Mines of Ministry of Education, University of Science and Technology Beijing, Beijing, 100083, China.
School of Civil and Resources Engineering, University of Science and Technology Beijing, Beijing, 100083, China.
Sci Rep. 2025 Jan 2;15(1):108. doi: 10.1038/s41598-024-83816-3.
In this study, the spatial distribution of the mechanical strength of ultra-fine tailings cemented paste backfill (UCPB) in underground stopes was examined, and the micro-mechanism responsible for differences in spatial strength performance via changes in particle deposition was elucidated. To better understand this phenomenon, we constructed a similar backfilling stope model using the ultra-fine tailings of a gold mine. We manufactured specimens at different spatial locations and conducted a novel series of tests, including uniaxial compressive strength, shear strength, and conventional triaxial tests, to obtain the strength parameters in different spatial distributions. The strength parameters for the different UCPB locations in this model were revealed and examined along with the original pore and particle size distributions. Computer tomography (CT) and scanning electron microscopy (SEM) observations before and after the UCPB failed revealed that the particle deposition effect at different positions was the primary cause of the size effect. The strength distribution pattern demonstrated that the UCPB material has an apparent spatial effect. Consequently, considering the position relationship between the stope and filling mouth is crucial when designing the strength of adjacent mining rooms. This research may guide both backfill study and design.
在本研究中,对地下采场中超细尾矿胶结膏体充填体(UCPB)的力学强度空间分布进行了研究,并阐明了通过颗粒沉积变化导致空间强度性能差异的微观机制。为了更好地理解这一现象,我们利用某金矿的超细尾矿构建了一个相似的充填采场模型。我们在不同空间位置制作了试样,并进行了一系列新颖的试验,包括单轴抗压强度、抗剪强度和常规三轴试验,以获取不同空间分布下的强度参数。揭示并研究了该模型中不同UCPB位置的强度参数以及原始孔隙和粒度分布。UCPB破坏前后的计算机断层扫描(CT)和扫描电子显微镜(SEM)观察表明,不同位置的颗粒沉积效应是尺寸效应的主要原因。强度分布模式表明UCPB材料具有明显的空间效应。因此,在设计相邻采场的强度时,考虑采场与充填口之间的位置关系至关重要。本研究可为充填研究和设计提供指导。