Mechanical properties and crack evolution of interbedded cemented tailings backfill

被引:0
|
作者
Tang Y.-N. [1 ,2 ]
Fu J.-X. [1 ,2 ]
Song W.-D. [1 ,2 ]
Zhang Y.-F. [1 ,2 ]
机构
[1] School of Civil and Resources Engineering, University of Science and Technology Beijing, Beijing
[2] Key Laboratory of High-Efficient Mining and Safety of Metal Mines, Ministry of Education, University of Science and Technology Beijing, Beijing
关键词
Crack evolution law; Interbedded cemented tailings backfill; Stage subsequent filling; Uniaxial compressive strength;
D O I
10.13374/j.issn2095-9389.2019.12.29.003
中图分类号
学科分类号
摘要
In the process of filling a large-scale goaf, due to the limitations in the capacity of the mixing tank, it is difficult to completely filling the goaf all once, but multiple fillings of a goaf can easily produce a layered structure in the cemented tailings backfill. This layered structure has a significant effect on the mechanical properties of the cemented tailings backfill. To analyze the influence of these structural characteristics on the mechanical properties and evolution of cracks in cemented tailings backfill, the layered cemented tailings backfill specimens with height ratios of 0.2, 0.4, 0.6 and 0.8, and cement-tailing ratios of 1:4, 1:6, 1:8 and 1:10 were made, and then the uniaxial compression test was carried out by using a GAW-2000 servo test system, and finally the crack distribution inside the cemented tailings backfill were analyzed by using 2D particle flow software(PFC-2D). The results show that: (1) the relationship between the uniaxial compressive strength and the height ratio of the layered backfill can be represented by an exponential function, and the relationship between the uniaxial compressive strength and the cement-tailing ratio can be represented by a polynomial function. The relationship between the elastic modulus and the height ratio and the cement-tailing ratio can be represented by a polynomial function. The uniaxial compressive strength and the elastic modulus are found to decrease with increase in the height ratio, and increase with increase in the cement-tailing ratio, with both being more sensitive to the cement-tailing ratio. (2) The evolution curve of cracks in the cemented tailings backfill increases gradually at first, and then rapidly increases to about 80% of the peak strength, whereby the larger is the cement-tailing ratio, the lager is the height ratio. Furthermore, the earlier the fast-rising inflection point occurs, the more easily is the backfill specimen damaged, and the curve begins to decline rapidly after exceeding the peak strength. (3) The layered backfill fails primarily by mainly shear failure, tensile failure and conjugate shear failure, and the failure is mainly concentrated in the middle weak layer. The larger is the height ratio, the denser are the cracks, the bigger is the cement-tailing ratio, and the more easily the cracks evolve to both ends. Copyright ©2020 Chinese Journal of Engineering. All rights reserved.
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页码:1286 / 1298
页数:12
相关论文
共 27 条
  • [1] Liu G S., Required Strength Model of Cemented Backfill with Research on Arching Mechanism Considering Backfill-Rock Interaction, (2017)
  • [2] Chen X, Shi X Z, Zhou J, Et al., Effect of overflow tailings properties on cemented paste backfill, J Environ Manage, 235, (2019)
  • [3] Yin S H, Liu J M, Chen W, Et al., Optimization of the effect and formulation of different coarse aggregates on performance of the paste backfill condensation, Chin J Eng, 42, 7, (2020)
  • [4] Li Y, Zhu J C, Wu Y S, Et al., Research of Mechanics Properties of PVA Fiber Cementitions Composites, J Beijing Univ Technol, 44, 4, (2018)
  • [5] Xu W B, Hou Y B, Song W B, Et al., Resistivity and thermal infrared precursors associated with cemented backfill mass, J Cent South Univ, 23, 9, (2016)
  • [6] Xu W B, Tian X C, Qiu Y, Et al., Experiment of the resistivity characteristic of cemented backfill mass during the whole consolidation process, J China Univ Min Technol, 46, 2, (2017)
  • [7] Cheng A P, Zhang Y S, Dai S Y, Et al., Space-time evolution of acoustic emission parameters of cemented backfill and its fracture prediction under uniaxial compression, Rock Soil Mech, 40, 8, (2019)
  • [8] Cheng A P, Dai S Y, Zhang Y S, Et al., Study on size effect of damage evolution of cemented backfill, Chin J Rock Mech Eng, 38, (2019)
  • [9] Li C H, Wei X M, Zhang L X, Et al., Energy matching relationship between cemented backfill body and ore and determination of curing time, J Min Saf Eng, 34, 6, (2017)
  • [10] Wei X M, Guo L J, Li C H, Et al., Study of space variation law of strength of high stage cemented backfill, Rock Soil Mech, 39, (2018)