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Triaxial compression behaviour of gangue solid wastes under effects of particle size and confining pressure

机译:粒度和围压对石固体废弃物三轴压缩行为的影响

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Underground coal mining leads to environmental problems such as gangue pollution, surface subsidence and soil erosion. etc. Solid backfilling coal mining (SBCM) can control the strata movement, reducing gangue discharge and environmental pollution in mining areas. Gangue solid wastes (GSW) are backfilled into the goal space as the supports for the overburden strata in solid backfilling coal mining. In this case, GSW are under triaxial compression. The deformation characteristics of the GSW under this loading condition are the key factors determining the control efficiency of strata movement and surface subsidence. The influence of the particle size grade and the confining pressure condition on the deformation and breakage characteristics of the GSW is studied based on large-scale triaxial compression tests in this paper. Also, the effect of partide breakage on the deformation of the GSW is revealed. The results indicate that in the triaxial compression process, the GSW exhibits strain hardening characteristics and volume decrease under compressive loading. The maximum load-beating stress is more sensitive to the confining pressure condition but less sensitive to the particle size grade. The maximum load-bearing stress increases linearly with the confining pressure. Particle breakage of the GSW is notably influenced by the particle size grade but almost independent of the confining pressure condition. The Si specimen with a reasonable proportion has the minimum relative breakage index, while the S3 specimen that mainly contains large particles has the maximum relative breakage index. The research outcomes are significant to the understanding of the mechanical characteristics of GSW, the selection and preparation of the backfilling materials in the field practices and the ensurence of the backfilling efficiency. (C) 2019 Elsevier B.V. All rights reserved.
机译:地下煤矿开采会导致环境问题,例如煤pollution石污染,地表沉陷和土壤侵蚀。固体回填煤开采(SBCM)可以控制地层运动,减少矿区的脉石排放和环境污染。煤ue石固体废物(GSW)被回填到目标空间中,作为固体回填煤炭开采中覆盖层的支撑。在这种情况下,GSW处于三轴压缩状态。 GSW在这种载荷条件下的变形特性是决定地层运动和地表沉陷控制效率的关键因素。本文基于大型三轴压缩试验,研究了粒度等级和围压条件对GSW变形和断裂特性的影响。此外,揭示了部分破碎对GSW变形的影响。结果表明,在三轴压缩过程中,GSW表现出应变硬化特性,在压缩载荷下体积减小。最大的载荷冲击应力对约束压力条件更为敏感,但对粒度等级则较不敏感。最大承压应力随围压线性增加。 GSW的颗粒破碎明显受粒度等级的影响,但几乎与围压条件无关。合理比例的Si样品具有最小的相对破损指数,而主要包含大颗粒的S3样品具有最大的相对破损指数。研究成果对于理解GSW的机械特性,现场实践中回填材料的选择和制备以及确保回填效率具有重要意义。 (C)2019 Elsevier B.V.保留所有权利。

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