纳米二氧化硅改性泥岩基底对露天矿排土场边坡稳定性的影响机制

    Influence mechanism of slope stability of open-pit mine dumps with Nano-SiO2-modified mudstone base

    • 摘要: 为揭示纳米二氧化硅(NS)改性对露天矿排土场泥岩基底强度演化与边坡稳定性的影响机制,以黑龙江宝清露天煤矿排土场泥岩为研究对象,系统开展不同NS掺量(0%、1%、2%、3%、4%)条件下的液塑限、无侧限抗压强度(UCS)、直剪、干湿循环及压汞微观结构试验,并结合数值模拟分析改性弱层对坡体变形与稳定性的作用规律。研究结果表明:随NS掺量增加,泥岩UCS先升后降,3%时强度提升最显著,较原状样提高约4.5倍;黏聚力c由21.8 kPa增至43.2 kPa,提升约98%,而内摩擦角φ仅小幅上升。干湿循环作用下,各组样品强度均呈线性衰减,4%掺量样品的强度保持率最高,达74.3%,表明纳米材料显著增强了泥岩的结构耐久性。数值模拟结果表明,改性后坡体最大水平位移降低约30%,安全系数由1.153提升至1.345,边坡由“基本稳定”转为“稳定状态”。NS通过“物理填充-化学胶结-结构重构”协同作用,显著改善泥岩孔隙结构与抗剪特性,为露天矿排土场边坡长期稳定与绿色加固提供了理论依据与工程支撑。

       

      Abstract: To clarify the mechanism of nano-SiO2(NS) modification on the strength evolution and slope stability of mudstone in an open-pit mine dump, this study systematically investigates mudstone from the Baqing Coal Mine under different NS contents (0%, 1%, 2%, 3%, 4%). Tests include liquid-plastic limits, unconfined compressive strength (UCS), direct shear, wet-dry cycles, and mercury intrusion porosimetry. Numerical simulations are used to analyze how the modified weak layer influences slope deformation and stability. Results show that UCS first increases and then decreases with NS content, peaking at 3% NS-approximately 4.5 times that of untreated samples. Cohesion c increases by about 98%, from 21.8 kPa to 43.2 kPa, while the internal friction angle φ rises only slightly. Under wet-dry cycles, strength decreases linearly across all samples, yet the 4% NS mix exhibits the highest strength retention(74.3%), indicating enhanced durability. Numerical simulations reveal that the modified slope experiences about 30% less horizontal displacement, and the safety factor improves from 1.153 to 1.345, shifting the slope from “marginally stable” to “stable”. NS enhances mudstone through synergistic effects: physical filling, chemical cementation, and structural reconstruction. This study offers theoretical and engineering support for the long-term stability and eco-friendly reinforcement of mine dumps.

       

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