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A study on the physical index change and triaxial compression test of intact hard rock subjected to freeze-thaw cycles

机译:完整硬岩体对冻融循环的物理指数变化和三轴压缩试验研究

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摘要

For a long time, experimental studies on frost weathering of rock has been concentrated on soft rock to medium-hardness rock, and research on intact hard rock is relatively less common. Combined with specific engineering projects, taking fine sandstone (UCS = 114.8 Mpa) and coarse sandstone (UCS = 104.1 Mpa) as representatives for intact hard rock, the physical parameters and the triaxial compression mechanical characteristics subjected to different freeze-thaw cycles are studied in this paper. The results show that under freeze-thaw cycling, the intact hard rock still has obvious attenuation. The porosity of the two sandstones increases, and there is a good linear fit with the freeze-thaw cycles. Under the same confining pressure, the triaxial compressive strength of the two sandstones decreases with an increase in freeze-thaw cycles, and an exponential decay relation is expressed. The friction angle fremains constant, and there is a good exponential decay relationship between the cohesive force C and the freeze-thaw cycles. The related conclusions can provide some references for hard rock engineering.
机译:很长一段时间,对岩石霜风化的实验研究已经集中在软岩体上至中硬度岩石,并且对完整硬岩的研究相对不太常见。结合特定的工程项目,采用精细砂岩(UCS = 114.8MPa)和粗砂(UCS = 104.1MPa)作为完整硬岩的代表,研究了对不同的冻融循环进行的物理参数和三轴压缩机械特性进行了研究这篇报告。结果表明,在冻融循环下,完整的硬岩仍然明显衰减。两个砂岩的孔隙率升高,并且具有冻融循环的良好线性配合。在相同的狭窄压力下,两个砂岩的三轴抗压强度随着冻融循环的增加而降低,表达了指数衰减关系。摩擦角法恒定,并且在粘性力C和冻融周期之间存在良好的指数衰减关系。相关结论可以为硬岩工程提供一些参考。

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