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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:冻融循环下完整硬岩物理指标变化及三轴压缩试验研究

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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:长期以来,岩石霜冻风化的实验研究一直集中在软岩石至中硬度岩石上,而完整硬岩石的研究相对较少。结合具体工程项目,以细砂岩(UCS = 114.8 Mpa)和粗砂岩(UCS = 104.1 Mpa)为完整硬岩的代表,研究了不同冻融循环下的物理参数和三轴压缩力学特性。这篇报告。结果表明,在冻融循环下,完整的硬岩仍具有明显的衰减作用。两种砂岩的孔隙度增加,并且冻融循环具有良好的线性拟合。在相同的围压下,两砂岩的三轴抗压强度随着冻融循环的增加而降低,并表现出指数衰减关系。摩擦角为常数,并且内聚力C与冻融循环之间具有良好的指数衰减关系。相关结论可为硬岩工程提供参考。

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