干湿循环作用下不同含水率砂岩力学及声发射特性研究
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1.中交路桥建设有限公司;2.重庆市铁路(集团)有限公司;3.重庆大学

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留学人员回国创业创新支持计划(cx2021048)


Study on the Mechanical Properties and Acoustic Emission Characteristics of Sandstone with Different Water Contents under Wet-Dry Cycles
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1.China Communications Construction Company Limited;2.Chongqing Railway Group CO., LTD;3.Chongqing University

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    摘要:

    本研究旨在探讨干湿循环作用下不同含水率砂岩的力学性能及声发射特性,以重庆某地铁车站隧道工程围岩中的砂岩为研究对象。试样分别经历了0次、10次、20次和30次干湿循环处理,通过控制砂岩的含水率(干燥、1.2%、2.4%、3.6%、饱和)和干湿循环次数,开展单轴压缩试验与声发射试验。同时,利用扫描电子显微镜(SEM)对不同干湿循环次数下砂岩的微观结构进行分析。研究结果表明,随着干湿循环次数的增加,砂岩孔隙结构裂隙增多及晶体颗粒脱落等微观劣化现象更加明显,砂岩的单轴抗压强度呈下降趋势,且含水率的升高对砂岩强度的影响更为显著。干湿循环次数和含水率的增加显著降低了砂岩破坏过程中的声发射活动水平,并使其破碎程度减轻,反映出内部微裂隙扩展和能量释放的衰弱。干湿循环和含水率对砂岩劣化机制具有协同作用。

    Abstract:

    This study aims to investigate the mechanical properties and acoustic emission characteristics of sandstone with different moisture contents under the action of wet-dry cycles. The sandstone samples were sourced from the surrounding rock of a subway station tunnel project in Chongqing. The samples underwent 0, 10, 20, and 30 wet-dry cycles, and the tests were conducted by controlling the moisture content of the sandstone at different cycle stages (dry, 1.2%, 2.4%, 3.6%, and saturated). Uniaxial compression tests and acoustic emission monitoring were performed, along with Scanning Electron Microscope (SEM) analysis to examine the microstructure of sandstone after different numbers of wet-dry cycles. The results indicate that as the number of wet-dry cycles increases, the pore structure of the sandstone becomes more complex, with increased cracks and the detachment of crystal particles, leading to pronounced microstructural deterioration. The uniaxial compressive strength of the sandstone decreases, and the impact of moisture content on strength becomes more significant. Additionally, the increase in wet-dry cycles and moisture content significantly reduces the level of acoustic emission activity during the failure process, while also mitigating the degree of fragmentation, reflecting the weakening of internal microfracture expansion and energy release. The study reveals a synergistic effect of wet-dry cycles and moisture content on the deterioration mechanism of sandstone.

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  • 收稿日期:2024-10-08
  • 最后修改日期:2025-02-24
  • 录用日期:2025-03-05
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