煤炭工程 ›› 2026, Vol. 58 ›› Issue (2): 160-168.doi: 10.11799/ce202602020

• 研究探讨 • 上一篇    下一篇

冻融循环与分级循环加卸载作用下红砂岩疲劳特性及能量演化研究

刘党党,薛君君,徐红亮,陈 谋,苏旭刚,张 军,颜恭彬,何 鑫   

  1. 1. 陕西德源府谷能源有限公司三道沟煤矿,陕西 榆林 719407

    2. 中煤科工集团重庆研究院有限公司,重庆 400039

  • 收稿日期:2025-07-22 修回日期:2025-09-18 出版日期:2026-02-15 发布日期:2026-03-16
  • 通讯作者: 颜恭彬 E-mail:2430317404@qq.com

Fatigue characteristics and energy evolution of red sandstone under freeze-thaw cycling and staged cyclic loading-unloading

  • Received:2025-07-22 Revised:2025-09-18 Online:2026-02-15 Published:2026-03-16
  • Contact: Gong BinYAN E-mail:2430317404@qq.com

摘要:

露天煤矿边坡岩体长期经受冻融循环和循环加卸载的协同作用。为了从能量分析的角度进一步揭示冻融风化对砂岩损伤的影响,对经受02040 60次冻融循环的红砂岩试件进行了分级循环加卸载试验,利用波速下降率和孔隙率增长率量化了试件的冻融循环损伤,然后计算并分析了循环加卸载试验下每个循环的能量密度以及声发射能量。结果表明:①红砂岩的损伤随冻融循环次数的增大而更加严重,经过60次冻融循环后,波速降低50.83%,孔隙率提高34.75%。②红砂岩试件的疲劳应力-应变曲线呈“稀疏—紧密—稀疏”趋势,红砂岩的疲劳强度从未冻融状态下的80MPa降低至60次冻融循环后的40MPa。③红砂岩试件的总能量密度和弹性能量密度随着循环加卸载级数的增加呈“阶梯式”增加,在达到疲劳破坏之前,大部分输入能转化为弹性能,而耗散能的波动范围较小。④声发射能量时间序列特征可以有效地表征红砂岩在冻融循环和循环加卸载协同作用下的破坏过程,声发射能量的整体水平在红砂岩失稳破坏发生之前急剧增加。⑤冻融循环处理产生的预损伤会加剧红砂岩试件在循环加卸载初期的微裂纹扩展,使得损伤更容易积累。研究结果可为寒冷地区露天煤矿红砂岩边坡的长期稳定性评估与防控提供理论依据。

关键词: 冻融循环, 循环加卸载, 劣化特性, 能量演化, 声发射

Abstract:

Rock slopes in open-pit coal mines are subjected to the long-term coupled effects of freeze-thaw cycles and cyclic loading-unloading. To further understand the impact of freeze-thaw weathering on sandstone damage from an energy analysis perspective, stepped cyclic loading-unloading tests were conducted on red sandstone specimens subjected to 0, 20, 40, and 60 freeze-thaw cycles. The freeze-thaw damage to the specimens was quantified using the wave velocity reduction rate and the porosity growth rate. The energy density per cycle and acoustic emission energy during the cyclic loading-unloading tests were then calculated and analyzed. The results indicate that: (1) The damage to the red sandstone intensified with increasing freeze-thaw cycles. After 60 cycles, the wave velocity decreased by 50.83% and the porosity increased by 34.75%. (2) The fatigue stress-strain curves of the red sandstone specimens exhibited a "sparse-dense-sparse" trend. The fatigue strength decreased from 80 MPa? for the unfrozen-thawed state to 40 MPa after 60 freeze-thaw cycles. (3) The total energy density and elastic energy density of the red sandstone specimens showed a "step-like" increase with rising cyclic loading-unloading levels. Prior to fatigue failure, the majority of the input energy was converted into elastic energy, while the dissipation energy fluctuated within a relatively small range. (4) The characteristics of the acoustic emission energy time series can effectively characterize the failure process of red sandstone under the coupled action of freeze-thaw cycles and cyclic loading-unloading. The overall level of acoustic emission energy increased sharply before the instability and failure of the red sandstone occurred. (5) Pre-existing damage induced by freeze-thaw cycles exacerbated microcrack propagation in the red sandstone specimens during the initial stages of cyclic loading-unloading, making damage accumulation more prone to occur. These findings provide a theoretical foundation for assessing and preventing the long-term stability of red sandstone slopes in open-pit coal mines located in cold regions.

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