Advance Search
CHU Xiao-wei J∪ Wen-jun WU Yong-zheng, . Research on Slippage Mechanism of Single Anchoring Device in Mine Small Diameter Pre -Stress Anchor[J]. COAL SCIENCE AND TECHNOLOGY, 2014, (12).
Citation: CHU Xiao-wei J∪ Wen-jun WU Yong-zheng, . Research on Slippage Mechanism of Single Anchoring Device in Mine Small Diameter Pre -Stress Anchor[J]. COAL SCIENCE AND TECHNOLOGY, 2014, (12).

Research on Slippage Mechanism of Single Anchoring Device in Mine Small Diameter Pre -Stress Anchor

More Information
  • Available Online: April 02, 2023
  • Published Date: December 24, 2014
  • According to the phenomena of the anchoring slippage and other unreliable anchoring occurred in the anchoring device of the anchor in underground mi ne, in order to get the slippage causes of the anchoring device and to improve the anchoring relibility of the anchor, the dynamics analysis, lab analysis method and ot her methods were applied to get the main factors of the anchor device slippage and the major materials of the anchors applied to the coal mine were preliminarily invest igated. The analysis results showed that hardness difference between the anchor and shim irrational, diameter error of the anchor too high, strength and hardness of th e anchor too high, critical distance irrational and anchoring device quality poor would be main factors to influence the reliability of the anchoring. Therefore, an effective reference index to reduce the slippage probability and to improve the reliability of the anchor should have hardness difference between the anchor and shim over HRC1 0, the anchor diameter error should not be over +0. 400. 20 mm, the actual strength of the anchor should be lower than the tensile strength and aspace limited distance should be a shim exposed distance plus a retuned distance of the anchoring device.
  • Related Articles

    [1]HE Jie, CHENG Peng, WU Le, FAN JunPing. Evolution laws and control technology of near and far stress field in hard roof mining roadway[J]. COAL SCIENCE AND TECHNOLOGY, 2024, 52(12): 1-11. DOI: 10.12438/cst.2024-0586
    [2]ZHANG Jiwei, LI Fangzheng, YU Xinhao, DING Hang, KONG Linghui. Research on evolution characteristics of early-age temperature-stress field of inner lining at deep frozen shaft[J]. COAL SCIENCE AND TECHNOLOGY, 2021, 49(2): 69-76. DOI: 10.13199/j.cnki.cst.2021.02.009
    [3]REN Yanfang. Analysis of dynamic stress characteristics and surrounding rock structure in shallow-buried longwall mining face[J]. COAL SCIENCE AND TECHNOLOGY, 2020, 48(8): 50-56.
    [4]JIANG Pengfei. Research on evolution of integrated stress field of surrounding rock of mining while digging opposite roadway in deep and ultra-thick coal seam[J]. COAL SCIENCE AND TECHNOLOGY, 2020, 48(8): 26-36.
    [5]HAN Gang, LI Xudong, QU Xiaocheng, ZHU Lei, LIU Lixin. Study on correlation between spatial fracturing of overlying strata and distribution of mining stress field in stope[J]. COAL SCIENCE AND TECHNOLOGY, 2019, (2).
    [6]HUO Bingjie, FAN Zhanglei, XIE Wei, DUAN Zhihua, LU Yangbo, JING Xuedong. Stress field analysis and study on dynamic pressure mechanism under goaf of shallow depth and closed distance room and pillar mining[J]. COAL SCIENCE AND TECHNOLOGY, 2019, (1).
    [7]FENG Youliang. Study on surrounding rock stress distribution characteristics andsidewall failure mechanism of seam gateway[J]. COAL SCIENCE AND TECHNOLOGY, 2018, (1).
    [8]JIN Hongwei XIAO Qiao LI Shugang XU Gang, . Analysis on representation of stress field structure of roadway surrounding rock and its failure factor[J]. COAL SCIENCE AND TECHNOLOGY, 2017, (9).
    [9]Liu Yinzhi Lyu YouchangWang Yingwei, . Study on surrounding rock stress distribution and gas flow law of mining roadway in deep mine[J]. COAL SCIENCE AND TECHNOLOGY, 2016, (6).
    [10]Study on Coal Body Stress Distribution Based on Kriging Interpolation Method[J]. COAL SCIENCE AND TECHNOLOGY, 2013, (2).
  • Cited by

    Periodical cited type(4)

    1. 鲁杰,张松,杨志强,王劭琛,魏征,刘泽. 基于WOA-DBN模型的支架载荷预测研究分析. 矿业研究与开发. 2025(03): 222-228 .
    2. 晏旭龙,邬忠虎,蓝宝锋,姜海申,余俊,杨先超. 层理倾角与尺寸效应耦合作用下页岩致裂的数值模拟研究. 金属矿山. 2024(02): 137-143 .
    3. 秦长坤,赵武胜,贾海宾,高未己,陈郁川,于万泉,梁记忠,陈卫忠. 基于模态分解和深度学习的煤矿微震时序预测方法. 煤炭学报. 2024(09): 3781-3797 .
    4. 张冬冬,智奥龙,李震,张振国,李鹏,秦其智. 结构性效应对层状岩体力学特性与破坏特征的影响. 煤炭科学技术. 2022(04): 124-131 . 本站查看

    Other cited types(0)

Catalog

    Article views (831) PDF downloads (301) Cited by(4)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return