Advance Search
ZHANG Zhantao. Mechanical characteristics and engineering application of prestressed full-length grouting anchor cable[J]. COAL SCIENCE AND TECHNOLOGY, 2022, 50(4): 99-105.
Citation: ZHANG Zhantao. Mechanical characteristics and engineering application of prestressed full-length grouting anchor cable[J]. COAL SCIENCE AND TECHNOLOGY, 2022, 50(4): 99-105.

Mechanical characteristics and engineering application of prestressed full-length grouting anchor cable

Funds: 

Science and Technology Innovation Fund of middling coal Mining Research Institute (2020KCMS03); National Natural Science Foundation of China (52004126)

More Information
  • Available Online: April 02, 2023
  • Published Date: April 24, 2022
  • In order to study the advantages of prestressed full-length grouting anchor cable compared with end anchor cable in surrounding rock reinforcement, the distribution characteristics of axial force and shear stress of anchor cable were analyzed based on the neutral point theory;the mechanical model of the full-length grouting prestressed anchor cable was established to deduce the analytical solution of the surface displacement of any point of the surrounding rock of the roadway under elastic, elasto-plastic and plastic states;the control effect of prestressed full-length grouting anchor cable on the radial and tangential deformation of surrounding rock was studied. Taking 9# connecting lane of No.33042 lane in a coal mine of Jinmei Group as the engineering background, the support effect of conventional anchor cable and prestressed full-length grouting anchor cable without and under the influence of mining was analyzed. The research results show that the deformation of surrounding rock near the roadway surface is greater than that of anchor cable, and the shear stress on the surface of the anchor body points to the roadway free surface. In the deep part of surrounding rock, the deformation of surrounding rock is less than that of anchor cable, and the shear stress of anchor solid points to the deep part of surrounding rock, and the shear stress of both sides is opposite. Axial tension of anchor solid shows curve distribution, and it is the largest at the neutral point;under the influence of mining, the deformation trend of ordinary anchor cable and prestressed full-length grouting anchor cable support roadway is the same. The deformation of the roadway is severe at the beginning of excavation, and then tends to be gentle. The stress full-length grouting anchor cable can reduce the approaching amount of the roof and floor by 50%;during the mining impact period, under the support of the pre-stressed full-length grouting anchor cable, the approaching amount of the roof and bottom plate and the two sides are reduced by 21.1% and 22.1% respectively, the stress of anchor cable is generally increased, and the change is small, and there is no anchor cable breaking phenomenon;compared with the end anchor, the prestressed full-length grouting anchor cable has obvious advantages in the control of the radial and tangential deformation of surrounding rock, and it can solve the problem of anchor cable breaking caused by the shear action of composite roof roadway.
  • Related Articles

    [1]FU Yukai, WU Yongzheng, ZHOU Penghe, SUN Zhuoyue, LI Junchen. Dynamic mechanical characteristics and engineering application of high elongation anchor cable[J]. COAL SCIENCE AND TECHNOLOGY, 2024, 52(2): 49-62. DOI: 10.12438/cst.2023-0093
    [2]LI Yongliang, YANG Renshu, WEN Mingrui, LU Shaojie, LI Wenkai, HUANG Qiang. Stressed characteristics and regional anchoring mechanism of cable bolts in coal mine roadway roof[J]. COAL SCIENCE AND TECHNOLOGY, 2022, 50(5).
    [3]HU Bin, WANG Zhichao, ZHANG Xiao. Research on application of concrete pillar in conjunction with anchored bolt and cable support system[J]. COAL SCIENCE AND TECHNOLOGY, 2022, 50(4): 91-98.
    [4]YANG Yonggang, LI Shihui, LI Yanqing, LIU Xiaolei, YU Dajun. Key techniques for surrounding rock reconstruction and large deformation control under deep and multi-purpose roadway conditions[J]. COAL SCIENCE AND TECHNOLOGY, 2020, 48(8): 37-43.
    [5]LI Pengbo, SONG Yang, HAN Xiangang, YANG Qing. Study on occurrence mechanism of rock burst based on dynamicdilatancy of surrounding rock[J]. COAL SCIENCE AND TECHNOLOGY, 2018, (11).
    [6]Wang Zhuchun Li Junwei, . Study on deformation failure mechanism and support technology of mine roadway with soft and weak surrounding rock in deep mine[J]. COAL SCIENCE AND TECHNOLOGY, 2017, (4).
    [7]Li Shugang Cheng Xiaoyu Liu Chao Zhang Tianjun Xing Lijie Wang Hui, . Research on technology of anchor cable supporting and grouting reinforcement for dynamic pressurized tunnel with crushed surrounding rock[J]. COAL SCIENCE AND TECHNOLOGY, 2016, (1).
    [8]Kang Hongpu Yang Jinghe Jiang Pengfei, . Tests and analysis on mechanical properties for cable bolts[J]. COAL SCIENCE AND TECHNOLOGY, 2015, (6).
    [9]REN Zhong-yuan. Technology of Bolt and Cable and Bolt- Grouting Coupling Support in Deep High Stress and Soft Rock Roadway[J]. COAL SCIENCE AND TECHNOLOGY, 2013, (10).
    [10]Full Anchor Support Technology of Mine Roadway with Soft Roof in Stress Abnormal Zone[J]. COAL SCIENCE AND TECHNOLOGY, 2012, (6).
  • Cited by

    Periodical cited type(15)

    1. 范任重. 高应力大采高工作面回采巷道围岩控制技术. 西部探矿工程. 2025(02): 83-87+91 .
    2. 闫学忠. 非中空锚索高预应力全长锚固与注浆技术研究. 能源与环保. 2025(01): 279-286 .
    3. 涂敏,郭福鑫. “蝶形托板-锚索”匹配性及锚索防剪保护机理研究. 采矿与安全工程学报. 2025(02): 306-316 .
    4. 汪占领,刘志文,赵华山,李永元,程利兴. 特厚煤层大巷变形破坏特征及控制技术研究. 煤炭工程. 2024(04): 53-59 .
    5. 吴晓宇,周豪,吴晓伟. 近距离下煤层中空注浆锚索注浆前后周边剪应力作用机理. 煤炭工程. 2024(04): 112-118 .
    6. 李建志. 开拓大巷变形破坏机理分析及控制措施研究. 西部探矿工程. 2024(09): 134-137 .
    7. 吴宁. 注浆锚索主动式超前支护巷道围岩变形控制技术. 煤炭科技. 2024(06): 57-62+66 .
    8. 孙长全. 大跨度大空间建筑预应力型钢混凝土组合结构施工技术研究. 粉煤灰综合利用. 2024(06): 115-119 .
    9. 傅翔,黄平,陈柏林,彭海游,黄祥超. 坡顶带临空建筑高边坡切脚滑坡抢险加固技术. 山西建筑. 2023(04): 90-92+96 .
    10. 赵明洲,方娟,辛程鹏,李回贵. 回采煤巷大厚度泥质层状顶板失稳机理及控制对策. 矿业研究与开发. 2023(04): 75-81 .
    11. 李天棚,陈江,张焙炎,谈文州. 近距离煤层重复采动下巷道变形机制及稳定控制技术. 煤炭科技. 2023(04): 182-188 .
    12. 路广安. 山寨煤矿高应力巷道底板动态控制方法. 山东煤炭科技. 2023(08): 191-193 .
    13. 郭军亮. 强动压巷道柔性锚杆支护方案设计及工业性试验分析. 西部探矿工程. 2023(10): 123-125 .
    14. 姚强岭,徐强,何杰,李英虎,刘伟冬. 基于有效锚固层厚度的近距离煤层下伏巷道支护技术数值模拟研究. 能源与环保. 2023(11): 1-6 .
    15. 王坤. 杜儿坪矿73907胶带巷超前支护技术研究与应用. 煤. 2023(12): 44-48+60 .

    Other cited types(6)

Catalog

    Article views (71) PDF downloads (236) Cited by(21)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return