Theoretical Stress Analysis of Anchorage Section of Pressure Anchor Cable under Earthquake

YE Hong, TAO Ting-quan, LI Yan

Journal of Changjiang River Scientific Research Institute ›› 2023, Vol. 40 ›› Issue (4) : 107-112,118.

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Journal of Changjiang River Scientific Research Institute ›› 2023, Vol. 40 ›› Issue (4) : 107-112,118. DOI: 10.11988/ckyyb.20211270

Theoretical Stress Analysis of Anchorage Section of Pressure Anchor Cable under Earthquake

  • YE Hong1,2, TAO Ting-quan3, LI Yan1,2
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Abstract

The aim of this study is to obtain the anchorage mechanism of pressure cable under earthquake more accurately. Considering the damped forced vibration characteristic of the single freedom degree system, we derived the compressive stress and shear stress expressions of the grout of anchorage section of pressure anchor cable based on the basic solution of Mindlin. The influences of harmonic load amplitude, harmonic load circular frequency, and damping ratio on the reinforcement effect of pressure anchor cable are examined through an example. The results show that the amplitude and circular frequency of harmonic load have a greater influence on the reinforcement effect of pressure anchor cable, while the damping ratio of low damping system has little effect. Harmonic load amplitude has a linear relationship with compressive stress and shear stress of grout in anchorage section. When the circular frequency of harmonic load is closer to the damped natural circular frequency of the pressure anchor cable, the compressive stress and shear stress of grout in anchorage section are larger. The research finding offers a theoretical reference for rock-soil reinforcement with pressure anchor cable under earthquake.

Key words

geotechnical engineering / pressure anchor cable / anchorage mechanism / Mindlin solution / harmonic load

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YE Hong, TAO Ting-quan, LI Yan. Theoretical Stress Analysis of Anchorage Section of Pressure Anchor Cable under Earthquake[J]. Journal of Changjiang River Scientific Research Institute. 2023, 40(4): 107-112,118 https://doi.org/10.11988/ckyyb.20211270

References

[1] 崔雪雪, 王彪, 刘汴, 等. 既有锚索二次张拉机具技术研究. 金属矿山, 2019(6): 163-167.
[2] 余瑜,刘新荣,刘永权. 基坑锚索预应力损失规律现场试验研究. 岩土力学,2019,40(5):1932-1939.
[3] 白海峰, 刘 奇. 三维强震下路堑高边坡预应力锚索加固分析. 铁道工程学报, 2018, 35(11): 9-13.
[4] 张 勇, 赵红玲, 张向阳. 压力分散型锚索锚固段力学性能试验研究. 岩石力学与工程学报, 2010, 29(增刊1): 3052-3056.
[5] 赵 圳, 许 明. 压力型锚索锚固段剪应力数学解. 路基工程, 2021(2): 31-34.
[6] 王勇华, 熊二刚, 王小勇. 黄土中压力型锚索锚固段应力分析. 力学季刊, 2020, 41(2): 231-239.
[7] 周 刚, 牛洁楠, 张维维, 等. 服从分数黏弹性模型的压力型锚索力学分析. 信阳师范学院学报(自然科学版), 2020, 33(3): 473-479.
[8] 李清山, 张莉妮, 刘虎队, 等. 压力分散型锚索的应变能及刚度匹配分析研究. 地下空间与工程学报, 2019, 15(增刊2): 1033-1037.
[9] 夏元友, 叶 红, 刘笑合, 等. 风化岩体中压力型锚索锚固段的剪应力分析. 岩土力学, 2010, 31(12): 3861-3866.
[10] 刘伟平, 扶名福, 罗小艳, 等. 基于双曲线型Mohr强度准则下锚索极限抗拔力研究. 煤炭工程, 2010, 42(3): 92-93.
[11] 杨 庆, 朱训国, 栾茂田. 压力型锚索锚固段应力分布及影响参数分析. 岩石力学与工程学报, 2006, 25(增刊2): 4065-4070.
[12] 江 冠, 冯忠居, 赵瑞欣, 等. 高边坡预应力锚索特征荷载现场试验研究. 长江科学院院报, 2022, 39(1): 100-106.
[13] 叶 红,陈燕平.基于Mindlin解地震作用下压力型锚索的拟静力分析. 振动与冲击,2017,36(2):221-228.
[14] 周德培, 张建经, 汤 涌. 汶川地震中道路边坡工程震害分析. 岩石力学与工程学报, 2010, 29(3): 565-576.
[15] 叶 红, 李 艳. 地震作用下压力型锚索弯曲锚固段的剪应力分析. 武汉理工大学学报, 2020, 42(5): 63-70.
[16] 叶 红, 陈燕平. 风化砂岩中压力型锚索锚固机理的拟静力分析. 中国科技论文, 2019, 14(6): 589-594, 641.
[17] 叶 红, 陈燕平. 耦合效应下压力型锚索锚固机理的拟静力分析. 长江科学院院报, 2020, 37(8): 89-94.
[18] 龙驭球, 包世华. 结构力学教程-Ⅱ. 北京: 高等教育出版社, 2001.
[19] 白 哲, 吴顺川, 刘 波, 等. 地震力作用下浅埋偏压隧道围岩压力的解析解. 北京科技大学学报, 2013, 35(8): 1106-1112.
[20] GB 50011—2010,建筑抗震设计规范. 北京: 中国建筑工业出版社, 2010.
[21] 宋崔蓉, 李正兵, 张 引. 高陡边坡卸荷岩体群锚效应试验研究. 长江科学院院报, 2020, 37(10): 117-124.
[22] MINDLIN R D. Force at a Point in the Interior of a Semi-Infinite Solid. Physics, 1936, 7(5): 195-202.
[23] 叶 红, 陈燕平. 基于Mindlin基本解的压力型锚索受力分析. 金属矿山, 2015(4): 114-118.
[24] WANG Y, WANG Y, XIE H. Computing of the Anchor by the Method of Three-Dimension Point-Radiate Infinite Elements. Journal of China University of Geosciences, 2007, 18(2): 185-190.
[25] GB 50010—2010,混凝土结构设计规范. 北京: 中国建筑工业出版社, 2011.
[26] GB 50330—2013,建筑边坡工程技术规范. 北京: 中国建筑工业出版社, 2014.
[27] GB/T 5224—2014,预应力混凝土用钢绞线. 北京: 中国标准出版社, 2015.
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