GFRP锚杆结构预应力锁定装置研制与现场试验

    刘龙, 李国维, 贺冠军, 余亮, 刘学

    刘龙, 李国维, 贺冠军, 余亮, 刘学. GFRP锚杆结构预应力锁定装置研制与现场试验[J]. 岩土工程学报, 2015, 37(4): 718-726. DOI: 10.11779/CJGE201504018
    引用本文: 刘龙, 李国维, 贺冠军, 余亮, 刘学. GFRP锚杆结构预应力锁定装置研制与现场试验[J]. 岩土工程学报, 2015, 37(4): 718-726. DOI: 10.11779/CJGE201504018
    LIU Long, LI Guo-wei, HE Guan-jun, YU Liang, LIU Xue. Development of load anchorage device for pre-stress GFRP soil nail reinforcement element in slopes and field tests[J]. Chinese Journal of Geotechnical Engineering, 2015, 37(4): 718-726. DOI: 10.11779/CJGE201504018
    Citation: LIU Long, LI Guo-wei, HE Guan-jun, YU Liang, LIU Xue. Development of load anchorage device for pre-stress GFRP soil nail reinforcement element in slopes and field tests[J]. Chinese Journal of Geotechnical Engineering, 2015, 37(4): 718-726. DOI: 10.11779/CJGE201504018

    GFRP锚杆结构预应力锁定装置研制与现场试验  English Version

    基金项目: 国家自然科学基金面上项目(41472240); 广东省教育部科; 技部产学研项目(2009B09060011); 高校业务费专项项目(2014B04914)
    详细信息
      作者简介:

      刘 龙(1988- ),男,硕士,主要从事边坡稳定性方面的研究。E-mail: 95620056@qq.com。

      通讯作者:

      李国维

    Development of load anchorage device for pre-stress GFRP soil nail reinforcement element in slopes and field tests

    • 摘要: 纤维增强聚合物(FRP)筋耐腐蚀,抗拉强度高,弹性模量小,用于边坡加固锚杆结构是解决钢筋锚杆结构耐久性问题的途径之一,预应力FRP锚杆结构是合理型式。FRP筋抗剪强度低,钢筋锚杆施加预应力采用的刚性夹具不能用于FRP锚杆。基于端部封闭的钢套管充填膨胀剂锚固FRP筋法,设计了FRP锚杆预应力施加及锚索装置,并进行了现场试验。试验结果表明:预应力锁定装置的原理可行,结构合理,使用方便,能较好地完成玄武-玻璃纤维增强聚合物(B-GFRP)锚杆的预应力施加和锁定,经历外部环境变化检验,降雨、震动等环境影响产生的预应力损失均缘于杆体界面的黏结蜕化,没有发生锁定装置失效导致荷载明显损失的现象。B-GFRP锚杆的预应力损失百分率在5%~35%间,达到了精轧螺纹钢锚杆预应力损失的控制标准。
      Abstract: The fiber reinforced polymer (FRP) bars have the behavior of strong corrosion resistance, high tensile strength and small elastic modulus, and can be used to replace steel bars, which undergo wearing due to rusting in slope reinforcement. The pre-stress FRP bars are reasonable, but the bars have low shear strength and cannot be pre-stressed using the traditional rigid clamp, lest they are crashed to failure. An end anchoring pre-stress locking device is designed for pre-stress application and retention in the FRP bars. Field tests are conducted to verify the stability of the device. The test results show that the device is practically feasible and convenient, and it can apply and retain pre-stress in basalt-glass fiber reinforced polymer (B-GFRP) bars well. Exposure to external factors such as heavy rains and blasting results in the loss of pre-stress. The pre-stress loss is caused by degeneration of the bonding resulting from external factors, but not by the invalidation of the device. The pre-stress retention by the device in the B-GFRP bars is 5%~35%, which conforms to the control criterion for the pre-stress loss of the steel pre-stressed soil nail reinforcement.
    • [1] 仲伟秋, 王海超, 何世钦. 受腐蚀钢筋混凝土结构性能的研究[J]. 辽宁工程技术大学学报, 2003, 22(10): 51-53. (ZHONG Wei-qiu, WANG Hai-chao, HE Shi-qin. Study on performance of corroding steel reinforced concrete structures[J]. Journal of Liaoning Technical University, 2003, 22(10): 51-53. (in Chinese))
      [2] 程良奎. 岩土锚固的现状与发展[J]. 土木工程学报, 2001, 34(3): 7-13. (CHENG Liang-kui. Present status and development of ground anchorages[J]. China Civil Engineering Journal, 2001, 34(3): 7-13. (in Chinese))
      [3] 叶列平, 冯鹏. FRP在工程结构中的应用与发展[J]. 土木工程学报, 2006, 39(3): 24-36. (YE Lie-ping, FENG Peng. Applications and development of fiber-reinforced polymer in engineering structures[J]. Chinese Jounal of Geotechnical Engineering, 2006, 39(3): 24-36. (in Chinese))
      [4] 袁勇, 贾新, 闫富友. 岩石GFRP 锚杆的可行性研究[J]. 公路交通科技, 2004, 21(9): 13-15. (YUAN Yong, JIA Xin, YAN Fu-you. Feasibility study on GFRP rock bolts[J]. Journal of Highway and Transportation Research and Development, 2004, 21(9): 13-15. (in Chinese))
      [5] LI Guo-wei, NI Chun, PEI Hua-fu, et al. Stress relaxation of grouted entirely large diameter B-GFRP soil nail[J]. China Ocean Engineering, 2013, 27(4): 495-508.
      [6] FAM A Z, RIZKALLA S H, TADROS G. Behavior of CFRP for prestressing and shear reinforcements of concrete highway bridges[J]. AC1 Structural Journal, 1997: 77-86.
      [7] KERSTENS J J G M, BENNENK W. Prestressing with carbon composite rods: a numerical method for developing reusable prestressing systems[J]. ACI Structural Journal, 1998, 95(1): 43-50.
      [8] PARK S Y, NAAMAN A E. Shear behavior of concrete beams prestrssed with FRP tendons[J]. PCI Journal, 1999: 74-85.
      [9] ZHANG B R, BENMOKRANE B, CHENNOUF A. Prediction of tensile capacity of bond anchorages for FRP tendons[J]. Journal of Composites for Construction, ASCE, 2000, 4(2): 39-47.
      [10] 李国维, 戴剑, 倪春, 等. 大直径喷砂内置光纤光栅GFRP锚杆梁杆黏结试验[J]. 岩石力学与工程学报, 2013, 32(7): 1450-1457. (LI Guo-wei, DAI Jian, NI Chun, et al. The bond behavior between concrete frame beam and sand-coated GFRP soil nail with fiber bragg grating sensor installed within[J]. Chinese Journal of Rock Mechanics and Engineering, 2013, 32(7): 1450-1457. (in Chinese))
      [11] 黄志怀, 李国维. 玻璃纤维增强塑料锚杆设计研究[J]. 玻璃钢/复合材料, 2008(4): 36-40. (HUANG Zhi-huai, LI Guo-wei. Study of glass fiber reinforced plastic anchor deign[J]. Fiber Reinforecd Plastics/Composites, 2008(4): 36-40. (in Chinese))
      [12] LI Guo-wei, PEI Hua-fu, HONG Cheng-yu. Study on the stress relaxation behavior of large diameter B-GFRP bars using FBG sensing technology[J]. International Journal of Distributed Sensor Networks, 2013: 1-12.
      [13] JSCE-E 534. Test method for long-term relaxation of continuous fiber reinforcing materials[S]. 1995.
      [14] 李国维, 倪春, 葛万明, 等. 大直径喷砂FRP筋应力松弛试件锚固方法研究[J]. 岩土工程学报, 2013, 35(2): 227-234. (LI Guo-wei, NI Chun, GE Wan-ming, et al. Anchoring method for stress relaxation specimens with large-diameters and-surface FRP bars[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(2): 227-234. (in Chinese))
      [15] CECS22—2005 岩土锚杆(索)技术规程[S]. 2005. (CECS22—2005 Technical specification for ground anchors[S]. 2005. (in Chinese))
      [16] 汪剑辉, 张胜民, 赵强. 边坡加固中锚索预应力损失影响因素及对策探讨[J]. 施工技术, 2007, 36(8): 25-27. (WANG Jian-hui, ZHANG Sheng-min, ZHAO Qiang. Discussion on influencing factirs and countermeasures of cable anchor’s pre-stress in reinforcing slopes engineering[J]. Construction Technology, 2007, 36(8): 25-27. (in Chinese))
      [17] 周勇, 朱彦鹏. 框架预应力锚杆柔性支护结构的锚杆预应力损失研究[J]. 工程勘察, 2010(9): 1-6. (ZHOU Yong, ZHU Yan-peng. Research on the anchor pre-stress loss of grillage flexible supporting structure with pre-stressed anchors[J]. Geotechnical Investigation & Surveying, 2010(9): 1-6. (in Chinese))
    计量
    • 文章访问数:  323
    • HTML全文浏览量:  2
    • PDF下载量:  476
    • 被引次数: 0
    出版历程
    • 收稿日期:  2014-08-03
    • 发布日期:  2015-05-05

    目录

      /

      返回文章
      返回