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隧道建设(中英文) ›› 2021, Vol. 41 ›› Issue (1): 77-87.DOI: 10.3973/j.issn.2096-4498.2021.01.009

• 研究与探索 • 上一篇    下一篇

非发泡型高聚物与混凝土基体锚固性能研究

王道路1, 2, 王超杰1 *, 郝燕洁1, 张曦君1, 赵鹏1, 石明生1, 3   

  1. (1. 郑州大学水利科学与工程学院, 河南 郑州 450001;2. 中铁工程设计咨询集团有限公司济南设计院, 山东 济南 250022;3. 南方工程检测修复技术研究院, 广东 惠州 516229)

  • 出版日期:2021-01-20 发布日期:2021-02-08
  • 作者简介:王道路(1992—),男,山东聊城人,2020年毕业于郑州大学,建筑与土木工程专业,硕士,助理工程师,现从事岩土工程勘察与设计的相关工作。 E-mail: 992515003@qq.com。 *通信作者: 王超杰, E-mail: wangcjzzu@gs.zzu.edu.cn。
  • 基金资助:
    国家重点研发计划项目(2017YFC0405002); 国家自然科学基金项目(51679219); 西藏自治区科技计划项目(XZ201801-GB-07); 广东省引进创新创业团队项目(2016ZT06N340)

Study on Anchoring Performance of NonFoaming Polymer and Concrete Matrix

WANG Daolu1, 2, WANG Chaojie1, *, HAO Yanjie1, ZHANG Xijun1, ZHAO Peng1, SHI Mingsheng1, 3   

  1. (1. School of Water Conservancy Science and Engineering, Zhengzhou University, Zhengzhou 450001, Henan, China;

    2. Jinan Design Institute of China Railway Engineering Design Consulting Group Co., Ltd., Jinan 250022, Shandong, China; 3. Southern Institute of Infrastructure Testing and Rehabilitation Technology, Huizhou 516229, Guangdong, China)

  • Online:2021-01-20 Published:2021-02-08

摘要: 为探讨非发泡型高聚物注浆材料在岩质基体中的锚固性能,以非发泡型高聚物和不同强度的混凝土空心圆柱筒为研究对象,采用中心拉拔模型试验,对高聚物锚固体与岩体界面间的黏结性能进行试验研究,并通过ABAQUS有限元软件对不同锚固长度下的极限拉拔力进行模拟计算。结果表明: 1)锚固长度及锚固体直径对界面黏结强度有较大影响,且锚固长度的影响更为显著; 2)当混凝土基体强度不大于30 MPa时,滑移面发生在基体一侧,且界面黏结强度随混凝土基体强度的增大而增大; 3)拉拔力对黏结强度的分布规律也有较大影响,随着拉拔荷载的增加,黏结强度由随着锚固深度的增加而减小,向随着锚固深度的增加先增大后逐渐减小过渡; 4ABAQUS有限元软件可以很好地模拟不同荷载作用下轴力及界面黏结力的分布及传递规律。

关键词: 非发泡型高聚物, 混凝土基体, 基体强度, 模型试验, 锚固长度, 锚固性能, 数值计算

Abstract: Anchoring performance of a nonfoaming polymer grouting material in a rock matrix is of critical significance to engineering research and applications. Research has been focused on investigating the bonding properties between the solid and rock mass of a polymer anchor using tension testing models. The ultimate drawing force under different anchorage lengths is simulated using the finite element software ABAQUS. The results show that (1) anchor length and anchor diameter have a great impact on the interface bond strength, yet the influence of the anchor length is stronger; (2) when the concrete matrix strength does not exceed 30 MPa, slip surface occurs on one side of the matrix, and the interface bonding strength increases with increasing concrete matrix strength; (3) tension force also has a significant impact on the distribution law of bond strength, and with increase in tension load, bonding strength increases and then decreases gradually rather than decreases with the increasing anchorage depth; and (4) the finite element software ABAQUS can well simulate the distribution and transmission law of axial force and interface bonding force under different loads.

Key words: nonfoaming polymer, concrete matrix, matrix strength, model test, anchoring length, anchoring performance, numerical calculation

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