Experimental study and failure mechanism analysis at the meso-scale of the fatigue performance of a CFRP tendon novel composite anchorage

被引:0
|
作者
Mei, Kuihua [1 ]
Li, Yu [1 ]
Wang, Yuanzhi [1 ]
Li, Xue [1 ]
Jia, Wenke [1 ]
Sun, Shengjiang [1 ]
机构
[1] Changan Univ, Sch Highway, Xian 710064, Peoples R China
基金
中国国家自然科学基金;
关键词
Composite anchorage; CFRP tendons; Fatigue performance; Experiment; Mechanism analysis; Meso-morphology; FRP CABLE; SYSTEM;
D O I
10.1016/j.istruc.2023.105449
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This paper investigates the fatigue performance of CFRP tendon novel composite anchorages. The fatigue mode of the novel composite anchorage was analysed. Furthermore, based on the meso-morphology of the contact surface between tendons and epoxy resin, the fatigue mechanism of composite anchorage was explored. Finally, the effects of fatigue cyclic load on the slippage of tendons at both free end and loaded ends and clamps, the barrel strain and the stiffness of CFRP tendons were investigated. Results revealed that the novel composite anchorage can subject 2 million fatigue cycles load under 0.45 fu fatigue maximum stress and 200 MPa stress range. The failure modes of FS-2, FS-3 and FTD-1 specimens with fatigue failure were the damage of the contact surface between the tendons and the epoxy resin, which leads to the tendons slip out from the epoxy resin. Furthermore, the fatigue performance of the three-tendon specimens with dispersed anchoring was worse than that of the anchorage with parallel anchoring. Steel barrels and clamps can work effectively in all specimens, but the tendons stiffness increases slightly initially and then decreases rapidly. In summary, the novel composite anchorage has good fatigue performance and the potential for practical application.
引用
收藏
页数:11
相关论文
共 25 条
  • [1] Finite Element analysis and experimental study of static performance of multi-CFRP tendon composite anchorage system
    Li, Xue
    Mei, Kuihua
    Sun, Shiyu
    Wang, Yuanzhi
    Jia, Wenke
    POLYMER COMPOSITES, 2024, 45 (18) : 16644 - 16659
  • [2] Meso-scale mechanism analysis of failure modes of gravel cushion
    Zhao, Xue-Liang
    Zhu, Xiao-Jun
    Huo, Shao-Lei
    Chen, Hui
    Yantu Gongcheng Xuebao/Chinese Journal of Geotechnical Engineering, 2013, 35 (SUPPL.2): : 1159 - 1162
  • [3] Experimental study on fatigue performance of adhesively bonded anchorage system for CFRP tendons
    Xie, Gui-hua
    Tang, Yong-sheng
    Wang, C. M.
    Li, Shi-quan
    Liu, Rong-gui
    COMPOSITES PART B-ENGINEERING, 2018, 150 : 47 - 59
  • [4] Analysis of Multi-Tendon Friction-Based Composite Anchorage Device for CFRP Cables and Its Anchorage Mechanism
    Zhu, Wanxu
    Chen, Hongbin
    Wei, Wei
    Chen, Boxuan
    Chen, Xuejun
    MATERIALS, 2022, 15 (08)
  • [5] Meso-scale analysis of shear performance and size effect of CFRP sheets strengthened RC beams
    Jin, Liu
    Zhang, Jiangxing
    Li, Dong
    Du, Xiuli
    STRUCTURES, 2022, 45 : 1630 - 1645
  • [6] Experimental Study on the Mechanical Properties of a Novel Composite Anchorage System for CFRP Tendons
    Mei, Kuihua
    Zhao, Jianfeng
    Sun, Yamin
    Li, Haochen
    10TH INTERNATIONAL CONFERENCE ON FRP COMPOSITES IN CIVIL ENGINEERING (CICE 2020/2021), 2022, 198 : 1158 - 1172
  • [7] Experimental and numerical investigation on the performance of meso-scale burners with novel ordered porous media
    Chen, Xinjian
    Li, Junwei
    He, Xu
    Zhao, Dan
    Wang, Ningfei
    APPLIED THERMAL ENGINEERING, 2023, 233
  • [8] Experimental study on anchorage performance and mechanism of hooked bars with a pre-yield anchorage failure
    Zhou, Kai-Peng
    Yi, Wei-Jian
    Yi, Fan
    Sun, Jing-Ming
    Huang, Yuan
    Zhang, Wang -Xi
    STRUCTURES, 2023, 57
  • [9] Experimental and theoretical analysis on the long-term performance of novel carbon fibre-reinforced polymer tendon composite anchorage
    Li, Yu
    Mei, Kuihua
    Jia, Wenke
    Li, Xue
    Sun, Shiyu
    Sun, Shengjiang
    ENGINEERING STRUCTURES, 2023, 283
  • [10] Meso-Scale Tearing Mechanism Analysis of Flexible Fabric Composite for Stratospheric Airship via Experiment and Numerical Simulation
    Chen Y.
    Yang W.
    Xie W.
    Wang X.
    Fu G.
    Journal of Shanghai Jiaotong University (Science), 2022, 27 (06) : 873 - 884