Interface Shear Failure Behavior Between Normal Concrete (NC) and Ultra-High Performance Concrete (UHPC)

被引:9
|
作者
Zhang, Boshan [1 ]
Yu, Jiangjiang [2 ]
Chen, Weizhen [1 ]
Chen, Jianbo [3 ]
Li, Heng [2 ]
Niu, Jialun [4 ]
机构
[1] Tongji Univ, Dept Bridge Engn, Shanghai 200092, Peoples R China
[2] Hong Kong Polytech Univ, Dept Bldg & Real Estate, Hong Kong 100872, Peoples R China
[3] Highway Dev Ctr Hekou Dist, Dongying 257200, Peoples R China
[4] Tongji Univ, Dept Geotech Engn, Shanghai 200092, Peoples R China
基金
中国国家自然科学基金;
关键词
NC-UHPC interface; Interfacial shear failure; Interface roughness; Microstructure of ITZ (interface transition zone); STRENGTH;
D O I
10.1186/s40069-023-00657-6
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Ultra-high performance concrete (UHPC) with excellent mechanical properties and durability is a promising material for reinforcement of existing normal concrete (NC) structures. In this paper, the shear failure behavior of the NC-UHPC interface was studied by the slant shear test and the SEM (scanning electron microscope) visualization test, considering influence of the substrate strength and the interface roughed treatment. As the NC substrate and the UHPC overlay are tightly combined at the interface transition zone (ITZ), the interface exhibits good slant shear performance, and the measured interfacial shear strength could reach 19.4 MPa with C40 substrate and 21.8 MPa with C50 substrate. In addition, the microstructure and composition of the ITZ, the possible interfacial failure modes, and the load-carrying mechanism of the interface under compression-shear force are revealed. The high interface roughness and the substrate strength have positive influence on the shear strength, and greatly affect the prone failure mode and the load-slip characteristic.
引用
收藏
页数:16
相关论文
共 50 条
  • [1] Interface Shear Failure Behavior Between Normal Concrete (NC) and Ultra-High Performance Concrete (UHPC)
    Boshan Zhang
    Jiangjiang Yu
    Weizhen Chen
    Jianbo Chen
    Heng Li
    Jialun Niu
    International Journal of Concrete Structures and Materials, 18
  • [2] Multi-scale study on interfacial bond failure between normal concrete (NC) and ultra-high performance concrete (UHPC)
    Yu, Jiangjiang
    Zhang, Boshan
    Chen, Weizhen
    Liu, Hang
    Li, Heng
    JOURNAL OF BUILDING ENGINEERING, 2022, 57
  • [3] Shear properties of the interface between ultra-high performance concrete and normal strength concrete
    Zhang, Yang
    Zhu, Ping
    Wang, Xingwang
    Wu, Jie
    CONSTRUCTION AND BUILDING MATERIALS, 2020, 248
  • [4] Shear performance of interface between ultra-high performance concrete and normal concrete treated with ribs
    Zeng, Xinggui
    Wang, Peng
    You, Xuehui
    STRUCTURES, 2024, 60
  • [5] Shear Performance of Interface Between Normal Concrete and Ultra-high Performance Concrete in Cryogenic Circumstance
    Chen, Yujie
    Xie, Jian
    Kang, Ercong
    Tong, Chenglong
    PROCEEDINGS OF THE 17TH EAST ASIAN-PACIFIC CONFERENCE ON STRUCTURAL ENGINEERING AND CONSTRUCTION, EASEC-17 2022, 2023, 302 : 506 - 514
  • [6] Experimental study on shear performance of perfobond steel plate in ultra-high performance concrete (UHPC)-normal concrete (NC) connection
    Duan, Maojun
    Xue, Jingchun
    Wang, Xu
    Wu, Yutian
    Tao, Hao
    STRUCTURES, 2024, 66
  • [7] Review of Interface Bond Behavior Between Ultra-high Performance Concrete and Existing Normal Concrete
    Wu Y.
    Zheng X.
    Huang W.
    Zheng X.
    Chen B.
    Cailiao Daobao/Materials Reports, 2023, 37 (16):
  • [8] Shear behavior of ultra-high performance concrete
    Pourbaba, Masoud
    Joghataie, Abdolreza
    Mirmiran, Amir
    CONSTRUCTION AND BUILDING MATERIALS, 2018, 183 : 554 - 564
  • [9] Finite Element Modeling of Interface Behavior between Normal Concrete and Ultra-High Performance Fiber-Reinforced Concrete
    Luu, Xuan-Bach
    Kim, Seong-Kyum
    BUILDINGS, 2023, 13 (04)
  • [10] Compressive behavior of FRP-confined ultra-high performance concrete (UHPC) and ultra-high performance fiber reinforced concrete (UHPFRC)
    Wang, J. J.
    Zhang, S. S.
    Nie, X. F.
    Yu, T.
    COMPOSITE STRUCTURES, 2023, 312