Investigation on the flexural behaviour and crack propagation of hybrid steel fibre reinforced concrete with a low fibre content for tunnel structures

被引:14
|
作者
Bao, Xiaohua [1 ]
Li, Yingpeng [1 ]
Chen, Xiangsheng [1 ]
Yang, Haoyu [1 ]
Cui, Hongzhi [1 ]
机构
[1] Shenzhen Univ, Coll Civil & Transportat Engn, Key Lab Coastal Urban Resilient Infrastruct, Minist Educ, Shenzhen 518060, Peoples R China
基金
中国国家自然科学基金;
关键词
Hybrid steel fibre; Flexural behaviour; Four-point bending test; Crack propagation; Synergetic effect; Analytical equation; HIGH-PERFORMANCE CONCRETE; SELF-COMPACTING CONCRETE; MECHANICAL-PROPERTIES; SEGMENTS; DESIGN; MACRO;
D O I
10.1016/j.conbuildmat.2024.135253
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Fibre-reinforced concrete (FRC) has been suggested as a feasible substitute for steel reinforcement in tunnel lining segments. To enhance the flexural strength and toughness of tunnel linings while retaining costeffectiveness, two scales of steel fibres were mixed with the reinforcement. Four-point bending tests were performed and the cracks were captured using the digital image correlation (DIC) method. The results showed that performance and toughness of the concrete in the pre-peak stage improved with the hybrid steel fibres. Moreover, the DIC measurements showed that for the same crack width at higher replacement rate of the short straight steel fibre (SSSF) was associated with at greater length of the primary cracks. However, SSSF can prevent the concrete cracks from spalling. Furthermore, a quantitative calculation method for the synergistic effect in hybrid steel fiber reinforced concrete (HSFRC) with a certain proportion is proposed. Finally, based on a comprehensive fibre reinforcement index, analytical equations were established to predict the flexural performance and toughness of the HSFRC by considering the fibre aspect ratio, content, and tensile strength. This study can enhance the understanding of the mechanism of low-content hybrid fibre reinforcement and assist in more accurate evaluation and optimization of the HSFRC performance during engineering design.
引用
收藏
页数:15
相关论文
共 50 条
  • [31] Flexural behaviour of fibre reinforced geopolymer concrete composite beams
    Vijai, K.
    Kumutha, R.
    Vishnuram, B. G.
    COMPUTERS AND CONCRETE, 2015, 15 (03): : 437 - 459
  • [32] Modelling the flexural behaviour of fibre reinforced concrete beams with FEM
    Nicolaides, D.
    Markou, G.
    ENGINEERING STRUCTURES, 2015, 99 : 653 - 665
  • [33] Investigation on tensile and flexural behaviour of fibre reinforced concrete using artificial neural network
    Dhanalakshmi, A.
    Nagamani, S.
    Muthupriya, P.
    Prasath, C. Rajendra
    Devi, A. Saradha
    GLOBAL NEST JOURNAL, 2024, 26 (01):
  • [34] Crack pattern investigation of hybrid fibre reinforced concrete under uniaxial tension
    Akçay B.
    Teknik Dergi/Technical Journal of Turkish Chamber of Civil Engineers, 2020, 31 (01): : 9773 - 9787
  • [35] Crack Pattern Investigation of Hybrid Fibre Reinforced Concrete under Uniaxial Tension
    Akcay, Burcu
    TEKNIK DERGI, 2020, 31 (01): : 9773 - 9787
  • [36] FLEXURAL BEHAVIOUR OF ALCCOFINE INCORPORATING CONCRETE BEAM REINFORCED WITH STEEL AND GLASS FIBRE REINFORCED POLYMERS BARS
    Vinodhini, P.
    Saravanan, J.
    JOURNAL OF ENVIRONMENTAL PROTECTION AND ECOLOGY, 2022, 23 (02): : 649 - 656
  • [37] Size effects on flexural toughness of steel fibre reinforced concrete
    Groth, P
    Olofsson, T
    ADVANCED DESIGN OF CONCRETE STRUCTURES, 1997, : 271 - 278
  • [38] Flexural analysis of steel fibre-reinforced concrete members
    Chalioris, Constantin E.
    Panagiotopoulos, Thomas A.
    COMPUTERS AND CONCRETE, 2018, 22 (01): : 11 - 25
  • [39] Characterisation of fibre content, distribution and orientation to predict Fibre Reinforced Concrete behaviour
    Fuentes, Raul
    Geiker, Mette
    Stang, Henrik
    NORDIC CONCRETE RESEARCH, 2015, 52 (01): : 1 - 22
  • [40] Flexural fatigue analysis of hybrid fibre-reinforced concrete
    Bajaj, Vineet
    Singh, Surinder Pal
    Singh, Amrit Pal
    Kaushik, Surendra Kumar
    MAGAZINE OF CONCRETE RESEARCH, 2012, 64 (04) : 361 - 373