Enhancing torsional behavior of RC beams: The potential of ultra-high performance concrete (UHPC)

被引:0
作者
Zhou, Cong [1 ]
Wang, Jianqun [1 ]
Shao, Xudong [2 ]
Li, Lifeng [2 ]
Qiu, Minghong [3 ]
机构
[1] Hunan Univ Sci & Technol, Sch Civil Engn, Xiangtan 411201, Peoples R China
[2] Hunan Univ, Coll Civil Engn, Changsha 410082, Peoples R China
[3] Univ Tokyo, Inst Ind Sci, Tokyo, Japan
基金
中国国家自然科学基金;
关键词
UHPC; Strengthening; Torsion; Experimental investigation; FE modeling; Theoretical analysis; FIBER-REINFORCED CONCRETE; FLEXURAL BEHAVIOR; COMPOSITE; SHRINKAGE; STRENGTH; MODEL;
D O I
10.1016/j.compstruct.2025.118950
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The potential of ultra-high performance concrete (UHPC) for enhancing the torsional behavior of RC beams is evaluated in this study, as a significant gap has been identified on this topic in the present. Pure torsion tests were conducted on nine specimens, including one un-strengthened and eight UHPC-strengthened RC beams. Refined finite element (FE) models were established using ATENA software to simulate the full-range torsional behavior of the specimens. Results from experiments and FE simulations indicate that the utilization of UHPC significantly improves the torsional resistance of RC beams, with an increase of 136.5 %similar to 488.5 % in cracking torque and an increase of 21.8 %similar to 593.2 % in ultimate torque. Two-sided wrapping scheme is not recommended since the failure mechanisms in those beams will induce considerable safety risks. Three-sided wrapping scheme could serve as an alternative solution to the fully-wrapped scheme if the latter cannot be realized due to space limitation. The surfaces of the RC beam should be roughened prior to the application of UHPC layers to ensure reliable bonding performance between them. The decision to incorporate steel bars into the UHPC layers should comprehensively consider the costs, constraints in dimensions and increase in torsional capacity. Finally, a theoretical formula was proposed for predicting the torsional capacity of UHPC-strengthened RC beams utilizing 4-sided wrapping configuration. The experimental results from six fully-wrapped strengthened beams in this study were used to validate the proposed formula. The mean value and standard deviation of the ratio between the theoretically obtained and experimentally obtained results were 1.10 and 0.16, respectively, indicating that the proposed formula provides a satisfactory prediction of the torsional capacity.
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页数:18
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共 61 条
[31]   Interfacial bonding performance of 3D-printed Ultra-High Performance Strain-Hardening Cementitious Composites (UHP-SHCC) and cast normal concrete [J].
Qiu, Minghong ;
Sun, Yan ;
Qian, Ye .
JOURNAL OF BUILDING ENGINEERING, 2024, 82
[32]   Flexural behavior of reinforced concrete beams repaired with ultra-high performance fiber reinforced concrete (UHPFRC) [J].
Safdar, Muhammad ;
Matsumoto, Takashi ;
Kakuma, Ko .
COMPOSITE STRUCTURES, 2016, 157 :448-460
[33]   Using ultra-high performance fiber reinforced concrete in improvement shear strength of reinforced concrete beams [J].
Said, Asmaa ;
Elsayed, Mahmoud ;
Abd El-Azim, Ahmed ;
Althoey, Fadi ;
Tayeh, Bassam A. .
CASE STUDIES IN CONSTRUCTION MATERIALS, 2022, 16
[34]   A cohesive model to predict the loading bond capacity of concrete structures repaired/reinforced with HPFRC/UHPFRC and stressed to mixed mode [J].
Savino, V ;
Lanzoni, L. ;
Tarantino, A. M. ;
Viviani, M. .
CEMENT & CONCRETE COMPOSITES, 2020, 112
[35]   Seismic Performance of High-Performance Fiber-Reinforced Cement-Based Composite Structural Members: A Review [J].
Shao, Yi ;
Nguyen, Wilson ;
Bandelt, Matthew J. ;
Ostertag, Claudia P. ;
Billington, Sarah L. .
JOURNAL OF STRUCTURAL ENGINEERING, 2022, 148 (10)
[36]   Impact of UHPC Tensile Behavior on Steel Reinforced UHPC Flexural Behavior [J].
Shao, Yi ;
Billington, Sarah L. .
JOURNAL OF STRUCTURAL ENGINEERING, 2022, 148 (01)
[37]   Predicting the two predominant flexural failure paths of longitudinally reinforced high-performance fiber-reinforced cementitious composite structural members [J].
Shao, Yi ;
Billington, Sarah L. .
ENGINEERING STRUCTURES, 2019, 199
[38]   Strengthening of RC continuous beams by external prestressing [J].
Tan, Kiang Hwee ;
Tjandra, Robert A. .
JOURNAL OF STRUCTURAL ENGINEERING-ASCE, 2007, 133 (02) :195-204
[39]   Shear strengthening of RC beams with externally bonded UHPFRC laminates [J].
Tanarslan, Hasan Murat ;
Yalcinkaya, Caglar ;
Alver, Ninel ;
Karademir, Cihan .
COMPOSITE STRUCTURES, 2021, 262 (262)
[40]   Numerical Modelling of Concrete-to-UHPC Bond Strength [J].
Valikhani, Alireza ;
Jahromi, Azadeh Jaberi ;
Mantawy, Islam M. ;
Azizinamini, Atorod .
MATERIALS, 2020, 13 (06)