Soft computing models for assessing bond performance of reinforcing bars in concrete at high temperatures

被引:9
作者
Albostami, Asad S. [1 ,2 ]
Al-Hamd, Rwayda Kh. S. [3 ]
Alzabeebee, Saif [4 ]
机构
[1] Univ Petra, Fac Engn, Civil Engn Dept, Amman, Jordan
[2] Oryx Universal Coll Partnership Liverpool John Moo, Sch Engn & Construct, Doha, Qatar
[3] Abertay Univ, Sch Appl Sci, Dundee, Scotland
[4] Univ Al Qadisiyah, Coll Engn, Dept Rd & Transport Engn, Al Diwaniyah, Al Qadisiyah, Iraq
关键词
Concrete-Steel bond under High Temperatures; Gene Expression Programming; Soft computing; STRENGTH; DESIGN; BEHAVIOR;
D O I
10.1007/s41062-023-01182-x
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The bond between steel and concrete in reinforced concrete structures is a multifaceted and intricate phenomenon that plays a vital role in the design and overall performance of such structures. It refers to the adhesion and mechanical interlock between the steel reinforcement bars and the surrounding concrete matrix. Under elevated temperatures, the bond is more complex under higher temperatures, yet having an accurate estimate is an important factor in design. Therefore, this paper focuses on using data-driven models to explore the performance of the concrete-steel bond under high temperatures using a Gene Expression Programming (GEP) soft computing model. The GEP models are developed to simulate the bond performance in order to understand the effect of high temperatures on the concrete-steel bond. The results were compared to the multi-objective evolutionary polynomial regression analysis (MOGA-EPR) models for different input variables. The new model would help the designers with strength predictions of the bond in fire. The dataset used for the model was obtained from experiments conducted in a laboratory setting that gathered a 316-point database to investigate concrete bond strength at a range of temperatures and with different fibre contents. This study also investigates the impact of the different variables on the equation using sensitivity analysis. The results show that the GEP models are able to predict bond performance with different input variables accurately. This study provides a useful tool for engineers to better understand the concrete-steel bond behaviour under high temperatures and predict concrete-steel bond performance under high temperatures.
引用
收藏
页数:19
相关论文
共 52 条
[1]   Lateral load bearing capacity modelling of piles in cohesive soils in undrained conditions: An intelligent evolutionary approach [J].
Ahangar-Asr, A. ;
Javadi, A. A. ;
Johari, A. ;
Chen, Y. .
APPLIED SOFT COMPUTING, 2014, 24 :822-828
[2]   RESIDUAL COMPRESSIVE AND BOND STRENGTHS OF LIMESTONE AGGREGATE CONCRETE SUBJECTED TO ELEVATED-TEMPERATURES [J].
AHMED, AE ;
ALSHAIKH, AH ;
ARAFAT, TI .
MAGAZINE OF CONCRETE RESEARCH, 1992, 44 (159) :117-125
[3]  
Al Hamd RKS., 2017, IABSE SYMPOS REP, V109, P3365
[4]   Bond behaviour of rebar in concrete at elevated temperatures: A soft computing approach [J].
Al Hamd, Rwayda Kh. S. ;
Alzabeebee, Saif ;
Cunningham, Lee S. ;
Gales, John .
FIRE AND MATERIALS, 2023, 47 (06) :804-814
[5]   The effect of load-induced thermal strain on flat slab behaviour at elevated temperatures [J].
Al Hamd, Rwayda Kh S. ;
Gillie, Martin ;
Warren, Holly ;
Torelli, Giacomo ;
Stratford, Tim ;
Wang, Yong .
FIRE SAFETY JOURNAL, 2018, 97 :12-18
[6]   Influence of loading ratio on flat slab connections at elevated temperature: A numerical study [J].
Al-Hamd, Rwayda Kh. S. ;
Gillie, Martin ;
Mohamad, Safaa Adnan ;
Cunningham, Lee S. .
FRONTIERS OF STRUCTURAL AND CIVIL ENGINEERING, 2020, 14 (03) :664-674
[7]   Novel shearhead reinforcement for slab-column connections subject to eccentric load and fire [J].
Al-Hamd, Rwayda Kh S. ;
Gillie, Martin ;
Cunningham, Lee S. ;
Warren, Holly ;
Albostami, Asad S. .
ARCHIVES OF CIVIL AND MECHANICAL ENGINEERING, 2019, 19 (02) :503-524
[8]  
Albostami AS., 2024, ASIAN J CIV ENG, V25, P183, DOI DOI 10.1007/S42107-023-00767-2
[9]   Regressive approach for predicting bearing capacity of bored piles from cone penetration test data [J].
Alkroosh, Iyad S. ;
Bahadori, Mohammad ;
Nikraz, Hamid ;
Bahadori, Alireza .
JOURNAL OF ROCK MECHANICS AND GEOTECHNICAL ENGINEERING, 2015, 7 (05) :584-592
[10]   Multiscale soft computing-based model of shear strength of steel fibre-reinforced concrete beams [J].
Alzabeebee, Saif ;
Al-Hamd, Rwayda Kh. S. ;
Nassr, Ali ;
Kareem, Mohammed ;
Keawsawasvong, Suraparb .
INNOVATIVE INFRASTRUCTURE SOLUTIONS, 2023, 8 (01)