Behavior of ultra-high-performance concrete deep beams reinforced by basalt fibers

被引:0
|
作者
Hussain, Laith N. [1 ]
Hamood, Mohammed J. [1 ]
Al-Shaarbaf, Ehsan A. [2 ]
机构
[1] Univ Technol Baghdad, Civil Engn Dept, Baghdad, Iraq
[2] Al Esraa Univ Coll, Civil Engn Dept, Baghdad, Iraq
来源
OPEN ENGINEERING | 2024年 / 14卷 / 01期
关键词
basalt fibers; steel fibers; deep beam; diagonal cracks; ultimate shear capacity; TENSILE PROPERTIES; SHEAR;
D O I
10.1515/eng-2024-0019
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Deep beams are crucial for construction projects due to their load-carrying capacity, shear resistance, and architectural adaptability. Ultra-high strength concrete and ultra-high-performance concrete (UHPC) are used in their production. Basalt fiber is used as an alternative due to its corrosion resistance, tensile strength, and thermal stability. This study investigates the behavior of UHPC deep beams reinforced with basalt fibers. Three sets of 11 specimens were constructed without transverse reinforcement and reinforced with either fibers or steel fibers. The study also analyzes the impact of parameters like shear strength capacity, crack development, and load-deflection behavior on UHPC deep beams. The study discovered that the inclusion of basalt fibers in UHPC deep beam can effectively postpone the onset of diagonal cracks. Incorporating basalt fiber at concentrations of 0.5, 0.75, and 1.0% led to respective increases of 48.17, 70.07, and 86.66% in the diagonal fracture force, as compared to the inclusion of steel fibers which resulted in increases of 18.24, 56.93, and 98.54% in diagonal fracture loads. The ideal ratio for enhancing the maximum shear capacity was found to be 0.75% of basalt. This specific percent resulted in the highest measured force out of the three percentages that were examined. The addition of basalt fibers at concentrations of 0.5, 0.75, and 1.0% resulted in respective improvements of 11.62, 30.08, and 28.69% in the ultimate shear capacities. During that period, steel fibers significantly enhanced the ultimate shear capacity, resulting in an increase of 19.83, 34.49, and 55.24% compared to specimens without fiber reinforcement. Regarding the second parameter of this investigation, a drop in the shear span ratio is linked to an augmentation in shear capacity and a reduction in mid-span deflection to varying extents for both the utilization of basalt and steel fibers.
引用
收藏
页数:17
相关论文
共 50 条
  • [31] Size effect in ultra-high-performance concrete beams
    Yoo, Doo-Yeol
    Banthia, Nemkumar
    Kang, Su-Tae
    Yoon, Young-Soo
    [J]. ENGINEERING FRACTURE MECHANICS, 2016, 157 : 86 - 106
  • [32] Effectiveness of steel fibers in ultra-high-performance fiber-reinforced concrete construction
    Dadmand, Behrooz
    Pourbaba, Masoud
    Sadaghian, Hamed
    Mirmiran, Amir
    [J]. ADVANCES IN CONCRETE CONSTRUCTION, 2020, 10 (03) : 195 - 209
  • [33] Experimental Investigation of Bending Behavior of Reinforced Ultra-High-Performance Concrete Decks
    Wang, Kangkang
    Deng, Kailai
    Zhao, Canhui
    Wang, Chengzhi
    [J]. FRONTIERS IN BUILT ENVIRONMENT, 2019, 5
  • [34] Tensile Behavior of Hybrid Fiber-Reinforced Ultra-High-Performance Concrete
    Li, Jiayue
    Deng, Zongcai
    [J]. FRONTIERS IN MATERIALS, 2021, 8
  • [35] Constitutive property behavior of an ultra-high-performance concrete with and without steel fibers
    Williams, E. M.
    Graham, S. S.
    Akers, S. A.
    Reed, P. A.
    Rushing, T. S.
    [J]. COMPUTERS AND CONCRETE, 2010, 7 (02): : 191 - 202
  • [36] Predicting the flexural behavior of ultra-high-performance fiber-reinforced concrete
    Yoo, Doo-Yeol
    Banthia, Nemkumar
    Yoon, Young-Soo
    [J]. CEMENT & CONCRETE COMPOSITES, 2016, 74 : 71 - 87
  • [37] Flexural Behavior of Beams with Ultra High Performance Fiber Reinforced Concrete
    Turker, Kaan
    Birol, Tamer
    Yavas, Altug
    Hasgul, Umut
    Yazici, Halit
    [J]. TEKNIK DERGI, 2019, 30 (01): : 8777 - 8801
  • [38] Stepped Reinforced Concrete Beams Retrofitted with Carbon Fiber-Reinforced Polymer Sheets and Ultra-High-Performance Concrete
    Kim, Yail J.
    Hassani, Aliasghar
    [J]. ACI STRUCTURAL JOURNAL, 2023, 120 (02) : 91 - 104
  • [39] Experimental study on the effects of external strengthening and elevated temperature on the shear behavior of ultra-high-performance fiber-reinforced concrete deep beams
    Abadel, Aref A.
    Abbas, Husain
    Alshaikh, Ibrahim M. H.
    Sennah, Khaled
    Tuladhar, Rabin
    Altheeb, Ali
    Alamri, Mohammed
    [J]. STRUCTURES, 2023, 49 : 943 - 957
  • [40] Strategic use of steel fibers and stirrups on enhancing impact resistance of ultra-high-performance fiber-reinforced concrete beams
    Lee, Jin-Young
    Yuan, Tianfeng
    Shin, Hyun-Oh
    Yoon, Young-Soo
    [J]. CEMENT & CONCRETE COMPOSITES, 2020, 107