The compression chord capacity model for the shear design and assessment of reinforced and prestressed concrete beams

被引:71
|
作者
Cladera, Antoni [1 ]
Mari, Antonio [2 ]
Bairan, Jesus [2 ]
Ribas, Carlos [1 ]
Oller, Eva [2 ]
Duarte, Noemi [2 ]
机构
[1] Univ Illes Balears, Dept Phys, Ctra Valldemossa Km 7 5, Palma De Mallorca 07122, Balearic Island, Spain
[2] Univ Politecn Cataluna, Dept Civil & Environm Engn, Campus Nord C1-201,Jordi Girona 1-3, Barcelona 08034, Spain
关键词
Shear strength; mechanical model; structural code; reinforced concrete; prestressed concrete; T-beam; stirrups; shear-flexure interaction; design; assessment; STRENGTH; TESTS; MEMBERS;
D O I
10.1002/suco.201500214
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
A simplified mechanical model is presented for the shear strength prediction of reinforced and prestressed concrete members with and without transverse reinforcement, with I, T or rectangular cross-section. The model, derived with further simplifications from a previous one developed by the authors, incorporates the contributions of the concrete compression chord, the cracked web, the dowel action and the shear reinforcement in a compact formulation. The mechanical character of the model provides valuable information about the physics of the problem and incorporates the most relevant parameters governing the shear strength of structural concrete members. The predictions of the model fit very well the experimental results collected in the ACI-DAfStb databases of shear tests on slender reinforced and prestressed concrete beams with and without stirrups. Due to this fact and the simplicity of the derived equations it may become a very useful tool for structural design and assessment in engineering practice.
引用
收藏
页码:1017 / 1032
页数:16
相关论文
共 50 条
  • [1] Shear Design and Assessment of Reinforced and Prestressed Concrete Beams Based on a Mechanical Model
    Mari, Antonio
    Bairan, Jesus M.
    Cladera, Antoni
    Oller, Eva
    JOURNAL OF STRUCTURAL ENGINEERING, 2016, 142 (10)
  • [2] Shear-flexural strength mechanical model for the design and assessment of reinforced concrete beams
    Mari, Antonio
    Bairan, Jesus
    Cladera, Antoni
    Oller, Eva
    Ribas, Carlos
    STRUCTURE AND INFRASTRUCTURE ENGINEERING, 2015, 11 (11) : 1399 - 1419
  • [3] Shear capacity prediction model for prestressed concrete beams via data-driven methods
    Sung, Wonsuh
    Potnuru, Nikhil
    Alfaris, Suhaib
    Sideris, Petros
    Paal, Stephanie
    Koliou, Maria
    Birely, Anna
    Hueste, Mary Beth
    Hurlebaus, Stefan
    STRUCTURES, 2025, 71
  • [4] Theoretical model of shear capacity of steel fiber reinforced concrete beams
    Lantsoght, Eva O. L.
    ENGINEERING STRUCTURES, 2023, 280
  • [5] Analysis and design for torsion in reinforced and prestressed concrete beams
    Rahal, KN
    STRUCTURAL ENGINEERING AND MECHANICS, 2001, 11 (06) : 575 - 590
  • [6] Application of the Compression Chord Capacity Model to predict the fatigue shear strength of reinforced concrete members without stirrups
    Cladera, Antoni
    Ribas, Carlos
    Oiler, Eva
    Mari, Antonio
    CMMOST 2019: 5TH INTERNATIONAL CONFERENCE ON MECHANICAL MODELS IN STRUCTURAL ENGINEERING (CMMOST 2019), 2019, : 95 - 102
  • [7] Shear fatigue strength of reinforced concrete members without transverse reinforcement according to the compression chord capacity model
    Cladera, Antoni
    Ribas, Carlos
    Oller, Eva
    Mari, Antonio
    ENGINEERING STRUCTURES, 2020, 211 (211)
  • [8] Shear-flexural strength mechanical model for the design and assessment of reinforced concrete beams subjected to point or distributed loads
    Marí A.
    Cladera A.
    Bairán J.
    Oller E.
    Ribas C.
    Frontiers of Structural and Civil Engineering, 2014, 8 (4) : 337 - 353
  • [9] Design procedure for prestressed concrete beams
    Colajanni, Piero
    Recupero, Antonino
    Spinella, Nino
    COMPUTERS AND CONCRETE, 2014, 13 (02) : 235 - 253
  • [10] Assessment of shear capacity methods of steel fiber reinforced concrete beams using full scale prestressed bridge beams
    Bendtsen, Bo
    Sanjayan, Jay G.
    MATERIALS AND STRUCTURES, 2015, 48 (11) : 3473 - 3483