Stop Criteria for Flexure for Proof Load Testing of Reinforced Concrete Structures

被引:8
|
作者
Lantsoght, Eva O. L. [1 ,2 ]
Yang, Yuguang [2 ]
van der Veen, Cor [2 ]
Hordijk, Dick A. [2 ]
de Boer, Ane [3 ]
机构
[1] Univ San Francisco Quito, Politecn, Quito, Ecuador
[2] Delft Univ Technol, Concrete Struct, Dept Engn Struct Civil Engn & Geoscienoes, Delft, Netherlands
[3] Ane Boer Consultancy, Arnhem, Netherlands
关键词
assessment; bending moment capacity; crack width; field test; proof load test; reinforced concrete; reinforced concrete bridge; strain; VIADUCT; FIELD;
D O I
10.3389/fbuil.2019.00047
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Existing bridges with large uncertainties can be assessed with a proof load test. In a proof load test, a load representative of the factored live load is applied to the bridge at the critical position. If the bridge can carry this load without distress, the proof load test shows experimentally that the bridge fulfills the requirements of the code. Because large loads are applied during proof load tests, the structure or element that is tested needs to be carefully monitored during the test. The monitored structural responses are interpreted in terms of stop criteria. Existing stop criteria for flexure in reinforced concrete can be extended with theoretical considerations. These proposed stop criteria are then verified with experimental results: reinforced concrete beams failing in flexure and tested in the laboratory, a collapse test on an existing reinforced concrete slab bridge that reached flexural distress, and the pilot proof load tests that were carried out in the Netherlands and in which no distress was observed. The tests in which failure was obtained are used to evaluate the margin of safety provided by the proposed stop criteria. The available pilot proof load tests are analyzed to see if the proposed stop criteria are not overly conservative. The result of this comparison is that the stop criteria are never exceeded. Therefore, the proposed stop criteria can be used for proof load tests for the failure mode of bending moment in reinforced concrete structures.
引用
收藏
页数:14
相关论文
共 50 条
  • [31] BEHAVIOR OF CONCRETE AND REINFORCED-CONCRETE STRUCTURES SUBJECTED TO REPEATED SERVICE LOAD
    BERES, L
    LENKEI, P
    ACTA TECHNICA ACADEMIAE SCIENTIARUM HUNGARICAE, 1977, 84 (1-2): : 125 - 131
  • [32] Lap-spliced connections of steel and FRP bars in reinforced flexure concrete structures
    Zhou, Jiafeng
    Stuempel, Marina
    Kang, Chongjie
    Marx, Steffen
    ENGINEERING STRUCTURES, 2022, 263
  • [33] Investigations into the Shear Load-Capacity of Strengthened Reinforced Concrete Structures with Carbon-Reinforced Concrete
    May, Sebastian
    Schumann, Alexander
    BUILDINGS, 2023, 13 (11)
  • [34] Analysis of tranverse reinforcement circular section of reinforced concrete columnas the effect of flexure and axial load
    Kartini, W.
    Astawa, M. D.
    Fauzi, A.
    2ND INTERNATIONAL JOINT CONFERENCE ON SCIENCE AND TECHNOLOGY (IJCST) 2017, 2018, 953
  • [35] Safety concept for textile reinforced concrete structures with bending load
    Rempel, Serge
    Ricker, Marcus
    Hegger, Josef
    BETON- UND STAHLBETONBAU, 2020, 115 (09) : 697 - +
  • [36] Fatigue fracture of fibre reinforced concrete in flexure
    Stephen, Stefie J.
    Gettu, Ravindra
    MATERIALS AND STRUCTURES, 2020, 53 (03)
  • [37] Flexure Behavior of Corroded Reinforced Concrete Beam
    Liu, Changjun
    Li, Yage
    Shui, Yi
    Yuan, Longwen
    Li, Xinyan
    Zhao, Kaiji
    Journal of Engineering Science and Technology Review, 2024, 17 (03) : 60 - 70
  • [38] Fatigue performance in flexure of fiber reinforced concrete
    Jun, Z
    Stang, H
    ACI MATERIALS JOURNAL, 1998, 95 (01) : 58 - 67
  • [39] Fatigue fracture of fibre reinforced concrete in flexure
    Stefie J. Stephen
    Ravindra Gettu
    Materials and Structures, 2020, 53
  • [40] Quality control criteria for gas permeability testing of concrete structures
    Ptacek, Lisa
    Grba, Damian
    Granzner, Maximilian
    Sattler, Fabian
    Frangopol, Dan M.
    Strauss, Alfred
    EUROPEAN ASSOCIATION ON QUALITY CONTROL OF BRIDGES AND STRUCTURES, EUROSTRUCT 2023, VOL 6, ISS 5, 2023, : 1026 - 1032