Development of non-destructive method of detecting steel bars corrosion in bridge decks

被引:5
|
作者
Sadeghi, Javad [1 ]
Rezvani, Farshad Hashemi [2 ]
机构
[1] IUST, Ctr Excellence Railway Transportat, Tehran, Iran
[2] Univ Queensland, Sch Civil Engn, Brisbane, Qld, Australia
关键词
concrete bridge; defect detection; model updating; modal analysis; corrosion; DAMAGE IDENTIFICATION; MODEL;
D O I
10.12989/sem.2013.46.5.615
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
One of the most common defects in reinforced concrete bridge decks is corrosion of steel reinforcing bars. This invisible defect reduces the deck stiffness and affects the bridge's serviceability. Regular monitoring of the bridge is required to detect and control this type of damage and in turn, minimize repair costs. Because the corrosion is hidden within the deck, this type of damage cannot be easily detected by visual inspection and therefore, an alternative damage detection technique is required. This research develops a non-destructive method for detecting reinforcing bar corrosion. Experimental modal analysis, as a non-destructive testing technique, and finite element (FE) model updating are used in this method. The location and size of corrosion in the reinforcing bars is predicted by creating a finite element model of bridge deck and updating the model characteristics to match the experimental results. The practicality and applicability of the proposed method were evaluated by applying the new technique to a two spans bridge for monitoring steel bar corrosion. It was shown that the proposed method can predict the location and size of reinforcing bars corrosion with reasonable accuracy.
引用
收藏
页码:615 / 627
页数:13
相关论文
共 50 条
  • [1] Non-destructive monitoring of corrosion extent in steel rope wires via Barkhausen noise emission
    Neslusan, M.
    Bahleda, F.
    Minarik, P.
    Zgutova, K.
    Jambor, M.
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2019, 484 : 179 - 187
  • [2] Terahertz Non-destructive testing and imaging of corrosion in coated steel plates
    Jiang, Xuelei
    Xu, Ying
    Zhao, Dechun
    CONSTRUCTION AND BUILDING MATERIALS, 2023, 385
  • [3] Non-destructive measurement toolkit for corrosion monitoring and fracture detection of bridge tendons
    Budelmann, Harald
    Holst, Alexander
    Wichmann, Hans-Joachim
    STRUCTURE AND INFRASTRUCTURE ENGINEERING, 2014, 10 (04) : 492 - 507
  • [4] Integrated approach based on non-destructive technique and numerical simulation for assessment of corrosion in bridge
    Silva Y.J.
    Paulo R.N.
    Sousa I.N.L.
    Vieira M.M.
    Mesquita E.F.T.
    Journal of Building Pathology and Rehabilitation, 2022, 7 (1)
  • [5] Non-destructive evaluation techniques of reinforcing steel corrosion using infrared thermography
    Chung, L
    Paik, IK
    Roh, YS
    ADVANCES IN NONDESTRUCTIVE EVALUATION, PT 1-3, 2004, 270-273 : 1592 - 1597
  • [6] Non-destructive monitoring based on corrosion potential
    Cavalcante L.
    Araújo E.
    Silva M.
    Medeiros J.L.
    Oliveira V.
    Viera M.
    Monteiro A.
    Mesquita E.
    Journal of Building Pathology and Rehabilitation, 2020, 5 (1)
  • [7] New non-destructive method for linear polarisation resistance corrosion rate measurement
    Sadowski, L.
    ARCHIVES OF CIVIL AND MECHANICAL ENGINEERING, 2010, 10 (02) : 109 - 116
  • [8] Reinforcement Corrosion in RC Hollow Piers: Destructive and Non-Destructive Tests
    Lignola, Gian Piero
    Fabbrocino, Francesco
    Prota, Andrea
    Cosenza, Edoardo
    Manfredi, Gaetano
    MATERIALS, 2023, 16 (07)
  • [9] Understanding Multi-modal Non-destructive Testing Data Through the Evaluation of Twelve Deteriorating Reinforced Concrete Bridge Decks
    Pailes, Brian M.
    Gucunski, Nenad
    JOURNAL OF NONDESTRUCTIVE EVALUATION, 2015, 34 (04) : 1 - 14
  • [10] Understanding Multi-modal Non-destructive Testing Data Through the Evaluation of Twelve Deteriorating Reinforced Concrete Bridge Decks
    Brian M. Pailes
    Nenad Gucunski
    Journal of Nondestructive Evaluation, 2015, 34