Use of Non-Linear Ultrasonic Techniques to Detect Cracks Due to Steel Corrosion in Reinforced Concrete Structures

被引:31
作者
Angel Climent, Miguel [1 ]
Miro, Marina [1 ]
Carbajo, Jesus [2 ]
Poveda, Pedro [2 ]
de Vera, Guillem [1 ]
Ramis, Jaime [2 ]
机构
[1] Univ Alicante, Civil Engn Dept, Alicante 03690, Spain
[2] Univ Alicante, DFISTS, Alicante 03690, Spain
关键词
corrosion; steel; reinforced concrete; cracking; ultrasonic wave; non-destructive detection; NONDESTRUCTIVE EVALUATION; ACOUSTIC-EMISSION; REBAR CORROSION; COVER CRACKING; DAMAGE; EFFICIENCY; MICRO; BARS;
D O I
10.3390/ma12050813
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In this work, non-linear ultrasonic wave techniques have been used to detect the onset of micro-cracking due to steel corrosion in model reinforced concrete elements. The specimens were of prismatic shape with a single steel rebar. The corrosion was forced by admixing an appropriate amount of sodium chloride at the moment of preparing the concrete mix, and by the application of an electric field, using a constant current density power source, and making the steel rebar work as the anode, and an external counter-electrode as the cathode. The preliminary results indicate that the onset of cracking seems to be accompanied by the appearance of higher-harmonic generation at the output signal (harmonic distortion), when the system is excited by the means of an ultrasound wave with a burst central frequency. Other phenomena related to the micro-cracks induced by corrosion, such is the parametric generation with respect to the fundamental amplitude, have not been observed until now.
引用
收藏
页数:12
相关论文
共 50 条
[31]   Service life of reinforced concrete structures with corrosion damage due to chloride attack [J].
Suwito, A ;
Xi, YP .
LIFE-CYCLE PERFORMANCE OF DETERIORATING STRUCTURES: ASSESSMENT, DESIGN, AND MANAGEMENT, 2004, :207-218
[32]   Fracture analysis of reinforced concrete bridge structures with account of concrete cracking under steel corrosion [J].
Benin, A. V. ;
Semenov, A. S. ;
Semenov, S. G. .
ADVANCES IN CIVIL ENGINEERING AND BUILDING MATERIALS III, 2014, 831 :364-+
[33]   Correlation of Surface Cracks of Concrete due to Corrosion and Bond Strength (between Steel Bar and Concrete) [J].
Apostolopoulos, Charis Alk. ;
Koulouris, Konstantinos F. ;
Apostolopoulos, Alkiviadis Ch. .
ADVANCES IN CIVIL ENGINEERING, 2019, 2019
[34]   Use of Stainless Steel as a Reinforced Material in Concrete Structures [J].
Sadaba, M. ;
Martinez, G. ;
Sanchez, M. .
PORTUGALIAE ELECTROCHIMICA ACTA, 2005, 23 (01) :55-75
[35]   Finite element modeling of concrete cover cracking due to non-uniform steel corrosion [J].
Chen, E. ;
Leung, Christopher K. Y. .
ENGINEERING FRACTURE MECHANICS, 2015, 134 :61-78
[36]   A geometrically non-linear three-dimensional cohesive crack method for reinforced concrete structures [J].
Rabczuk, Timon ;
Zi, Goangseup ;
Bordas, Stephane ;
Nguyen-Xuan, Hung .
ENGINEERING FRACTURE MECHANICS, 2008, 75 (16) :4740-4758
[37]   Damage-sensitive features from non-linear vibration response of reinforced concrete structures [J].
Srinivas, Voggu ;
Sasmal, Saptarshi ;
Ramanjaneyulu, Karusala .
STRUCTURAL HEALTH MONITORING-AN INTERNATIONAL JOURNAL, 2014, 13 (03) :233-250
[38]   PREDICTING THE PROPAGATION TIME DUE TO GENERAL CORROSION IN CHLORIDE CONTAMINATED REINFORCED CONCRETE STRUCTURES [J].
Zhang, Juhui ;
Cheung, Moe M. S. .
INTERNATIONAL SYMPOSIUM ON LIFE-CYCLE PERFORMANCE OF BRIDGES AND STRUCTURES, 2010, :564-571
[39]   A novel method for implementation of corrosion-induced cracks in the finite element models of reinforced concrete structures [J].
Fahimi, S. ;
Zakerzadeh, M. R. ;
Baghani, M. ;
Zandi, K. .
SCIENTIA IRANICA, 2021, 28 (03) :1079-1095
[40]   Non-linear finite element analysis of reinforced concrete beams with temperature differentials [J].
Mirzazadeh, M. Mehdi ;
Green, Mark F. .
ENGINEERING STRUCTURES, 2017, 152 :920-933