AUTOMATIC STRESS DETECTION IN REINFORCED BAR BASED ON METAL MAGNETIC MEMORY

被引:1
|
作者
Liu, Lei [1 ]
Zhou, Jianting [1 ]
Zhao, Ruiqiang [2 ]
Liu, Renming [1 ]
Liao, Leng [2 ]
机构
[1] Chongqing Jiaotong Univ, State Key Lab Mt Bridge & Tunnel Engn, Chongqing, Peoples R China
[2] Chongqing Jiaotong Univ, Sch Mat Sci & Engn, Chongqing, Peoples R China
来源
INTERNATIONAL JOURNAL OF ROBOTICS & AUTOMATION | 2021年 / 36卷 / 05期
基金
中国国家自然科学基金;
关键词
Reinforced concrete bridge; stress detection; metal magnetic memory; elastic deformation stage; force-magnetic coupling; automation;
D O I
10.2316/J.2021.206-206-0652
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Accurate detection of the stress level of steel bars inside a reinforced concrete bridge plays a vital role in assessing the bearing capacity and safety of the bridge and is one of the urgent problems in the field of bridge non-destructive testing. Based on the magnetic memory effect of ferromagnetic materials, this paper experimentally studied the leakage magnetic field distribution on the surface of the reinforced bar in the bridge with axial tensile stress. A force-magnetic coupling parameter named A(F) was proposed, and it depends on the maximum fluctuation value of the axial leakage magnetic field scanning curve of the steel bar. Within the range of elastic deformation, A(F) varies linearly with the axial tension F. The influence of concrete strength, steel bar diameter, and lift-off height on the distribution characteristics of leakage magnetic field, especially the slope of the A(F)-F line in the elastic stage, is analyzed. After calibrating the slope of the A(F)-F line for a specific steel bar covered by concrete, an automatic stress non-destructive testing method is proposed to calculate the tensile stress level of the steel bar inside the bridge by using the leakage magnetic field.
引用
收藏
页码:354 / 362
页数:9
相关论文
共 50 条
  • [41] Quantitative Characterization of Stress Concentration of Low-carbon Steel by Metal Magnetic Memory Testing
    Bao, Sheng
    Fu, Meili
    Gu, Yibin
    Lou, Huangjie
    MATERIALS EVALUATION, 2017, 75 (03) : 397 - 405
  • [42] Multiscale investigation of magnetic field distortion on surface of ferromagnetic materials caused by stress concentration for metal magnetic memory method
    Qiu, Guotao
    Cai, Yongqing
    Li, Zongjin
    COMPUTATIONAL MATERIALS SCIENCE, 2022, 209
  • [43] Character Recognition of Metal Magnetic Memory Signal Based on Wavelet Packet Transposition
    Zhang Xi-Yong
    Zhang Yong-Xiang
    Ming Ting-Tao
    ICEET: 2009 INTERNATIONAL CONFERENCE ON ENERGY AND ENVIRONMENT TECHNOLOGY, VOL 2, PROCEEDINGS, 2009, : 99 - 102
  • [44] Defect feature extraction and recognition of buried pipeline based on metal magnetic memory
    Yang, Yong
    Wang, Guan-Jun
    Wang, Yu
    Wan, Yong
    Dai, Yong-Shou
    INTERNATIONAL JOURNAL OF MODELLING IDENTIFICATION AND CONTROL, 2020, 35 (04) : 353 - 362
  • [45] Residual Life Assessment for Ferromagnetic Components Based on Metal Magnetic Memory Technology
    Ren Shang-kun
    Li Yi
    Li Xin-lei
    HIGH PERFORMANCE STRUCTURES AND MATERIALS ENGINEERING, PTS 1 AND 2, 2011, 217-218 : 504 - 509
  • [46] Experimental Study on Corrosion of Unstressed Steel Strand based on Metal Magnetic Memory
    Runchuan Xia
    Jianting Zhou
    Hong Zhang
    Daoliang Zhou
    Zeyu Zhang
    KSCE Journal of Civil Engineering, 2019, 23 : 1320 - 1329
  • [47] Experimental Study on Corrosion of Unstressed Steel Strand based on Metal Magnetic Memory
    Xia, Runchuan
    Zhou, Jianting
    Zhang, Hong
    Zhou, Daoliang
    Zhang, Zeyu
    KSCE JOURNAL OF CIVIL ENGINEERING, 2019, 23 (03) : 1320 - 1329
  • [48] Automatic lexical stress detection for English learning
    Zhu, Y
    Liu, J
    Liu, RS
    2003 INTERNATIONAL CONFERENCE ON NATURAL LANGUAGE PROCESSING AND KNOWLEDGE ENGINEERING, PROCEEDINGS, 2003, : 728 - 733
  • [49] Theoretical investigation of metal magnetic memory testing technique for detection of magnetic flux leakage signals from buried defect
    Xu, Kunshan
    Qiu, Xingqi
    Tian, Xiaoshuai
    NONDESTRUCTIVE TESTING AND EVALUATION, 2018, 33 (01) : 45 - 55
  • [50] Study on Metal Magnetic Memory Testing Mechanism
    Liu, B.
    Fu, Y.
    Xu, B.
    RESEARCH IN NONDESTRUCTIVE EVALUATION, 2015, 26 (01) : 1 - 12