Magnetic Barkhausen Noise Testing for Subsurface Discontinuities under DC Magnetization

被引:0
|
作者
Liu, Chengyong [1 ]
Wu, Jianbo [1 ]
Ding, Song [2 ]
Wang, Zihan [1 ]
Zhang, Yunfei [3 ]
机构
[1] Sichuan Univ, Sch Mech Engn, Chengdu 610065, Peoples R China
[2] Nanjing Tech Univ, Coll Elect Engn & Control Sci, Nanjing 211816, Peoples R China
[3] China Acad Engn Phys, Inst Machinery Mfg Technol, Mianyang 621900, Sichuan, Peoples R China
基金
中国国家自然科学基金;
关键词
magnetic Barkhausen noise (MBN); subsurface discontinuities; DC magnetization; MBN energy; FERROMAGNETIC MATERIALS; SURFACE; STRESS;
D O I
10.32548/2020.me-04115
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Subsurface discontinuities are inevitably formed during the long-term operations of pipelines, oil tanks, ship hulls, and the like. However, it is still a big challenge to detect deeply buried subsurface discontinuities using existing nondestructive testing methods. In this paper, based on the high sensitivity of magnetic Barkhausen noise (MBN) to the movement of the domain walls, an MBN test under direct current (DC) magnetization is proposed for subsurface discontinuity detection. Under DC magnetization, subsurface discontinuities will distort the magnetic field distribution in the near-surface layer of the specimen and then affect the movement of the domain walls in this region. Meanwhile, through alternating current (AC) excitation, MBN testing is conducted to detect the movement of the domain walls to evaluate subsurface discontinuities. To validate the proposed technique, MBN experiments under DC magnetization are conducted to quantify subsurface discontinuities with different buried depths. Experimental results indicate that the proposed technique can detect subsurface discontinuities with buried depths of up to 5 mm, and the extracted MBN energy feature has an approximately linear relationship with the buried depth.
引用
收藏
页码:1310 / 1318
页数:9
相关论文
共 50 条
  • [41] INFLUENCE OF MAGNETIZING PARAMETERS ON THE MAGNETIC BARKHAUSEN NOISE
    DHAR, A
    ATHERTON, DL
    IEEE TRANSACTIONS ON MAGNETICS, 1992, 28 (06) : 3363 - 3366
  • [42] Barkhausen noise and size effects in magnetic microstructures
    1600, American Institute of Physics Inc. (90):
  • [43] Analog of the induction law for the magnetic Barkhausen noise
    Stupakov, Alexandr
    Perevertov, Alexej
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2020, 498
  • [44] Plastic deformation effects on magnetic Barkhausen noise
    Stefanita, CG
    Clapham, L
    Atherton, DL
    REVIEW OF PROGRESS IN QUANTITATIVE NONDESTRUCTIVE EVALUATION, VOLS 19A AND 19B, 2000, 509 : 1541 - 1548
  • [45] A NOVEL METHOD FOR DISTINGUISHING DISCONTINUITIES IN FERROMAGNETIC MATERIALS BASED ON EDDY CURRENT TESTING UNDER MAGNETIZATION
    Jia, Guangming
    Chen, Pengchao
    Li, Rui
    Fu, Kuan
    Wang, Rongbiao
    Song, Kai
    MATERIALS EVALUATION, 2023, 81 (06) : 36 - 42
  • [46] Magnetic Barkhausen noise for the study of magnetic anisotropy in stainless steels
    Neyra Astudillo, Miriam Rocio
    Nunez, Nicolas
    Lopez Pumarega, Maria Isabel
    Ruzzante, Jose
    Rodrigues, Linilson Padovese
    MATERIA-RIO DE JANEIRO, 2018, 23 (02):
  • [47] Robot measuring head for automated Barkhausen Noise testing
    Garstka, Tomasz
    Kwapisz, Marcin
    Krakowiak, Marlena
    Sawicki, Sylwester
    PRZEGLAD ELEKTROTECHNICZNY, 2024, 100 (10): : 164 - 167
  • [48] Adaptive Testing of Ferromagnetic Materials Utilizing Barkhausen Noise
    Pal'a, J.
    Bydzovsky, J.
    ACTA PHYSICA POLONICA A, 2014, 126 (03) : 855 - 859
  • [49] USE OF BARKHAUSEN NOISE-ANALYSIS IN NONDESTRUCTIVE TESTING
    SUNDSTROM, O
    TORRONEN, K
    MATERIALS EVALUATION, 1979, 37 (03) : 51 - 56
  • [50] Magnetic reversal nuclei - Part V. Propagation of large Barkhausen discontinuities
    Sixtus, KJ
    PHYSICAL REVIEW, 1935, 48 (05): : 425 - 430