Lockin Thermography with Optical or Ultrasound Excitation

被引:0
|
作者
Gleiter, Andreas [1 ]
Spiessberger, Christian [1 ]
Busse, Gerd [1 ]
机构
[1] Univ Stuttgart, Inst Polymer Technol, NDE Grp IKT ZfP, D-70569 Stuttgart, Germany
来源
STROJNISKI VESTNIK-JOURNAL OF MECHANICAL ENGINEERING | 2010年 / 56卷 / 10期
关键词
optical lockin-thermography; ultrasound lockin-thermography; defect-selective imaging; NDE;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Thermography is a well established non-destructive testing (NDT) technique providing images of temperature distributions. if the temperature field on a sample surface is modulated by periodical injection of heat either from outside or inside the sample, the time dependence of the temperature field provides information on thermal features hidden underneath the surface. Using the Fourier-transform, this information is finally compressed into a phase and an amplitude image. Phase images are more robust than amplitude images, because surface features and reflections are effectively suppressed. With excitation by ultrasound, the heating mechanism is local conversion of elastic energy into heat which occurs preferably due to local friction losses caused e.g. by the relative motion of boundaries in a crack. As intact material and boundaries are suppressed in such an image, it displays defects selectively. The techniques and their applications are illustrated by examples that were obtained on various industiy-relevant components. (C) 2010 Journal of Mechanical Engineering. All rights reserved.
引用
收藏
页码:619 / 624
页数:6
相关论文
共 50 条
  • [11] Potential and limitations of eddy current lockin-thermography
    Riegert, G.
    Gleiter, A.
    Busse, G.
    THERMOSENSE XXVIII, 2006, 6205
  • [12] Glass fiber airplane inspected with infrared lockin thermography
    Salerno, A
    Wu, D
    Busse, G
    Malter, U
    REVIEW OF PROGRESS IN QUANTITATIVE NONDESTRUCTIVE EVALUATION, VOLS 16A AND 16B, 1997, 16 : 357 - 364
  • [13] Application of data fusion to thermal wave imaging with lockin thermography
    Busse, G.
    Spiessberger, C.
    Gleiter, A.
    15TH INTERNATIONAL CONFERENCE ON PHOTOACOUSTIC AND PHOTOTHERMAL PHENOMENA (ICPPP15), 2010, 214
  • [14] Thermo-Electrical Lockin Thermography for Characterization of Subsurface Defects
    Kordatos, E. Z.
    Exarchos, D. A.
    Dassios, K. G.
    Matikas, T. E.
    SMART SENSOR PHENOMENA, TECHNOLOGY, NETWORKS, AND SYSTEMS INTEGRATION 2014, 2014, 9062
  • [15] Optical excitation thermography with VCSEL-array source
    Rahammer, M.
    Vetter, D.
    Kreutzbruck, M.
    13TH QUANTITATIVE INFRARED THERMOGRAPHY CONFERENCE, 2016, : 657 - 662
  • [16] Eddy-current lockin-thermography: Method and its potential
    Riegert, G
    Zweschper, T
    Busse, G
    JOURNAL DE PHYSIQUE IV, 2005, 125 : 587 - 591
  • [17] Improvement of microwave imaging systems for NDE by using lockin-thermography
    Steegmuller, R
    Diener, L
    Wu, D
    9TH INTERNATIONAL CONFERENCE ON PHOTOACOUSTIC AND PHOTOTHERMAL PHENOMENA, CONFERENCE DIGEST, 1996, : 91 - 92
  • [18] A design of excitation source for the optical lock-in thermography
    Zhu, Yu-yu
    Gao, Bin
    Li, Hao-ran
    PROCEEDINGS OF 2017 IEEE FAR EAST FORUM ON NONDESTRUCTIVE EVALUATION/TESTING: NEW TECHNOLOGY & APPLICATION (IEEE FENDT 2017), 2017, : 259 - 262
  • [19] Detection and Characterization of Defects in Isotropic and Anisotropic Structures Using Lockin Thermography
    Maierhofer, Christiane
    Myrach, Philipp
    Krankenhagen, Rainer
    Roellig, Mathias
    Steinfurth, Henrik
    JOURNAL OF IMAGING, 2015, 1 (01) : 220 - 248
  • [20] Characterization of microwave near-zone field by using lockin-thermography
    Diener, L
    Steegmuller, R
    Wu, D
    Busse, G
    PROGRESS IN NATURAL SCIENCE, 1996, 6 : S95 - S98