4.7 Article

3D modeling of pulsed thermal NDT: Back to basic features and subtle phenomena

期刊

NDT & E INTERNATIONAL
卷 130, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.ndteint.2022.102659

关键词

Active thermal NDT; Infrared thermography; Heat conduction; Defect

资金

  1. Program of Development of Tomsk Polytechnic University [Priority 2030-NIP-EB-008-0000-2022]
  2. Russian Science Foundation [22-19-00103]
  3. Russian State Project Science [FSWW-2020-0014]

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By using advanced 3D modeling, this study describes the basic features of thermal nondestructive testing (TNDT) problems and analyzes subtle physical phenomena that have not been properly studied before.
By using advanced 3D modeling of thermal nondestructive testing (TNDT) problems, most of basic TNDT features are shortly described, but the emphasis is put on the analysis of some subtle physical phenomena which may be observed in TNDT experiments, and most of them have not been properly reflected in the earlier studies. These are: 1) the smashing of 2D defect surface footprints because of 3D heat diffusion, 2) practical approaches to determining defect lateral size by their surface temperature indications, 3) clarification of a limiting defect size/ depth ratio providing reliable detection of subsurface defects; 4) inversion of classical temperature signals at longer times, 5) defect shading, 6) influence of composite anisotropy on defect detectability, and 7) combined heating/cooling allowing to govern behavior of surface temperature profiles.

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