The Estimation of Defect of Mono Cast Nylon by Infrared Thermography

열화상 기술에 의한 M.C 나일론의 내부 결함에 대한 평가

  • Han, Jeong-Seb (Dept. of Materials Science and Engineering, DonA Univ.)
  • 한정섭 (동아대학교 신소재공학과)
  • Published : 2009.04.30

Abstract

Infrared thermography was used to determine the location, size, and depth of defects under the surface of M.C nylon. Defects were created in a specimen by back-drilling circular holes. These defects were located at the maximum temperature difference that occurred. The sizes of the defects could be calculated by means of the full width at half of the maximum temperature difference. The depth of a defect could be calculated by the peak time and the maximum temperature difference. The maximum temperature difference between a defect and normal part was decreased with the depth of the defect. And the peak time also slowly appeared with the depth of the defect.

Keywords

References

  1. 박진형, 최현호, 지광습, 조효남 (2006). "열화상 카메라의 최적공극탐지를 위한 민감도 분석", 대한 토목학회 정기 학술대회, pp 2387-2390
  2. 정란, 백인관 (2004). 적외선 열화상 데이터를 이용한 비파괴방식의 철근 부식 정도 측정 방법, 대한민국 특허, 공개번호10-2004-0041243
  3. 한정섭, 박진환 (2008). "적외선 카메라에 의한 연강의 비파괴 평가에 대한 연구", 한국해양공학회지, 제22권, 제2호, pp72-77
  4. Yang, B., Liaw, P.K., Morrison, M., Liu, C.T., Buchanan, R.A., Huang, J.Y., Kuo, R.C., Huang, J.G. and Fielden, D.E. (2005). "Temperature Evolution during Fatigue Damage", Intermetallics, Vol 13, pp 419-428 https://doi.org/10.1016/j.intermet.2004.07.032
  5. Han, J.S. and Park, J.H. (2006). "Detection of Corrosion Steel Under an Organic Coating by Infrared Photography", Corrosion Sicence, Vol 46, pp 787-793 https://doi.org/10.1016/j.corsci.2003.12.001
  6. Ibarra-Castanedo, C., Gonzalez, D., Klein, M., Pilla, M., Vallerand, S. and Maldague, XPV. (2004). "Infrared Image Processing and Data Analysis", Infrared Phys. Technol., Vol 46, pp 33-40 https://doi.org/10.1016/j.infrared.2004.03.011
  7. Maldague, X.P.V. (2000). Application of Infrared Thermography on Nondestructive Evaluation, Rastogi PK, Inaudi, D., editors, Trends in Optical Nondestructive Teting and Inspection, New York, Elsevier Science
  8. Maldague, X.P.V. (2001). Theory and Practice of Infrared Technology for Nondestructive Testing, New York, Wiley
  9. Ludwig, N. and Teruzzi, P. (2002). "Heat Losses and 3D Diffusion Phenomena for Defect Sizing Procedures in Video Pulse Thermography", Infrared Physics & Technology, Vol 43, Issues 3-5, pp 297-301 https://doi.org/10.1016/S1350-4495(02)00155-X
  10. Saintey, M.B. and Almond, D.P. (1995). "Defect Sizing by Transient Thermography II: A Numerical Treatment", J. Phys. D. Appl. Phys., Vol 28, pp 2546 https://doi.org/10.1088/0022-3727/28/12/023
  11. Saintey, M.B. and Almond, D.P. (1997). "An Artificial Neural Network Interpreter for Transient Thermography Image Data", NDT&E Int., Vol 30, No 5, pp 291-295 https://doi.org/10.1016/S0963-8695(96)00071-0