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Evaluation of coating thickness by thermal wave imaging: A comparative study of pulsed and lock-in infrared thermography – Part II: Experimental investigation

Infrared physics & technology, v.92, 2018년, pp.24 - 29  

Shrestha, Ranjit (Corresponding author.) ,  Kim, Wontae

Abstract AI-Helper 아이콘AI-Helper

Abstract In this work, we focused on the experimental arrangement of thermal wave imaging (TWI) methods for the quantitative evaluation of non-uniform topcoat thickness of thermal barrier coatings (TBCs). Two TWI techniques, pulsed thermography (PT) and lock-in thermography (LIT) were implemented o...

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참고문헌 (64)

  1. Mater. Today Clarke 8 6 22 2005 10.1016/S1369-7021(05)70934-2 Thermal barrier coating materials 

  2. MRS Bull. Clarke 37 10 891 2012 10.1557/mrs.2012.232 Thermal-barrier coatings for more efficient gas-turbine engines 

  3. J. Therm. Spray Technol. Rogé 12 4 530 2003 10.1361/105996303772082279 Nondestructive measurement of porosity in thermal barrier coatings 

  4. Science Padture 296 5566 280 2002 10.1126/science.1068609 Thermal barrier coatings for gas-turbine engine applications 

  5. Mater. Charact. Song 120 244 2016 10.1016/j.matchar.2016.09.006 Thickness and microstructure characterization of TGO in thermal barrier coatings by 3D reconstruction 

  6. Appl. Therm. Eng. Tang 107 463 2016 10.1016/j.applthermaleng.2016.07.008 Experimental study on debonding defects detection in thermal barrier coating structure using infrared lock-in thermographic technique 

  7. Therm. Barrier Coat. Chen 243 2011 10.1533/9780857090829.3.243 Non-destructive evaluation (NDE) of the failure of thermal barrier coatings 

  8. IEEJ Trans. Electr. Electron. Eng. Fukuchi 11 4 391 2016 10.1002/tee.22255 Nondestructive inspection of thermal barrier coating of gas turbine high temperature components 

  9. MRS Bull. Sampath 37 10 903 2012 10.1557/mrs.2012.233 Processing science of advanced thermal-barrier systems 

  10. MRS Bull. Zhu 25 7 43 2000 10.1557/mrs2000.123 Thermal-barrier coatings for advanced gas-turbine engines 

  11. J. Therm. Spray Technol. Nissley 6 1 91 1997 10.1007/BF02646317 Thermal barrier coating life modeling in aircraft gas turbine engines 

  12. Electr. Eng. Jpn. Fukuchi 189 1 1 2014 10.1002/eej.22624 Topcoat thickness measurement of thermal barrier coating of gas turbine blade using terahertz wave 

  13. J. Asian Ceram. Soc. Wang 2 2 102 2014 10.1016/j.jascer.2014.01.006 Design and optimization of coating structure for the thermal barrier coatings fabricated by atmospheric plasma spraying via finite element method 

  14. Meas. Sci. Technol. Yang 13 8 1259 2002 10.1088/0957-0233/13/8/313 Pulsed eddy-current measurement of a conducting coating on a magnetic metal plate 

  15. NDT E Int. Yin 40 1 43 2007 10.1016/j.ndteint.2006.07.009 Thickness measurement of non-magnetic plates using multi-frequency eddy current sensors 

  16. Int. J. Precis. Eng. Manuf. Zhang 16 8 1723 2015 10.1007/s12541-015-0226-7 Precision measurement of coating thickness on ferromagnetic tube using pulsed eddy current technique 

  17. Nondestr. Test Eval. Zhang 31 3 191 2016 10.1080/10589759.2015.1081903 Thickness measurement of multi-layer conductive coatings using multifrequency eddy current techniques 

  18. Ultrasonics Lavrentyev 39 3 211 2001 10.1016/S0041-624X(00)00066-4 An ultrasonic method for determination of elastic moduli, density, attenuation and thickness of a polymer coating on a stiff plate 

  19. Appl. Phys. Lett. Dixon 88 14 141907 2006 10.1063/1.2192144 Coating thickness and elastic modulus measurement using ultrasonic bulk wave resonance 

  20. NDT E Int. Zhao 43 7 579 2010 10.1016/j.ndteint.2010.06.001 Simultaneous determination of the coating thickness and its longitudinal velocity by ultrasonic nondestructive method 

  21. J. Therm. Spray Technol. Chen 21 6 1184 2012 10.1007/s11666-012-9811-9 Ultrasonic detection of delamination and material characterization of thermal barrier coatings 

  22. X-Ray Spectrom. Jain 8 1 11 1979 10.1002/xrs.1300080106 An X-ray fluorescence method for coating thickness measurement 

  23. Spectrochim. Acta Part B: Atomic Spectrosc. Kolbe 60 4 505 2005 10.1016/j.sab.2005.03.018 Thickness determination for Cu and Ni nanolayers: Comparison of completely reference-free fundamental parameter-based X-ray fluorescence analysis and X-ray reflectometry 

  24. Rev. Sci. Instrum. Carapelle 78 12 123109 2007 10.1063/1.2822613 Portable x-ray fluorescence spectrometer for coating thickness measurement 

  25. Spectrochim. Acta Part B: Atomic Spectros. Queralt 65 7 583 2010 10.1016/j.sab.2010.05.008 Thickness measurement of semiconductor thin films by energy dispersive X-ray fluorescence benchtop instrumentation: Application to GaN epilayers grown by molecular beam epitaxy 

  26. 10.1063/1.3114273 J. White, G. Fichter, A. Chernovsky, J.F. Whitaker, D. Das, T.M. Pollock, D. Zimdars. Time domain terahertz non‐destructive evaluation of aeroturbine blade thermal barrier coatings, vol. 1096. No. 1, 2009, pp. 434-439. 

  27. Opt. Express Chen 18 4 3477 2010 10.1364/OE.18.003477 Pulsed-terahertz reflectometry for health monitoring of ceramic thermal barrier coatings 

  28. Electron. Commun. Jpn. Fukuchi 96 12 37 2013 10.1002/ecj.11551 Measurement of refractive index and thickness of topcoat of thermal barrier coating by reflection measurement of Terahertz waves 

  29. J. Coat. Technol. Res. Aoyagi 11 3 311 2014 10.1007/s11998-013-9537-8 Nondestructive analysis of uneven paint coatings by dynamic heat conduction following flash heating 

  30. Infrared Phys. Technol Mezghani 76 393 2016 10.1016/j.infrared.2016.03.018 Evaluation of paint coating thickness variations based on pulsed Infrared thermography laser technique 

  31. National Research Council, Coatings for high-temperature structural materials: trends and opportunities, 1996. 

  32. 10.1117/12.486019 P.G. Bison, S. Marinetti, E.G. Grinzato, V.P. Vavilov, F. Cernuschi, D. Robba, Inspecting thermal barrier coatings by IR thermography, vol. 5073, 2003, pp. 318-328. 

  33. World Acad. Sci., Eng. Technol. Int. J. Civ. Environ. Eng. Mezghani 2 5 2015 Evaluation of heterogeneity of paint coating on metal substrate using laser infrared thermography and eddy current 

  34. Appl. Therm. Eng. Tang 114 770 2017 10.1016/j.applthermaleng.2016.12.032 Theoretical and experimental study on thermal barrier coating (TBC) uneven thickness detection using pulsed infrared thermography technology 

  35. Trends Opt. Nondestruct. Test. Maldague 591 2000 Applications of infrared thermography in nondestructive evaluation 

  36. Mater. Eval. Maldague 60 9 1060 2002 Introduction to NDT by active infrared thermography 

  37. Appl. Therm. Eng. Bu 99 751 2016 10.1016/j.applthermaleng.2016.01.143 Quantitative detection of thermal barrier coating thickness based on simulated annealing algorithm using pulsed infrared thermography technology 

  38. J. Appl. Phys. Maldague 79 5 2694 1996 10.1063/1.362662 Pulse phase infrared thermography 

  39. Infrared Phys. Technol Maldague 43 3-5 175 2002 10.1016/S1350-4495(02)00138-X Advances in pulsed phase thermography 

  40. Quantit. Infrared Thermography J. Ibarra-Castanedo 1 1 47 2004 10.3166/qirt.1.47-70 Pulsed phase thermography reviewed 

  41. NDT E Int. Vavilov 73 28 2015 10.1016/j.ndteint.2015.03.003 Review of pulsed thermal NDT: Physical principles, theory and data processing 

  42. World J. Modell. Simul. Shrestha 13 1 45 2017 Modelling of pulse thermography for defect detection in aluminium structures: Assessment on reflection and transmission measurement 

  43. Appl. Lockin-thermography Methods Wu 511 1996 

  44. Revue générale de Thermique Wu 37 8 693 1998 10.1016/S0035-3159(98)80047-0 Lock-in thermography for nondestructive evaluation of materials 

  45. X. Maldague, P.O. Moore, Nondestructive testing handbook: infrared and thermal testing, 2001. 

  46. X. Maldague, Theory and practice of infrared technology for nondestructive testing, 2001. 

  47. NDT E Int. Choi 41 2 119 2008 10.1016/j.ndteint.2007.08.006 Quantitative determination of a subsurface defect of reference specimen by lock-in infrared thermography 

  48. Int. J. Thermophys. Liu 36 5-6 1252 2015 10.1007/s10765-015-1834-2 Investigation on Coating Uniformity of High-Temperature Alloy with SiC Thermal Barrier Coating Using Pulsed Infrared Thermographic Technique 

  49. 10.1117/12.2267851 D. Palumbo, R. Tamborrino, U. Galietti, Coating defect evaluation based on stimulated thermography, vol. 10214, 2017, 102140X. 

  50. Mater Eval. Marinetti 2003 Quantitative infrared thermographic nonestructive testing of thermal barrier coating 

  51. 10.1088/1755-1315/100/1/012043 J. Zhang, L. Wu, Research on measurement of thickness and damage degree of coatings based on lock-in thermography, vol. 100. No. 1, 2017, pp. 012043. 

  52. Infrared Phys. Technol Zhang 76 655 2016 10.1016/j.infrared.2016.04.028 A new measurement method of coatings thickness based on lock-in thermography 

  53. Infrared Phys. Technol Shrestha 83 124 2017 10.1016/j.infrared.2017.04.016 Evaluation of coating thickness by thermal wave imaging: A comparative study of pulsed and lock-in infrared thermography-Part I: Simulation 

  54. R.N. Bracewell, R.N. Bracewell, The Fourier transform and its applications, vol. 31999, 1986. 

  55. R.B. Randall, Frequency analysis, 1987. 

  56. Infrared Phys. Technol Ibarra-Castanedo 46 1-2 75 2004 10.1016/j.infrared.2004.03.011 Infrared image processing and data analysis 

  57. Opt. Eng. Alaruri 37 2 683 1998 10.1117/1.601868 Emissivity measurements for YSZ thermal barrier coating at high temperatures using a 1.6-um single-wavelength pyrometer 

  58. 10.1007/978-3-319-49512-5_2 R.S. Razavi, M.R. Loghman-Estarki, Advance Techniques for the Synthesis of Nanostructured Zirconia-Based Ceramics for Thermal Barrier Application, 2017, pp. 21-91. 

  59. J. Mol. Liq. Zinatloo-Ajabshir 243 219 2017 10.1016/j.molliq.2017.08.050 Facile synthesis of nanocrystalline neodymium zirconate for highly efficient photodegradation of organic dyes 

  60. J. Energy Chem. Zinatloo-Ajabshir 26 2 315 2017 10.1016/j.jechem.2016.11.005 Facile preparation of Nd2Zr2O7-ZrO2 nanocomposites as an effective photocatalyst via a new route 

  61. Sep. Purif. Technol. Zinatloo-Ajabshir 179 77 2017 10.1016/j.seppur.2017.01.037 Photo-catalytic degradation of erythrosine and eriochrome black T dyes using Nd2Zr2O7 nanostructures prepared by a modified Pechini approach 

  62. Infrared Phys. Technol Shrestha 76 676 2016 10.1016/j.infrared.2016.04.033 Application of thermal wave imaging and phase shifting method for defect detection in Stainless steel 

  63. Int. J. Precis. Eng. Manuf. Ranjit 16 11 2255 2015 10.1007/s12541-015-0290-z Investigation of lock-in infrared thermography for evaluation of subsurface defects size and depth 

  64. J. Mech. Sci. Technol. Ranjit 30 3 1111 2016 10.1007/s12206-016-0215-5 Quantification of defects depth in glass fiber reinforced plastic plate by infrared lock-in thermography 

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