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Original Articles

Digitised Frequency Modulated Thermal Wave Imaging for Non-destructive Testing and Evaluation of Glass Fibre Reinforced Polymers

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Pages 23-32 | Received 19 Jul 2018, Accepted 06 Nov 2018, Published online: 13 Nov 2018

References

  • Maldague XPV. Theory and practice of infrared thermography for nondestructive testing. Hoboken, NJ: Wiley; 2001.
  • Sun JG. Analysis of pulsed thermography methods for detect depth prediction. J Heat Transfer. 2006;128(4):329–338.
  • Xu C, Zhou N, Xie J, et al. Investigation on eddy current pulsed thermography to detect hidden cracks on corroded metal surface. NDT E Int. 2016;84:27–35.
  • Vavilov V. Thermal NDT: historical milestones, state-of-the-art and trends. Quant Infrared Thermogr J. 2014;11(1):66–83.
  • Vavilov VP, Burleigh DD. Review of pulsed thermal NDT: physical principles, theory and data processing. NDT E Int. 2015;73:28–52.
  • Shepard SM. Advances in pulsed thermography. Proc SPIE Int Soc Opt Eng. 2001;4360:511–515.
  • Balageas DL. Defense and illustration of time-resolved pulsed thermography for NDE. Quant Infrared Thermogr J. 2012;9(1):3–32.
  • Maldague X, Marinetti S. Pulse phase infrared thermography. J Appl Phys. 1996;79(5):2694–2698.
  • Busse G, Eyerer P. Thermal wave remote and nondestructive inspection of polymers. Appl Phys Lett. 1983;43(4):355–357.
  • An Y-K, Yang J, Hwang S, et al. Line laser lock-in thermography for instantaneous imaging of cracks in semiconductor chips. Opt Lasers Eng. 2015;73:128–136.
  • Mulaveesala R, Tuli S. Implementation of frequency-modulated thermal wave imaging for non-destructive sub-surface defect detection. Insight: Non-Dest Testing Cond Monitoring. 2005;47(4):206–208.
  • Mulaveesala R, Tuli S. Theory of frequency modulated thermal wave imaging for nondestructive subsurface defect detection. Appl Phys Lett. 2006;89(19):191913. art. no. 191913.
  • Tuli S, Mulaveesala R. Defect detection by pulse compression in frequency modulated thermal wave imaging. Quant Infrared Thermogr J. 2005;2(1):41–54.
  • Subbarao GV, Mulaveesala R. Quadratic frequency modulated thermal wave imaging for non-destructive testing. Prog In Electromagn Res M. 2012;26:11–22.
  • Arora V, Mulaveesala R, Bison P. Effect of Spectral Reshaping on Frequency Modulated Thermal Wave Imaging for Non-destructive Testing and Evaluation of steel material. J Nondestructive Eval. 2016;35(1):1–7. art. no. 15.
  • Mulaveesala R, Tuli S. Digitized frequency modulated thermal wave imaging for nondestructive testing. Mater Eval. 2005;63(10):1046–1050.
  • Mulaveesala R, Pal P, Tuli S. Interface study of bonded wafers by digitized linear frequency modulated thermal wave imaging. Sensors Actuators A: Physical. 2006;128(1):209–216.
  • Mulaveesala R, Tuli S. Phase sensitive digitized frequency modulated thermal wave imaging and pulse compression for NDE applications. Proc SPIE Int Soc Opt Eng. 2006;6205:1–10. ( art. no. 620515).
  • Mulaveesala R, Vaddi JS, Singh P. Pulse compression approach to infrared nondestructive characterization. Rev Sci Inst. 2008;79(9):1–6. art. no. 094901.
  • Ghali VS, Jonnalagadda N, Mulaveesala R. Three-dimensional pulse compression for infrared nondestructive testing. IEEE Sens J. 2009;9(7):832–833.
  • Mulaveesala R, Venkata Ghali S. Coded excitation for infrared non-destructive testing of carbon fiber reinforced plastics. Rev Sci Inst. 2011;82(5):054902. art. no. 054902.
  • Ghali VS, Panda SSB, Mulaveesala R. Barker coded thermal wave imaging for defect detection in carbon fbre-reinforced plastics. Insight: Non-Dest Testing Cond Monitoring. 2011;53(11):621–624.
  • Arora V, Mulaveesala R. Application of Golay complementary coded excitation schemes for non-destructive testing of sandwich structures. Opt Lasers Eng. 2017;93:36–39.
  • Mulaveesala R, Arora V. Complementary coded thermal wave imaging scheme for thermal non-destructive testing and evaluation. Quant Infrared Thermogr J. 2017;14(1):44–53.
  • Wang F, Wang YH, Liu JY, et al. Optical excitation fractional Fourier transform (FrFT) based enhanced thermal-wave radar imaging (TWRI). Opt Express. 2018;27(17):1–15.
  • Wang F, Liu JY, Oliullah M, et al. Research on debonding defects in thermal barrier coatings structure by Thermal-Wave Radar Imaging (TWRI). Int J Thermophysics. 2018;39:71.
  • Wang F, Liu JY, Oliullah M, et al. Experimental Study on GFRP surface cracks detection using truncated-correlation photothermal coherence tomography. Int J Thermophysics. 2018;39:49.
  • Melnikov A, Sivagurunathan K, Guo X, et al. Non-destructive thermal-wave-radar imaging of manufactured green powder metallurgy compact flaws (cracks). NDT&E Int. 2017;86:140–152.
  • Gong JL, Liu JY, Qin L, et al. Investigation of Carbon fiber reinforced polymer (CFRP) sheet with subsurface defects inspection using Thermal-wave radar imaging (TWRI) based on the Multi-Transform technique. NDT&E Int. 2014;62:130–136.
  • Tabatabaei N, Mandelis A. Thermal-wave radar: A novel subsurface imaging modality with extended depth-resolution dynamic range. Rev Sci Instrum. 2009;80:034902.
  • He Y, Yang R, Zhang H, et al. Volume or inside heating thermography using electromagnetic excitation for advanced composite materials. Int J Thermal Sci. 2017;111:41–49.
  • Yang R, He Y. Optically and non-optically excited thermography for composites: A review. Infrared Phys Technol. 2016;75:26–50.
  • Yang R, He Y. Pulsed inductive thermal wave radar (PI-TWR) using cross correlation matched filtering in eddy current thermography. Infrared Phys Technol. 2015;71:469–474.

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