Chinese Journal of Lasers, Volume. 38, Issue s1, 108005(2011)
Adopting the Ratio of Defect Size Over Depth to Quantitatively Study the Effect of Defect Size on the Measurement of Defect Depth
[1] [1] Maldague X.. Nondestructive Evaluation of Materials by Infrared Thermography[M]. New York: Springer, 1993
[2] [2] Steven M. Shepard. Flash Thermography of Aerospace Composites[C]. IV Conferencia Panamericana de END Buenos Aires, 2007
[3] [3] D. P. Almond, S. K. Lau. Defect sizing by transient thermography I. An analytical treatment[J]. J. Phys. D. Appl. Phys., 1994, 27(5): 1063~1069
[4] [4] Tang D. W., He G. H., Zhou B. L.. Effects of finite absorption depth and infrared detector non-linearity on thermal diffusivity measurement of thin films using the flash method[J]. Rev. Sci. Instrum., 1995, 66: 4249~4253
[5] [5] Sun J. G.. Analysis of pulsed thermography methods for defect depth prediction[J]. J. Heat Transfer, 2006, 128(4): 329
[6] [6] V. Vavilov, T. Ahmed, J. Jin et al.. Experimental thermal tomography of solids by using the flash one-side heating[J]. Sov. J. NDT, 1990, 12: 60~66
[7] [7] L. D. Favro, H. J. Jin, Y. X. Wang et al.. IR thermal wave tomographic studies of structural composites[J]. Review of Progress in Quantitative Nondestructive Evaluation, 1991, 11A(2): 447~451
[8] [8] Favro L. D., Han X., Wang Y. et al.. Pulse-echo thermal wave imaging[J]. Review of Progress in Quantitative Nondestructive Evaluation, 1995, 14: 425~429
[9] [9] Favro L. D., Han X, Kuo P. K. et al.. Imaging the early time behavior of reflected thermal wave pulses[J]. SPIE, Thermosense XVⅡ, 1995, 2473: 162~166
[10] [10] Han X., Favro L. D., Kuo P. K. et al.. Early-time pulse-echo thermal wave imaging[J]. Rev. Prog. Quant. Nondestr. Eval., 1996, 15: 519~524
[11] [11] Ringermacher H. I., Archacki Jr. R. J., Veronesi W. A.. Nondestructive testing: transient depth thermography: US, 5711603.[P]. 1996-10-30
[12] [12] Xiaoyan Han, L. D. Favro, R. L. Thomas. Thermal wave NDI of disbonds and corrosion in aircraft[C]. Wiuiamsburg: the Second Joint NASA/FAA/DOD Conference on Aging Aircraft, 1998, NASA/CP-1999-208982: 265~274
[13] [13] Xiaoyan Han, L. D. Favro, R. L. Thomas. Quantitative defect depth measurements for NDE of composites[C]. Proc. Am. Soc. Composites, 1998. 1077~1081
[14] [14] M. Pilla, M. Klein, X. Maldague et al.. New absolute contrast for pulsed thermography[C]. QIRT, 2002. 53~58
[15] [15] Shepard S. M., Lhota J. R., Rubadeux B. A. et al.. Reconstruction and enhancement of active thermographic image sequences[J]. Opt. Engng., 2003, 42(5): 1337~1342
[16] [16] Sun J. G.. Method for determining defect depth using thermal imaging: US, 6542849[P]. 2003-4-1
[17] [17] Maldague X. P., Marinetti S.. Pulse phase infrared thermography[J]. J. Appl. Phys., 1996, 79(5): 2694~2698
[18] [18] Clemente Ibarra Castanedo. Quantitative Subsurface Defect Evaluation by Pulsed Phase Thermography: Depth Retrieval with the Phase[D]. Canada: University of Laval, 2005
[19] [19] Ibarra-Castanedo C., Maldague X.. Defect depth retrieval from pulsed phase thermographic data on plexiglas and Aluminum samples[C]. SPIE, Thermosense XXVI, 2004, 5405: 348~355
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Zeng Zhi, Tao Ning, Feng Lichun, Zhang Cunlin. Adopting the Ratio of Defect Size Over Depth to Quantitatively Study the Effect of Defect Size on the Measurement of Defect Depth[J]. Chinese Journal of Lasers, 2011, 38(s1): 108005
Category: Measurement and metrology
Received: Jul. 10, 2011
Accepted: --
Published Online: Dec. 19, 2011
The Author Email: Zhi Zeng (zzh406@hotmail.com)