Numerical Analysis of Influencing Factors and Capability for Thermal Wave NDT in Liquid Propellant Tank Corrosion Damage Detection
By: Jin Guofeng, Zhang Wei, Shi Jun, Yang Zhengwei, Hu Yu, Huang Zhiyong and Tian Gan
Open Access
|Aug 2013References
- [1] Ni, Y.W., Wang, J.Y., Li, Y. et al. (2009). Corrosion detecting and monitoring technology for metal oil tank., 28 (3), 4-6.
- [2] Li, J.Q., Du, C.W. (2007).. Beijing: China Petrochemical Press, 240-245.
- [3] Wang, W. (2011). Development of corrosion detecting technology for special equipment., 3, 66.
- [4] Ma, J. (2010). Application study of corrosion detection used in the result judgment of salt spray test., 8, 98-100.
- [5] Maldague, X. (2001).. John Wiley & Sons.
- [6] Maldague, X. (2002). Introduction to NDT by active infrared thermography., 6, 1060-1073.
- [7] Wang, X., Jin, W.P., Zhang, C.L. et al. (2004). Infrared thermography NDT methods and development., 26 (10), 497-501.
- [8] Sakagami, T., Kubo, S. (2002). Applications of pulse heating thermography and lock-in thermography to quantitative nondestructive evaluations., 43, 211-218.
- [9] Ibarra-Castanedo, C. (2005).. Ph.D. Thesis, Université Laval, Canada.
- [10] Susa, M. (2009).. Ph.D. Thesis, Université Laval, Canada.
- [11] Marinetti, S., Bison, P.G., Grinzato, E. (2002). 3D heat flux effects in the experimental evaluation of corrosion by IR thermography. In, 24-27 September 2002. QIRT, 92-98.
- [12] Marinetti, S., Vavilov, V. (2010). IR thermographic detection and characterization of hidden corrosion in metals., 52, 865-872.
- [13] Grinzato, E., Vavilov, V. (1998). Corrosion evaluation by thermal image processing and 3D modeling., 37 (8), 669-679.
- [14] Grinzato, E., Vavilov, V., Bison, P.G. et al. (2007). Hidden corrosion detection in thick metallic components by transient IR thermography., 49, 234-238.
- [15] Ambrosini, D., Paoletti, A., Paoletti, D. et al. (2007). NDT methods in artwork corrosion monitoring. In, 18-21 June 2007. SPIE, 171-179.
- [16] Jonsson, M., Rendahl, B., Annergren, I. (2010). The use of infrared thermography in the corrosion science area., 61 (11), 961-965.
- [17] Yang, J., Guo, X.W., Dong, S.Q. (2008). Image processing for detection of aluminum alloy with infrared thermographic NDT., 24 (1), 55-57, 75.
- [18] Yang, Z.W., Zhang, W., Tian, G. et al. (2011). Infrared thermography applied to detect debond defect in shell structure., 40 (2), 186-191.
- [19] Yang, Z.W., Zhang, W., Tian, G. et al. (2009). Numerical simulation of influencing factors for thermal wave NDT in composite materials., 21 (13), 3918-3921.
- [20] Huang, Y., Zhang, Y., Liu, G. et al. (2010). Ultimate strength assessment of hull structural plate with pitting corrosion damnification under biaxial compression., 37, 1503-1512.
- [21] Zhan, L. (2007).Beijing: China Water Power Press, 117-142.
- [22] Dai, G.H. (1999)., 2nd ed. Beijing: Higher Education Press.
DOI: https://doi.org/10.2478/msr-2013-0033 | Journal eISSN: 1335-8871
Language: English
Page range: 214 - 222
Published on: Aug 24, 2013
Published by: Slovak Academy of Sciences, Institute of Measurement Science
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open
Keywords:
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© 2013 Jin Guofeng, Zhang Wei, Shi Jun, Yang Zhengwei, Hu Yu, Huang Zhiyong, Tian Gan, published by Slovak Academy of Sciences, Institute of Measurement Science
This work is licensed under the Creative Commons License.