Her, S.-C., & Lin, S.-T. (2014). Non-Destructive Evaluation of Depth of Surface Cracks Using Ultrasonic Frequency Analysis. Sensors, 14(9), 17146-17158. doi:10.3390/s140917146
Mi, B., Michaels, J. E., & Michaels, T. E. (2006). An ultrasonic method for dynamic monitoring of fatigue crack initiation and growth. The Journal of the Acoustical Society of America, 119(1), 74-85. doi:10.1121/1.2139647
Cheng, Y., Deng, Y., Cao, J., Xiong, X., Bai, L., & Li, Z. (2013). Multi-Wave and Hybrid Imaging Techniques: A New Direction for Nondestructive Testing and Structural Health Monitoring. Sensors, 13(12), 16146-16190. doi:10.3390/s131216146
[+]
Her, S.-C., & Lin, S.-T. (2014). Non-Destructive Evaluation of Depth of Surface Cracks Using Ultrasonic Frequency Analysis. Sensors, 14(9), 17146-17158. doi:10.3390/s140917146
Mi, B., Michaels, J. E., & Michaels, T. E. (2006). An ultrasonic method for dynamic monitoring of fatigue crack initiation and growth. The Journal of the Acoustical Society of America, 119(1), 74-85. doi:10.1121/1.2139647
Cheng, Y., Deng, Y., Cao, J., Xiong, X., Bai, L., & Li, Z. (2013). Multi-Wave and Hybrid Imaging Techniques: A New Direction for Nondestructive Testing and Structural Health Monitoring. Sensors, 13(12), 16146-16190. doi:10.3390/s131216146
Delrue, S., Van Den Abeele, K., Blomme, E., Deveugele, J., Lust, P., & Matar, O. B. (2010). Two-dimensional simulation of the single-sided air-coupled ultrasonic pitch-catch technique for non-destructive testing. Ultrasonics, 50(2), 188-196. doi:10.1016/j.ultras.2009.08.005
Delrue, S., Tabatabaeipour, M., Hettler, J., & Van Den Abeele, K. (2016). Applying a nonlinear, pitch-catch, ultrasonic technique for the detection of kissing bonds in friction stir welds. Ultrasonics, 68, 71-79. doi:10.1016/j.ultras.2016.02.012
Bai, Z., Chen, S., Xiao, Q., Jia, L., Zhao, Y., & Zeng, Z. (2017). Compressive sensing of phased array ultrasonic signal in defect detection: Simulation study and experimental verification. Structural Health Monitoring, 17(3), 434-449. doi:10.1177/1475921717701462
Ciampa, F., Mankar, A., & Marini, A. (2017). Phononic Crystal Waveguide Transducers for Nonlinear Elastic Wave Sensing. Scientific Reports, 7(1). doi:10.1038/s41598-017-14594-4
Miniaci, M., Gliozzi, A. S., Morvan, B., Krushynska, A., Bosia, F., Scalerandi, M., & Pugno, N. M. (2017). Proof of Concept for an Ultrasensitive Technique to Detect and Localize Sources of Elastic Nonlinearity Using Phononic Crystals. Physical Review Letters, 118(21). doi:10.1103/physrevlett.118.214301
Tiwari, K. A., Raisutis, R., Tumsys, O., Ostreika, A., Jankauskas, K., & Jakutavicius, J. (2019). Defect Estimation in Non-Destructive Testing of Composites by Ultrasonic Guided Waves and Image Processing. Electronics, 8(3), 315. doi:10.3390/electronics8030315
Le, M., Kim, J., Kim, S., & Lee, J. (2016). Nondestructive testing of pitting corrosion cracks in rivet of multilayer structures. International Journal of Precision Engineering and Manufacturing, 17(11), 1433-1442. doi:10.1007/s12541-016-0169-7
Selim, H., Delgado Prieto, M., Trull, J., Romeral, L., & Cojocaru, C. (2019). Laser Ultrasound Inspection Based on Wavelet Transform and Data Clustering for Defect Estimation in Metallic Samples. Sensors, 19(3), 573. doi:10.3390/s19030573
Prada, C., Kerbrat, E., Cassereau, D., & Fink, M. (2002). Time reversal techniques in ultrasonic nondestructive testing of scattering media. Inverse Problems, 18(6), 1761-1773. doi:10.1088/0266-5611/18/6/320
Spies, M., Rieder, H., Dillhöfer, A., Schmitz, V., & Müller, W. (2012). Synthetic Aperture Focusing and Time-of-Flight Diffraction Ultrasonic Imaging—Past and Present. Journal of Nondestructive Evaluation, 31(4), 310-323. doi:10.1007/s10921-012-0150-z
Tiwari, K., Raisutis, R., & Samaitis, V. (2017). Hybrid Signal Processing Technique to Improve the Defect Estimation in Ultrasonic Non-Destructive Testing of Composite Structures. Sensors, 17(12), 2858. doi:10.3390/s17122858
Boonsang, S., Zainal, J., & Dewhurst, R. J. (2004). Synthetic aperture focusing techniques in time and frequency domains for photoacoustic imaging. Insight - Non-Destructive Testing and Condition Monitoring, 46(4), 196-199. doi:10.1784/insi.46.4.196.55648
Guarneri, G., Pipa, D., Junior, F., de Arruda, L., & Zibetti, M. (2015). A Sparse Reconstruction Algorithm for Ultrasonic Images in Nondestructive Testing. Sensors, 15(4), 9324-9343. doi:10.3390/s150409324
Gómez, M., Castejón, C., & García-Prada, J. (2016). Review of Recent Advances in the Application of the Wavelet Transform to Diagnose Cracked Rotors. Algorithms, 9(1), 19. doi:10.3390/a9010019
Selim, H., Delgado, M., Trull, J., Picó, R., & Cojocaru, C. (2018). Material Defect Reconstruction by Non-Destructive Testing with Laser Induced Ultrasonics. Journal of Physics: Conference Series, 1149, 012011. doi:10.1088/1742-6596/1149/1/012011
De Marchi, L., Marzani, A., & Miniaci, M. (2013). A dispersion compensation procedure to extend pulse-echo defects location to irregular waveguides. NDT & E International, 54, 115-122. doi:10.1016/j.ndteint.2012.12.009
Krohn, N., Pfleiderer, K., Stoessel, R., Solodov, I., & Busse, G. (2004). Nonlinear Acoustic Imaging: Fundamentals, Methodology, and NDE-Applications. Acoustical Imaging, 91-98. doi:10.1007/978-1-4020-2402-3_12
Ulrich, T. J., Johnson, P. A., & Sutin, A. (2006). Imaging nonlinear scatterers applying the time reversal mirror. The Journal of the Acoustical Society of America, 119(3), 1514-1518. doi:10.1121/1.2168413
Miniaci, M., Mazzotti, M., Radzieński, M., Kudela, P., Kherraz, N., Bosia, F., … Ostachowicz, W. (2019). Application of a Laser-Based Time Reversal Algorithm for Impact Localization in a Stiffened Aluminum Plate. Frontiers in Materials, 6. doi:10.3389/fmats.2019.00030
Kreis, T. (2016). Application of Digital Holography for Nondestructive Testing and Metrology: A Review. IEEE Transactions on Industrial Informatics, 12(1), 240-247. doi:10.1109/tii.2015.2482900
Zhang, K., Zhou, Z., & Zhou, J. (2015). Application of laser ultrasonic method for on-line monitoring of friction stir spot welding process. Applied Optics, 54(25), 7483. doi:10.1364/ao.54.007483
Streza, M., Dadarlat, D., Fedala, Y., & Longuemart, S. (2013). Depth estimation of surface cracks on metallic components by means of lock-in thermography. Review of Scientific Instruments, 84(7), 074902. doi:10.1063/1.4813744
Jensen, J. A., Nikolov, S. I., Gammelmark, K. L., & Pedersen, M. H. (2006). Synthetic aperture ultrasound imaging. Ultrasonics, 44, e5-e15. doi:10.1016/j.ultras.2006.07.017
Ultrasonic Transducers. Vol. Pana_UT_ENhttp://www.epsilon-ndt.com/upload/file/problar-ve-aksesuarlar-.pdf
Cong, S., Zhang, W. W., Zhang, J. Y., & Gang, T. (2017). Analysis on Ultrasonic TOFD Imaging Testing for Ultra-thick-walled EBW Joint of Aluminum Alloy. Procedia Engineering, 207, 1910-1915. doi:10.1016/j.proeng.2017.10.960
Wang, X.-G., Wu, W.-L., Huang, Z.-C., Chang, J.-J., & Wu, N.-X. (2018). Research on the Transmission Characteristics of Air-Coupled Ultrasound in Double-Layered Bonded Structures. Materials, 11(2), 310. doi:10.3390/ma11020310
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