Application of KLM Model for an Ultrasonic Through-Transmission Method

Geonwoo Kim1, Mu-Kyung Seo2, Namkyoung Choi1, Kwang Sae Baek3, Ki-Bok Kim4
1Department of Science of Measurement, University of Science and Technology, Daejeon, South Korea
2Center for Safety Measurement, Korea Research Institute of Standards and Science, Daejeon, South Korea
3Elachem Co. Ltd., Busan, South Korea
4Center for Safety Measurement, Korea Research Institute of Standards and Science, 267 Gajeong-ro, Youseong-gu, Daejeon, 34113, South Korea

Tóm tắt

Từ khóa


Tài liệu tham khảo

https://www.asnt.org/MinorSiteSections/AboutASNT/Intro-to-NDT . Accessed Jan 2019.

Birks, A. S., Green, Jr., R. E., & McIntire, P. (1991). Nondestructive testing handbook, 2nd edn. (Vol. 7 Ultrasonic Testing, pp. 147–155, 268–281). ASTN.

Desilets, C. S., Fraser, J. D., & Kino, G. S. (1978). The design of efficient broad-band piezoelectric transducers. IEEE Transactions on Sonics and Ultrasonics, 25(4), 115–125.

Guo, H., Cannata, J. M., Zhou, Q., & Shung, K. K. (2005). Design and fabrication of broadband graded ultrasonic transducers with rectangular kerfs. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 52(11), 2096–2102.

Mason, W. P. (2007). Electromechanical transducers and wave filters (pp. 22–75). New York: D. Van Nostrand Co.

Krimholtz, R., Leedom, D. A., & Mattaei, G. L. (1970). New equivalent circuits for elementary piezoelectric transducers. Electronics Letters, 6(13), 398–399.

Kim, J. Y., Jacobsa, L. J., Qu, J., & Littles, J. W. (2006). Experimental characterization of fatigue damage in a nickel-base superalloy using nonlinear ultrasonic waves. The Journal of Acoustical Society of America, 120(3), 1266–1273.

Sherrit, S., Leary, S. P., Dolgin, B. P., & Bar-Cohen, Y. (1999). Comparison of the Mason and KLM equivalent circuits for piezoelectric resonators in the thickness mode. In IEEE ultrasonics symposium, Caesars Tahoe, Nevada, USA, 17–20 Oct 1999.

Castillo, M., Acevedo, P., & Moreno, E. (2003). KLM model for lossy piezoelectric transducers. Ultrasonics, 41(8), 671–679.

Van Kervel, S. J. H., & Thijssen, J. M. (1983). A calculation scheme for the optimum design of ultrasonic transducers. Ultrasonics, 21(3), 134–140.

Kossoff, G. (1966). The effects of backing and matching on the performance of piezoelectric ceramic transducers. IEEE Transactions on Sonics and Ultrasonics, 13(1), 20–30.

Kim, K. B., Hsu, D. K., Ahn, B., Kim, Y. G., & Barnard, D. J. (2010). Fabrication and comparison of PMN-PT single crystal, PZT and PZT-based 1–3 composite ultrasonic transducers for NDE applications. Ultrasonics, 50(8), 790–797.

Kim, K. B., Ahn, B., Kim, Y. G., Park, S. K., & Ha, J. S. (2007). Study on ultrasonic transducer for non-destructive evaluation of highly attenuative material using PMN-PT single crystal. Journal of KSNT, 27(4), 313–320.

Kim, Y. I., Kim, G., Bae, Y. M., Ryu, Y. H., Jeong, K. J., Oh, C. H., et al. (2015). Comparison of PMN-PT and PZN-PT single-crystal-based ultrasonic transducers for nondestructive evaluation applications. Sensors and Materials, 27(1), 107–114.

Kino, G. S. (1987). Acoustic waves, device, “imaging & analog signal processing” (pp. 31–83). Englewood Cliffs, NJ: Prentice-Hall Inc.

Crewe, M. G., Gururaja, T. R., Shrout, T. R., & Newnham, R. E. (1990). Acoustic properties of particle/polymer composites for ultrasonic transducer backing applications. IEEE Transactions on Ferroelectrics and Frequency Control, 37(6), 506–513.

Kim, J. Y., Jacobs, L. J., Qu, J., & Littles, J. W. (2006). Experimental characterization of fatigue damage in a nickel-base superalloy using nonlinear ultrasonic waves. The Journal of the Acoustical Society of America, 120(3), 1266–1273.

Lee, T. H., & Jhang, K. Y. (2008). Evaluation of micro crack using nonlinear acoustic effect. Journal of the Korean Society for Nondestructive Testing, 28(4), 352–357.

Sohn, H., Lim, H. J., DeSimio, M. P., Brown, K., & Derriso, M. (2014). Nonlinear ultrasonic wave modulation for online fatigue crack detection. Journal of Sound and Vibration, 333(5), 1473–1484.

Schmerr, L. W., Jr., & Song, S. J. (2007). Ultrasonic nondestructive evaluation systems: models and measurements (pp. 21–34). New York: Springer.

Zhang, Q., Lewin, P. A., & Bloomfield, P. E. (1997). PVDF transducers: A performance comparison of single-layer and multilayer structures. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 44(5), 1148–1156.

Petersen, G. (2006). L-matching the output of a RITEC gated amplifier to an arbitrary load. Warwick: RITEC Inc.

Garcia-Rodriguez, M., Garcia-Alvarez, J., Yañez, Y., Garcia-Hernandez, M. J., Salazar, J., Turo, A., et al. (2010). Low cost matching network for ultrasonic transducers. Physics Procedia, 3(1), 1025–1031.

Svilainis, L., & Dumbrava, V. (2007). Evaluation of the ultrasonic transducer electrical matching performance. Ultragarsas, 62(4), 16–21.