Voir la notice de l'article provenant de la source Math-Net.Ru
@article{JSFU_2010_3_2_a5, author = {Olga P. Zolotova and Sergey I. Burkov and Boris P. Sorokin}, title = {Propagation of the {Lamb} and $SH$-waves in piezoelectric cubic crystal's plate}, journal = {\v{Z}urnal Sibirskogo federalʹnogo universiteta. Matematika i fizika}, pages = {185--204}, publisher = {mathdoc}, volume = {3}, number = {2}, year = {2010}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/JSFU_2010_3_2_a5/} }
TY - JOUR AU - Olga P. Zolotova AU - Sergey I. Burkov AU - Boris P. Sorokin TI - Propagation of the Lamb and $SH$-waves in piezoelectric cubic crystal's plate JO - Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika PY - 2010 SP - 185 EP - 204 VL - 3 IS - 2 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/JSFU_2010_3_2_a5/ LA - ru ID - JSFU_2010_3_2_a5 ER -
%0 Journal Article %A Olga P. Zolotova %A Sergey I. Burkov %A Boris P. Sorokin %T Propagation of the Lamb and $SH$-waves in piezoelectric cubic crystal's plate %J Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika %D 2010 %P 185-204 %V 3 %N 2 %I mathdoc %U http://geodesic.mathdoc.fr/item/JSFU_2010_3_2_a5/ %G ru %F JSFU_2010_3_2_a5
Olga P. Zolotova; Sergey I. Burkov; Boris P. Sorokin. Propagation of the Lamb and $SH$-waves in piezoelectric cubic crystal's plate. Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika, Tome 3 (2010) no. 2, pp. 185-204. http://geodesic.mathdoc.fr/item/JSFU_2010_3_2_a5/
[1] H. Lamb, “On waves in an elastic plate”, Proc. Roy. Soc. London A, 93 (1917), 114–128 | DOI | Zbl
[2] I. A. Viktorov, Fizicheskie osnovy primeneniya ultrazvukovykh voln Releya i Lemba v tekhnike, Nauka, M., 1966
[3] I. A. Viktorov, Zvukovye poverkhnostnye volny v tverdykh telakh, Nauka, M., 1981
[4] S. N. Gurbatov, O. V. Rudenko (red.), Akustika v zadachakh, Nauka, M., 1996
[5] V. A. Krasilnikov, V. V. Krylov, Vvedenie v fizicheskuyu akustiku, Nauka, M., 1984
[6] G. S. Angelov, I. N. Ermolov, A. I. Markov, Primenenie ultrazvuka v promyshlennosti, Nauka, M., 1975
[7] F. Benmeddour, S. Grondel, J. Assaad, E. Moulin, “Experimental study of the $A_{0}$ and $S_{0}$ Lamb waves interaction with symmetrical notches”, Ultrasonics, 49 (2009), 202–205 | DOI
[8] T. Ghosh, T. Kundu, P. Karpur, “Efficient use of Lamb modes for detecting defects in large plates”, Ultrasonics, 36 (1998), 791–801 | DOI
[9] G. De Cicco, B. Morten, “New approach to the excitation of plate waves for piezoelectric thick-film devices”, Ultrasonics, 48 (2008), 697–706 | DOI
[10] C. Potel, D. Leduc, B. Morvan, C. Depollier, A. C. Hladky-Hennion, J. L. Izbicki, P. Pareige, M. Bruneau, “Lamb wave attenuation in a rough plate. I. Analytical and experimental results in an anisotropic plate”, J. Appl. Phys., 104:7 (2008), 10
[11] T. Hayashi, Sh. Endoh, “Calculation and visualization of Lamb wave motion”, Ultrasonics, 38 (2000), 770–773 | DOI
[12] D. I. Bardzokas, B. A. Kudryavtsev, N. A. Senik, Rasprostranenie voln v elektromagnitouprugikh sredakh, Editorial URSS, M., 2003
[13] I. E. Kuznetsova, B. D. Zaitsev, I. A. Borodina, A. A. Teplyh, V. V. Shurygin, S. G. Joshi, “Investigation of acoustic waves of higher order propagating in plates of lithium niobate”, Ultrasonics, 42 (2004), 179–182 | DOI
[14] I. E. Kuznetsova, B. D. Zaitsev, S. G. Joshi, I. A. Borodina, “Investigation of acoustic waves in thin plates of lithium niobate and lithium tantalate”, IEEE Trans. UFFC, 48:1 (2001), 322–328 | MR
[15] B. D. Zaitsev, I. E. Kuznetsova, I. A. Borodina, S. G. Joshi, “Characteristics of acoustic plate waves in potassium niobate ($KNbO_{3}$) single crystal”, Ultrasonics, 39 (2001), 51–55 | DOI
[16] M. A. Kulseh, V. P. Matveenko, I. N. Shardakov, “Constructing an analytical solution for Lamb waves using the Cosserat continuum approach”, J. Appl. Mechanics and Tech. Physics, 48:1 (2007), 119–125 | DOI | MR
[17] L. Wang, S. I. Rokhlin, “Stable reformulation of transfer matrix method for wave propagation in layered anisotropic media”, Ultrasonics, 39 (2001), 413–424 | DOI
[18] B. Collet, “Recursive surface impedance matrix methods for ultrasonic wave propagation in piezoelectric multilayers”, Ultrasonics, 42 (2004), 189–197 | DOI
[19] E. L. Tan, “A concise and efficient scattering matrix formalism for stable analysis of elastic wave propagation in multilayered anisotropic solids”, Ultrasonics, 41 (2003), 229–236 | DOI
[20] Li Fan, Shu-yi Zhang, Kai Zheng, Wei Lin, Hui-dong Gao, “Calculation of electromechanical coupling coefficient of Lamb waves in multilayered plates”, Ultrasonics, 44 (2006), 849–852 | DOI
[21] B. A. Auld, D. E. Chimenti, P. J. Shull, “Shear horizontal wave propagation in periodically layered composites”, IEEE Trans. on Ultrason., Ferroel. and Freq. Contr., 43:2 (1996), 319 | DOI
[22] K. S. Aleksandrov, B. P. Sorokin, S. I. Burkov, Effektivnye pezoelektricheskie kristally dlya akustoelektroniki, pezotekhniki i sensorov, t. 1, Izd-vo SO RAN, Novosibirsk, 2007
[23] E. Delesan, D. Ruaie, Uprugie volny v tverdykh telakh. Primeneniya dlya obrabotki signalov, Nauka, M., 1982
[24] Dzh. Farnell, “Poverkhnostnye akusticheskie volny”, Filtry na poverkhnostnykh akusticheskikh volnakh. Raschet, tekhnologiya i primenenie, ed. G. Mettyuz, Radio i svyaz, M., 1981
[25] B. A. Auld, Acoustic fields and waves in solids, vol. 1, Klieger Publishing Company, Malabar, 1990
[26] M. K. Balakirev, I. A. Gilinskii, Volny v pezokristallakh, Nauka, Novosibirsk, 1982
[27] M. P. Zaitseva, Yu. I. Kokorin, Yu. M. Sandler, V. M. Zrazhevskii, B. P. Sorokin, A. M. Sysoev, Nelineinye elektromekhanicheskie svoistva atsentrichnykh kristallov, Nauka, Novosibirsk, 1986
[28] I. E. Kuznetsova, B. D. Zaitsev, A. A. Teplykh, I. A. Borodina, “Osobennosti “gibridizatsii” akusticheskikh voln v pezoelektricheskikh plastinakh”, Akusticheskii zhurnal, 53:1 (2007), 73–79 | MR
[29] B. P. Sorokin, M. P. Zaitseva, Yu. I. Kokorin, S. I. Burkov, B. V. Sobolev, N. A. Chetvergov, “Anizotropiya upravleniya skorostyu ob'emnykh akusticheskikh voln elektricheskim polem v pezoelektrikakh so strukturoi sillenita”, Akusticheskii zhurnal, 32:5 (1986), 664–666