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Methods of Low-Frequency Acoustic Vibrations Creation

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Piezo-Electric Electro-Acoustic Transducers

Part of the book series: Microtechnology and MEMS ((MEMS))

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Abstract

New methods and devices for decrease of working frequency of transducers are described in this chapter, that is equivalent to increase in range of action of transducers, range of detection of sea objects.

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References

  1. V.S. Didkovskiy, O.G. Leyko, V.G. Savin, Electro-acoustic piezoceramic transducers (Imex-LTD, Кirovograd, 2006), 448 p. (in Ukrainian)

    Google Scholar 

  2. V. Sharapov, Piezoceramic Sensors (Springer, Berlin, 2011), p. 498

    Google Scholar 

  3. O.V. Korzhik, Forming of descriptions of single receiving electro-resilient cylinder transformer with cut electrodes, ed. by O.V. Korzhik, O.G. Leiko. Scientific news NTUU КPI, vol. 1 (2005), pp. 50–55 (in Ukrainian)

    Google Scholar 

  4. V.M. Sharapov, M.P. Musienko, E.V. Sharapova, Piezoelectric Sensors, ed. by V.M. Sharapov. (Technosphera, Moscow, 2006), p. 632 (in Russian)

    Google Scholar 

  5. V.M. Sharapov, S.A. Filimonov, K.V. Bazilo, Zh.V. Sotula, L.G. Кunickaya, Research of Piezoceramic Adder on a Basis of Bimorph Piezoelement, vol. 4 (Visnyk ChDTU, Cherkasy, 2009) (in Russian)

    Google Scholar 

  6. http://www.ipfran.ru

  7. V.M. Sharapov, Zh.V. Sotula, I.V. Chornoshiy, L.G. Кunickaya, K.V. Bazilo, Electro-acoustic transducer. Patent of Ukraine 56932. Publication 2011 (in Ukrainian)

    Google Scholar 

  8. V. Sharapov, R. Kažys, A. Vladišauskas, K. Bazilo, D. Romanenko, Adders on a Basis of Piezoceramic Transformers. ISSN 1392–2114 Ultrasound, vol. 66, No. 1 (Technologija, Kaunas, 2011), pp. 40–44

    Google Scholar 

  9. V.M. Sharapov, Zh.V. Sotula, P.A. Molchanov, V.G. Savin, Methods of Synthesis of Piezoelectric Transducers: a Method of Accidental Elements. Inductance, No. 1 (Visnyk ChDTU, Cherkasy, 2011) (in Russian)

    Google Scholar 

  10. V. Sharapov, A. Vladisauskas, Zh.V. Sotula, Investigation of an Internal Friction in Piezoceramic Elements of Electro-Acoustic Transducers. ISSN 1392–2114 Ultrasound, vol. 66, No. 4 (Technologija, Kaunas, 2011), pp. 30–33

    Google Scholar 

  11. V.M. Sharapov, V.M. Lugovoy, V.I. Voropay, S.V. Rotte, Electro-acoustic transducer. Patent of Ukraine 19643. Publication 2006 (in Ukrainian)

    Google Scholar 

  12. V.M. Sharapov, V.M. Lugovoy, V.I. Voropay, S.V. Rotte, Electro-acoustic transducer. Patent of Ukraine 19644. Publication 2006 (in Ukrainian)

    Google Scholar 

  13. V.M. Sharapov, S.V. Marchenko, G.К. Movsikov, V.M. Lugovoy, V.I. Voropay, Electro-acoustic transducer. Patent of Ukraine 24815. Publication 2007 (in Ukrainian)

    Google Scholar 

  14. V.M. Sharapov, S.V. Marchenko, G.К. Movsikov, V.M. Lugovoy, V.I. Voropay, Electro-acoustic transducer. Patent of Ukraine 24818. Publication 2007 (in Ukrainian)

    Google Scholar 

  15. V.A. Кotelnikov, Bases of the Radioengineering, (Gostehizdat, Moscow, 1950) (in Russian)

    Google Scholar 

  16. V.M. Sharapov et al., Piezoceramic Transformers and Sensors (Vertical, Cherkasy, 2010), p. 278 (in Russian)

    Google Scholar 

  17. V.M. Sharapov, Summators on the basis of disk monomorph piezotransformer, ed. by V.M. Sharapov, К.V. Bazilo, Zh.V. Sotula, S.A. Filimonov, L.G. Кunickaya, vol. 4 (Visnyk ChDTU, Cherkasy, 2009) (in Russian)

    Google Scholar 

  18. V.M. Sharapov, Zh.V. Sotula, L.G. Кunickaya, K.V. Bazilo, About One Way of Creation of Low-Frequency Acoustic Fluctuations with the Help of Piezoceramic Radiator, vol 1 (Visnyk ChDTU, Cherkasy, 2010) (in Russian)

    Google Scholar 

  19. V.M. Sharapov, D.E. Romanenko, Research of Dynamic Characteristics Cylindrical Piezoceramic Transformer, vol. 4 (Visnyk ChDTU, Cherkasy, 2009) (in Russian)

    Google Scholar 

  20. V.M. Sharapov, D.E. Romanenko, K.V. Bazilo, Shevchenko, Yu.A. Chiley, Adders on the Basis of Cylindrical Multielectrode Piezotransformer, vol. 3 (Visnyk ChDTU, Cherkasy, 2010) (in Russian)

    Google Scholar 

  21. V.M. Pluzhnikov, V.S. Semenov, Piezoceramic Hard Charts (Energiya, Moscow, 1971) (in Russian)

    Google Scholar 

  22. C. Steinem, A. Janshoff, Piezoelectric Sensors (Springer, Berlin, 2007)

    Google Scholar 

  23. V.M. Sharapov, V.G. Savin, I.I. Morgun, Mathematical modelling of work cylindrical piezoceramic transformer with two sections of generating electrodes. J. NTUU КPI Electron. Commun. 6 (2010) (in Russian)

    Google Scholar 

  24. V.M. Sharapov, V.G. Savin, I.I. Morgun, The Compelled Fluctuations Cylindrical Piezoceramic Transducers at Non-Uniform Electric Excitation. No. 1 (Visnyk ChDTU, Cherkasy, 2011) (in Russian)

    Google Scholar 

  25. V. Sharapov, Kažys, Zh. Sotula, A. Vladišauskas, Methods of Low-frequency Acoustic Fluctuations Creation by Means of Piezoelectric Transducers. ISSN 1392–2114 Ultragarsas (Ultrasound), vol. 66, No. 1 (Technologija, Kaunas, 2012)

    Google Scholar 

  26. V.M. Sharapov, Zh.V. Sotula, I.G. Minaev, P.A. Molchanov, V.G. Savin, I.O. Morgun, Research of an Internal Friction in Piezoceramic Elements of Electro-Acoustic Transducers. No. 2 (Visnyk ChDTU, Cherkasy, 2011) (in Russian)

    Google Scholar 

  27. V.M. Sharapov, I.G. Minaev, Zh.V. Sotula, K.V. Bazilo, V.V. Samoilenko, About Effect of Occurrence Curving Fluctuations in Monomorph Piezoelements. No. 3 (Visnyk ChDTU, Cherkasy, 2011) (in Russian)

    Google Scholar 

  28. V.M. Sharapov, K.V. Bazilo, Zh.V. Sotula, Increase of Level of Sound Pressure of Low-frequency Fluctuations of Transducers on the Basis of Disk Monomorph Piezoelements. No. 4 (Visnyk ChDTU, Cherkasy, 2011) (in Russian)

    Google Scholar 

  29. V.M. Sharapov, Zh.V. Sotula, P.A. Molchanov, V.G. Savin, To a Question on Creation of Low-Frequency Acoustic Fluctuations by Means of Piezoelectric Transducers. No. 1 (Visnyk ChDTU, Cherkasy, 2011) (in Russian)

    Google Scholar 

  30. V. Sharapov, K. Bazilo, Zh. Sotula. Creating of Low Frequency Oscillations of Transducers Based on Disk Monomorphic Piezoelements. ISSN 1392–2114 Ultragarsas (Ultrasound), vol. 66, No. 1 (Technologija, Kaunas, 2012)

    Google Scholar 

  31. V.M. Sharapov, A method of creation of ultrasonic vibrations with help piezoelectric transformer. Patent of Ukraine 49919. Publication 2010

    Google Scholar 

  32. V.M. Sharapov, A method of creation of acoustic vibrations with help piezoelement. Patent of Ukraine 56930. Publication 2011 (in Ukrainian)

    Google Scholar 

  33. V.M. Sharapov, Zh.V. Sotula, Electro-acoustic transducer. Patent of Ukraine 56942. Publication 2011 (in Ukrainian)

    Google Scholar 

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Correspondence to Valeriy Sharapov .

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Sharapov, V., Sotula, Z., Kunickaya, L. (2014). Methods of Low-Frequency Acoustic Vibrations Creation. In: Piezo-Electric Electro-Acoustic Transducers. Microtechnology and MEMS. Springer, Cham. https://doi.org/10.1007/978-3-319-01198-1_7

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