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Methods of Increasing Sound Pressure

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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 of increases in sound pressure c the help of an additional electric oscillatory contour, bimorph and trimorph elements, and also by decrease in an internal friction are described in this chapter.

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References

  1. V.M. Sharapov, Z.V. Sotula, P.A. Molchanov, V.G. Savin, Methods of synthesis of piezoelectric transducers: a method of accidental elements. Inductance. Visnyk CHDTU, No. 1 (2011) (in Russian)

    Google Scholar 

  2. V.M. Sharapov, Patent of Ukraine No. 56930. H04R 17/00. A method of creation of acoustic vibrations with help piezoelement (2011) (in Ukrainian)

    Google Scholar 

  3. V.M. Sharapov, Z.V. Sotula, I.V. Chornoshiy, L.G. Kunickaya, К.V. Bazilo, Patent of Ukraine No. 56932. H04R 17/00. Electro-acoustic transducer (2011) (in Ukrainian)

    Google Scholar 

  4. V.M. Sharapov, Z.V. Sotula, Patent of Ukraine No. 56942. H04R 17/00. Electro-acoustic transducer (2011) (in Ukrainian)

    Google Scholar 

  5. V. Sharapov, Piezoceramic sensors (Springer Verlag, Heidelberg, 2011), p. 498

    Google Scholar 

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

    Google Scholar 

  7. V.M. Sharapov, I.G. Minaev, Z.V. Sotula, К.V. Bazilo, L.G. Kunickaya. Piezoceramic transformers and sensors. (Vertical, Cherkasy, 2010), p. 278 (in Russian)

    Google Scholar 

  8. V.A. Кotelnikov, Radio engineering bases (Gostexizdat, Moscow 1950) (in Russian)

    Google Scholar 

  9. Ostrovskiy L.A. Theoretical basics of electric measuring instruments (Energiya, Leningrad, 1971), p. 544 (in Russian)

    Google Scholar 

  10. The physical encyclopaedia. http://www.femto.com.ua/

  11. V.S. Postnikov, Internal friction in metals (Mashinistroenie, Moscow, 1975) (in Russian)

    Google Scholar 

  12. S.I. Pugachev (ed.), Piezoceramic transducers: the directory (Sudostroenie, Leningrad, 1984), p. 256 (in Russian)

    Google Scholar 

  13. I.G. Minaev, V.M. Sharapov, About influence of pressure on an internal friction of piezoceramic ЦTC. News of high schools USSSR—Physics, No. 9 (1976) (in Russian)

    Google Scholar 

  14. E. Skuchik, Simple and difficult oscillatory systems (Mir, Moscow, 1971) (in Russian)

    Google Scholar 

  15. R. Holland, Representation of dielectric, elastic and piezoelectric losses by complex coefficients. IEEE Trans. Sonics Ultrason. SU-14(1), 18–20 (1967)

    Google Scholar 

  16. R. Holland, Measurment of piezoelectric phase angles in a ferroelectric ceramic. IEEE Trans. Sonics Ultrason. SU- 172, 123–124 (1970)

    Google Scholar 

  17. C.E. Land, G.W. Smith, C.R. Westagate, The dependence of small—signal parameters of ferroelectric ceramic resonators upon state of polarization. IEEE Trans. Sonics Ultrason. SU-11, 8–19 (1964)

    Google Scholar 

  18. Y.M. Poplavko, Physics of dielectrics (Higher school, Кirovograd, 1980) (in Russian)

    Google Scholar 

  19. V.M. Sharapov, Z.V. Sotula, I.G. Minaev, P.A. Molchanov, V.G. Savin, I.I. Morgun, Research of an internal friction in piezoceramic elements of electro-acoustic transducers/ Visnyk CHDTU, No. 2 (2011) (in Russian)

    Google Scholar 

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Correspondence to Valeriy Sharapov .

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Sharapov, V., Sotula, Z., Kunickaya, L. (2014). Methods of Increasing Sound Pressure. In: Piezo-Electric Electro-Acoustic Transducers. Microtechnology and MEMS. Springer, Cham. https://doi.org/10.1007/978-3-319-01198-1_8

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