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Electro-elastic coupled fields of the general line source in infinite multilayered piezoelectric medium

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Języki publikacji
EN
Abstrakty
EN
Electro-elastic coupled fields excited by a general line source in a multilayered anisotropic piezoelectric medium are expressed in an analytical form. The general line source represents a combination of a straight 4D dislocation with the force and charge, distributed along the same line. The results are obtained in the form of well-convergent Fourier integrals. They can be considered as Green’s functions describing electro-elastic fields created in the given medium by arbitrary 2D bulk distributions of dislocations, forces, charges and electro-potential. The analysis is accomplished in terms of the propagator matrix which is equally applicable to both the stratified and graded layered media.
Słowa kluczowe
Rocznik
Strony
3--3
Opis fizyczny
–-19, Bibliogr. 25 poz.
Twórcy
Bibliografia
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  • 6. J.P. Nowacki, V.I.Alshits, A. Radowicz, The Green’s functions for an infinite piezo electric strip with line sources at the surfaces, International Journal of Applied Electro-magnetics and Mechanics, 12, 3–4, 177–202, 2000.
  • 7. J.P. Nowacki, V.I.Alshits, A. Radowicz, Green’s function for an infinite piezo electric strip with a general line defect, Journal of Technical Physics, 43, 2, 133–153, 2002.
  • 8. J.P. Nowacki, V.I.Alshits, A. Radowicz, 2D Electro-elastic fields in a piezo electric layer-substrate structure, International Journal of Engineering Science, 40, 2057–2076, 2002.
  • 9. J.P. Nowacki, Static and dynamic coupled fields in bodies with piezoeffects or polarization gradient, LNACM, 26, 2006, Springer, Heidelberg.
  • 10. V.I. Alshits, J.P. Nowacki, A. Radowicz, Interaction between non-parallel dislocations in piezoelectrics, International Journal Engineering Science, 47, 9, 894–901, 2009.
  • 11. J.P. Nowacki, V.I. Alshits, A. Radowicz, Electro-elastic dislocation fields in a piezo electric sandwich structure, International Journal of Applied Electromagnetics and Mechanics, 2010.
  • 12. J.P. Nowacki, V.I. Alshits, Dislocation fields in piezoelectrics, [in:] Dislocations In Solids, 13, F.R.N. Nabarro, J.P. Hirth [Eds.], Elsevier, Amsterdam, 2007, pp. 47–79.
  • 13. V.I. Alshits, H.O.K. Kirchner, Elasticity of multilayers. I. Basic equations and solutions, Philosophical Magazine A, 72, 6, 1431–1444, 1995.
  • 14. V.I. Alshits, H.O.K. Kirchner, Elasticity of multilayers. II. Strips, coatings and sandwiches, Philosophical Magazine A, 72, 6, 1445–1470, 1995.
  • 15. V.I. Alshits, H.O.K. Kirchner, G.A. Maugin, Elasticity of multilayers: properties of the propagator matrix and some applications, Mathematics and Mechanics of Solids, 6, 5, 481–502, 2001.
  • 16. M.Y. Chung, T.C.T. Ting, Line force, charge and dislocation in angularly inhomogeneous anisotropic piezoelectric wedges and spaces, Philosophical Magazine A, 71, 6, 1335–1343, 1995.
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  • 18. H.O.K. Kirchner, V.I. Alshits, Elastically anisotropic angularly inhomogeneous media. II. The Green’s function for piezoelectric piezomagnetic and magnetoelectric media, Philosophical Magazine A, 74, 4, 861–885, 1996.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT4-0009-0061
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