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Articles

Wave reflection by the free boundary of a microstructured flexoelectric half-space

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Pages 793-815 | Received 29 Aug 2020, Accepted 17 Nov 2020, Published online: 11 Dec 2020
 

Abstract

Taking into consideration the effects of micro-inertia, flexoelectricity, and non-uniform strain, the field equations of isotropic dielectrics with centrosymmetric microstructures are specialized for a plane. Plane-wave solutions of these two-dimensional (2D) governing equations suggest the possibility of two plane waves propagating in a flexoelectric medium. Reflection phenomenon of the plane harmonic waves from the stress-free boundary of a dielectric half space is explored. The expressions for the coefficients of reflection and energy shares of reflected waves are obtained for the cases of both incident plane waves. The relevant physical constants of strontium titanate are chosen for numerical computations of the speeds, coefficients of reflection and energy shares of reflected waves. These wave characteristics are illustrated graphically to show the influences of incident angle, wavenumber, length parameter, and flexocoupling coefficient.

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