Title of article :
Effect of Micropolarity on the Propagation of Shear Waves in a Piezoelectric Layered Structure
Author/Authors :
Kumar, R Department of Mathematics - Kurukshetra University - Kurukshetra 136119, India , Singh, K Department of Mathematics - Lovely Professional University - Phagwara (Research Scholar Punjab Technical University - Jalandhar), India , Pathania, D.S Department of Mathematics - Guru Nanak Dev Engineering College - Ludhiana, India
Abstract :
This paper studies the propagation of shear waves in a composite
structure consisting of a piezoelectric layer perfectly bonded over a
micro polar elastic half space. The general dispersion equations for the
existence of shear waves are obtained analytically in the closed form.
Some particular cases have been discussed and in one special case the
relation obtained is in agreement with existing results of the classical –
Love wave equation. The micro polar and piezoelectric effects on the
phase velocity are obtained for electrically open and mechanically free
structure. To illustrate the utility of the problem numerical
computations are carried out by considering PZT-4 as a piezoelectric
and aluminum epoxy as micro polar elastic material. It is observed that
the micro polarity present in the half space influence the phase velocity
significantly in a particular region. The micro polar effects on the
phase velocity in the piezoelectric coupled structure can be used to
design high performance acoustic wave devices.
Keywords :
Shear wave , Micro polar , Piezoelectric , Dispersion , Phase velocity
Journal title :
Astroparticle Physics