
doi: 10.1007/bf00889116
In the present paper we consider the propagation of transverse waves in a bilayer subjected to finite, static, uniform deformations. It is assumed that in the natural (undeformed) state the layer is isotropic. The dispersion relations are derived for SH waves and Love waves for a body with an arbitrary potential. Numerical results are presented for the Murnaghan potential.
three-dimensional linearized theory of elasticity, bilayer, Wave scattering in solid mechanics, Bulk waves in solid mechanics, Nonlinear elasticity, transverse waves, Surface waves in solid mechanics, finite, static, uniform deformations, small-amplitude waves, dispersion relations, SH waves, initial stresses, Love waves, Murnaghan potential
three-dimensional linearized theory of elasticity, bilayer, Wave scattering in solid mechanics, Bulk waves in solid mechanics, Nonlinear elasticity, transverse waves, Surface waves in solid mechanics, finite, static, uniform deformations, small-amplitude waves, dispersion relations, SH waves, initial stresses, Love waves, Murnaghan potential
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