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Journal of Applied Mechanics and Technical Physics

2013 year, number 6

Diagonalization of a Three-Dimensional System of Equations in Terms of Displacements of the Linear Theory of Elasticity of Transversely Isotropic Media

N. I. Ostrosablin
Keywords: transversely isotropic medium, elasticity moduli, longitudinal normals, general solution, recursion operators, diagonalization of elliptic system

Abstract

A dynamic three-dimensional system of linear equations in terms of displacements of the theory of elasticity of transversely isotropic media is given explicit expressions for phase velocities and polarization vectors of plane waves. All the longitudinal normals are found. For some values of the elasticity moduli, the system of equations is reduced to a diagonal shape. For static equations, all the conditions of the system ellipticity are determined. Two new representations of displacements through potential functions that satisfy three independent quasi-harmonic equations are given. Constraints on elasticity moludi, at which the corresponding coefficients in these representations are real, different, equal, or complex, are determined. It is shown that these representations are general and complete. Each representation corresponds to a recursion (symmetry) operator, i.e., a formula of production of new solutions.