The excitation and propagation of elastic waves in multilayered anisotropic composites
β Scribed by Ye.V. Glushkov; N.V. Glushkova; A.S. Krivonos
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 381 KB
- Volume
- 74
- Category
- Article
- ISSN
- 0021-8928
No coin nor oath required. For personal study only.
β¦ Synopsis
Using an integral approach wave fields, excited by dynamic action on composite materials with an arbitrary anisotropy of the elastic properties of their layers, are expressed in the form of the convolution of a Green's matrix with the stress vector of the specified load. The construction of a Fourier symbol of Green's matrix and the location of their poles and residues in them, which gives the asymptotic form of the surface and channel waves, plays a key role in determining the dynamic reaction of the material and in analysing the wave fields. Unlike the representations of classical modal analysis, the latter takes into account not only the characteristics of the material but also of the source. A brief description of the general scheme of wave analysis is given and test numerical examples are presented, as well as examples of the effect of the material structure on the energy characteristics and directivity of the radiation of waves excited in them by surface piezoactuators.
π SIMILAR VOLUMES
The propagation of shock waves in anisotropic materials (aluminium alloys), the state of which obeys a non-linear relation, which generalizes GrΓΌneisen's equation for isotropic materials, is investigated. The concept of total generalized pressure and the pressure corresponding to the thermodynamic r