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1.
Ultrasonics ; 47(1-4): 1-9, 2007 Dec.
Article in English | MEDLINE | ID: mdl-17659314

ABSTRACT

Experimental and numerical results are presented on the behavior of guided waves in elastic plates in plane strain that include a Gaussian variation of their section, located between two areas of constant thickness. The area of varying section is wide compared to the used wavelengths, which allows wave propagation inside this area. The experimental results show that an incident Lamb wave is indeed converted into an adiabatic wave inside the varying section domain. A trapped wave in the Gaussian domain is also observed, depending on the incident mode and on the Gaussian maximum height. Outside the varying section domain, conversion into different Lamb waves is observed. This conversion phenomenon is experimentally quantified by the measurement of the Lamb wave normal displacement and of its carried energy. A numerical study, based on the Finite Elements Method is performed, and successfully compared to the experimental results.


Subject(s)
Membranes, Artificial , Models, Theoretical , Radiometry/methods , Ultrasonics , Computer Simulation , Elasticity , Models, Statistical , Normal Distribution , Radiation Dosage , Scattering, Radiation
2.
Ultrasonics ; 42(1-9): 807-12, 2004 Apr.
Article in English | MEDLINE | ID: mdl-15047388

ABSTRACT

The aim of this work is to give experimental and numerical results on the behaviour of guided waves that propagate downslope in a free elastic plate with slowly linearly varying thickness. We show experimentally the propagation of adiabatic modes, which are guided waves that adapt to the varying thickness of the plate. As the thickness is decreasing, a given guided wave will reach its thickness cut-off. When this happens, we show that two phenomena occur: the reflection of this wave and its propagation backward in the plate, its conversion into a different guided wave which goes on propagating downslope in the plate. The numerical study is done with the software Ansys, based on the finite element method. The results obtained confirm the experimental ones.

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