Numerical description of the edge mode at the beveled extremity of a plate.
Identifieur interne : 000315 ( PubMed/Curation ); précédent : 000314; suivant : 000316Numerical description of the edge mode at the beveled extremity of a plate.
Auteurs : Nicolas Wilkie-Chancellier [France] ; Hugues Duflo ; Alain Tinel ; Jean DuclosSource :
- The Journal of the Acoustical Society of America [ 0001-4966 ] ; 2005.
Abstract
This paper deals with the reflection of a two-dimensional harmonic Lamb wave at the beveled end of a plate. The existence of a resonant edge mode is described by a numerical model. It is proved that the edge mode is the resonance of different complex modes. The behavior of this mode as a function of the bevel angle is studied. Its amplitude decreases and its resonance frequency shifts as the bevel angle decreases from 90 to 85 deg. An unexpected strong variation of the repartition of the reflected energy is linked to this phenomenon.
PubMed: 15704412
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<front><div type="abstract" xml:lang="en">This paper deals with the reflection of a two-dimensional harmonic Lamb wave at the beveled end of a plate. The existence of a resonant edge mode is described by a numerical model. It is proved that the edge mode is the resonance of different complex modes. The behavior of this mode as a function of the bevel angle is studied. Its amplitude decreases and its resonance frequency shifts as the bevel angle decreases from 90 to 85 deg. An unexpected strong variation of the repartition of the reflected energy is linked to this phenomenon.</div>
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<Abstract><AbstractText>This paper deals with the reflection of a two-dimensional harmonic Lamb wave at the beveled end of a plate. The existence of a resonant edge mode is described by a numerical model. It is proved that the edge mode is the resonance of different complex modes. The behavior of this mode as a function of the bevel angle is studied. Its amplitude decreases and its resonance frequency shifts as the bevel angle decreases from 90 to 85 deg. An unexpected strong variation of the repartition of the reflected energy is linked to this phenomenon.</AbstractText>
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