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Vibration Analysis of Composite Folded-Plate Members


Affiliations
1 DECA-IST, Technical University of Lisbon, Portugal
     

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This paper presents the formulation of a Generalised Beam Theory (GBT) developed to analyse the vibration behaviour of composite thin-walled members made of laminated plates and displaying arbitrary orthotropy. Initially, the equilibrium equations and corresponding boundary conditions are derived and their terms are physically interpreted, i.e., related to the member mechanical properties. Then, the derived equations are used to study the local and global vibration behaviour of lipped channel members displaying cross-ply orthotropy. The GBT results are validated through a comparison with numerical values obtained from finite element analyses, which employ thin-shell elements to discretise the member. Finally, a brief investigation is carried out in order to assess the variation of the fundamental frequency value and vibration mode nature with the member length.

Keywords

Thin-walled members; Generalised beam theory; Orthotropic materials
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  • Vibration Analysis of Composite Folded-Plate Members

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Authors

Nuno Silvestre
DECA-IST, Technical University of Lisbon, Portugal
Dinar Camotim
DECA-IST, Technical University of Lisbon, Portugal

Abstract


This paper presents the formulation of a Generalised Beam Theory (GBT) developed to analyse the vibration behaviour of composite thin-walled members made of laminated plates and displaying arbitrary orthotropy. Initially, the equilibrium equations and corresponding boundary conditions are derived and their terms are physically interpreted, i.e., related to the member mechanical properties. Then, the derived equations are used to study the local and global vibration behaviour of lipped channel members displaying cross-ply orthotropy. The GBT results are validated through a comparison with numerical values obtained from finite element analyses, which employ thin-shell elements to discretise the member. Finally, a brief investigation is carried out in order to assess the variation of the fundamental frequency value and vibration mode nature with the member length.

Keywords


Thin-walled members; Generalised beam theory; Orthotropic materials



DOI: https://doi.org/10.4273/ijvss%2F2009%2Fv1%2Fi1-3%2F98151