Operational Modal Analysis on laminated glass beams
Manuel López Aenlle, F. Pelayo, Luis Manuel Villa García, Josu Barredo Egusquiza, L. Hermanns, Alberto Fraile
Abstract
Manuel López Aenlle, F. Pelayo, Luis Manuel Villa García, Josu Barredo Egusquiza, L. Hermanns, Alberto Fraile
Abstract
Laminated glass is a sandwich element consisting of two or more glass sheets, with one or more interlayers of polyvinyl butyral (PVB). The dynamic response of laminated glass beams and plates can be predicted using analytical or numerical models in which the glass and the PVB are usually modelled as linear-elastic and linear viscoelastic materials, respectively. In this work the dynamic behavior of laminated glass beams are predicted using a finite element model and the analytical model of Ross-Kerwin-Ungar. The numerical and analytical results are compared with those obtained by operational modal analysis performed at different temperatures.
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Laminated glass is a sandwich element consisting of two or more glass sheets, with one or more interlayers of polyvinyl butyral (PVB). The dynamic response of laminated glass beams and plates can be predicted using analytical or numerical models in which the glass and the PVB are usually modelled as linear-elastic and linear viscoelastic materials, respectively. In this work the dynamic behavior of laminated glass beams are predicted using a finite element model and the analytical model of Ross-Kerwin-Ungar. The numerical and analytical results are compared with those obtained by operational modal analysis performed at different temperatures.
Key concepts: Laminated glass, Polyvinyl butyral, Viscoelasticity, Finite element method, Materials science, Composite material, Modal, Modal analysis