Bayesian parameter identification of orthotropic composite materials using Lamb waves dispersion curves measurement

This paper deals with the problem of elastic constant identification in thin plates made of orthotropic composite materials. The approach is based on the analysis of Lamb wave propagation and the related dispersion curves to find the underlying material elastic constants. In the proposed implementat...

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Veröffentlicht in:Journal of vibration and control 2017-09, Vol.23 (16), p.2656-2671
Hauptverfasser: Gallina, Alberto, Ambrozinski, Lukasz, Packo, Pawel, Pieczonka, Lukasz, Uhl, Tadeusz, Staszewski, Wieslaw J
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container_end_page 2671
container_issue 16
container_start_page 2656
container_title Journal of vibration and control
container_volume 23
creator Gallina, Alberto
Ambrozinski, Lukasz
Packo, Pawel
Pieczonka, Lukasz
Uhl, Tadeusz
Staszewski, Wieslaw J
description This paper deals with the problem of elastic constant identification in thin plates made of orthotropic composite materials. The approach is based on the analysis of Lamb wave propagation and the related dispersion curves to find the underlying material elastic constants. In the proposed implementation a scanning laser Doppler vibrometer is used to measure Lamb wave dispersion curves. The Local Interaction Simulation Approach is used simultaneously to find a solution to a high-frequency wave propagation problem. The experimental and simulated data are combined in a Bayesian framework for parameter identification which is robust in condition of parameter, modeling and measurement uncertainty. The results are discussed and compared with the results from a deterministic optimization.
doi_str_mv 10.1177/1077546315619264
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subjects Bayesian analysis
Composite materials
Computer simulation
Elastic properties
Lamb waves
Optimization
Parameter identification
Propagation
Thin plates
Wave dispersion
Wave propagation
title Bayesian parameter identification of orthotropic composite materials using Lamb waves dispersion curves measurement
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