Identification of elastic orthotropic material parameters based on ESPI measurements

David Lecompte, H. Sol, J. Vantomme, A. M. Habraken

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Résumé

Parameter identification methods, which integrate optimization techniques and numerical methods such as the finite element method (FEM), offer an alternative tool for material characterisation. The most common approach is to determine the optimal estimates of the model parameters by minimizing a selected measure-of-fit between the responses of the system and the model. The possibility is studied of retrieving the four independent elastic engineering constants for an orthotropic medium, based on the measurement of a heterogeneous displacement field. In the present case a tensile test is performed on a perforated specimen. The responses of the system, i.e. the surface displacements are measured with an Electronic Speckle Pattern Interferometer. Strains are subsequently calculated, based on the measured displacement field. A finite element model of the perforated specimen is made. The difference between the experimental and numerical strains is minimized in a least squares sense by updating the values of the parameters. The obtained material (or model) parameters are very well in agreement with the traditionally determined ones.

langue originaleAnglais
titreProceedings of the 2005 SEM Annual Conference and Exposition on Experimental and Applied Mechanics
Pages1055-1062
Nombre de pages8
étatPublié - 2005
Evénement2005 SEM Annual Conference and Exposition on Experimental and Applied Mechanics - Portland, OR, États-Unis
Durée: 7 juin 20059 juin 2005

Série de publications

NomProceedings of the 2005 SEM Annual Conference and Exposition on Experimental and Applied Mechanics

Une conférence

Une conférence2005 SEM Annual Conference and Exposition on Experimental and Applied Mechanics
Pays/TerritoireÉtats-Unis
La villePortland, OR
période7/06/059/06/05

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