Modelling damping in piezoceramics: A comparative study

Author:

Feldmann Nadine1,Schulze Veronika2,Claes Leander1,Jurgelucks Benjamin2,Meihost Lars1,Walther Andrea2,Henning Bernd1

Affiliation:

1. Measurement Engineering Group , 232601 Paderborn University , Warburger Straße 100 , Paderborn , Germany

2. Mathematical Optimization , 9373 Humboldt-Universität zu Berlin , Unter den Linden 6 , Berlin , Germany

Abstract

Abstract The progress in numerical methods and simulation tools promotes the use of inverse problems in material characterisation problems. A newly developed procedure can be used to identify the behaviour of piezoceramic discs over a wide frequency range using a single specimen via fitting simulated and measured impedances by optimising the underlying material parameters. Since there is no generally accepted damping model for piezoelectric ceramics, several mechanical damping models are examined for the material identification. Three models have been chosen and their ability to replicate the measured impedances is evaluated. On the one hand, the common Rayleigh model is considered as a reference. On the other hand, a Zener model and a model using complex constants are extended to model the transversely isotropic material. As the Rayleigh model is only valid for a limited frequency range, it fails to model the broadband behaviour of the material. The model using complex constants leads to the best fit over a wide frequency range while at the same time only adding three additional parameters for modelling damping. Thus, damping can be assumed approximately frequency-independent in piezoceramics.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Instrumentation

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