Welcome to research group 5208: Model-based determination of the nonlinear properties of piezoceramics in high-power ultrasonic applications (Modellbasierte Bestimmung nichtlinearer Eigenschaften von Piezokeramiken für Leistungsschallanwendungen - NEPTUN).

News

04.04.2024

Project Members attend DAGA 2024

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19.12.2023

Successfull presentation of results at the IWPMA 2023 in Korea

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23.10.2023

Neptun project member receives award at 2023 ICU in Beijing

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05.06.2023

First results presented at the 93rd GAMM annual meeting in Dresden

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16.11.2022

Kickoff meeting in Lehnin

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More news

Project details

Project summary

Model-based determination of the nonlinear properties of piezoceramics in high-power ultrasonic applications

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Subproject MESS

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Subproject OPT

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Subproject SIM

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Subproject ANA

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Speaker

Bernd Henning

Office: P1.5.18.1
Phone: +49 5251 60-3022
E-mail: henning@emt.uni-paderborn.de

Contributing groups

Measurement Engineering

Prof. Dr.-Ing. Bernd Henning

Mathematical Optimization

Prof. Dr. Andrea Walther
Dr. Benjamin Jurgelucks

Theoretical Electrical Engineering

Prof. Dr. Jens F?rstner

Dynamics and Mechatronics

Dr.-Ing. Tobias Hemsel

Partial Differential Equations

Prof. Dr. Michael Winkler

All Contributors

Funding

The resarch group 5208 is funded by the German Resarch Foundation (DFG).

Publications

Inverse procedure for measuring piezoelectric material parameters using a single multi-electrode sample
L. Claes, N. Feldmann, V. Schulze, L. Meihost, H. Kuhlmann, B. Jurgelucks, A. Walther, B. Henning, Journal of Sensors and Sensor Systems 12 (2023) 163–173.
Inverse procedure for the identification of piezoelectric material parameters supported by dense neural networks
L. Claes, L. Meihost, B. Jurgelucks, Inverse Procedure for the Identification of Piezoelectric Material Parameters Supported by Dense Neural Networks, GAMM Annual Meeting, Dresden, 2023.
Parameter Identification of Piezoelectrics improved by Neural Networks
B. Jurgelucks, Parameter Identification of Piezoelectrics Improved by Neural Networks, GAMM Annual Meeting, Dresden, 2023.
Parameter identification in piezoelectricity based on all-at-once and reduced regularization
R. Kuess, Parameter Identification in Piezoelectricity Based on All-at-Once and Reduced Regularization, GAMM Annual Meeting, Dresden, 2023.
Influence of Temperature and Pre-Stress on the Piezoelectric Material Behavior of Ring-Shaped Ceramics
C. Scheidemann, T. Hemsel, O. Friesen, L. Claes, W. Sextro, in: 2023.
Influence of Temperature and Pre-Stress on the Piezoelectric Material Behavior of Ring-Shaped Ceramics
C. Scheidemann, T. Hemsel, O. Friesen, L. Claes, W. Sextro, in: 2023.
Identification of piezoelectric material parameters using optimised multi-electrode specimens
L. Claes, N. Feldmann, V. Schulze, B. Jurgelucks, A. Walther, B. Henning, in: Fortschritte Der Akustik - DAGA 2022, 2022, pp. 1326–1329.
Estimation of piezoelectric material parameters of ring-shaped specimens
O. Friesen, L. Claes, N. Feldmann, B. Henning, Estimation of Piezoelectric Material Parameters of Ring-Shaped Specimens, International 365足彩投注_365体育投注@ on Piezoelectric Materials and Applications in Actuators (IWPMA), 2022.
Optimal experiment design with respect to electrode configurations for a piezoelectric problem
V. Schulze, S. Schmidt, B. Jurgelucks, N. Feldmann, L. Claes, Optimal Experiment Design with Respect to Electrode Configurations for a Piezoelectric Problem, GAMM Annual Meeting, Kassel, 2021.
Modelling damping in piezoceramics: A comparative study
N. Feldmann, V. Schulze, L. Claes, B. Jurgelucks, L. Meihost, A. Walther, B. Henning, Tm - Technisches Messen 88 (2021) 294–302.
Optimised Multi-Electrode Topology for Piezoelectric Material Characterisation
L. Claes, N. Feldmann, B. Jurgelucks, V. Schulze, S. Schmidt, A. Walther, B. Henning, in: 2021, pp. 237–238.
Piezoelectric BC Modeling for Electrode Shapes with OED
V. Schulze, S. Schmidt, B. Jurgelucks, N. Feldmann, L. Claes, Piezoelectric BC Modeling for Electrode Shapes with OED, GAMM Juniors’ Summer School 2021, Graz, 2021.
Ein modellbasiertes Messverfahren zur Charakterisierung von Piezokeramiken unter Verwendung eines einzelnen scheibenf?rmigen Probek?rpers
N. Feldmann, ? Ein modellbasiertes Messverfahren zur Charakterisierung von Piezokeramiken unter Verwendung eines einzelnen scheibenf?rmigen Probek?rpers, Universit?t Paderborn, 2021.
Inverse piezoelectric material parameter characterization using a single disc-shaped specimen
N. Feldmann, V. Schulze, L. Claes, B. Jurgelucks, A. Walther, B. Henning, Tm - Technisches Messen (2020) 50–55.
Arbitrary sensitivity for inverse problems in piezoelectricity
B. Jurgelucks, V. Schulze, N. Feldmann, L. Claes, Arbitrary Sensitivity for Inverse Problems in Piezoelectricity, GAMM Annual Meeting, Wien, 2019.
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