Vibration analysis of an automotive forming tool using coupled MBS-FEM simulation and experimental validation

  • To improve efficiency in automotive press shops, press systems with increasingly high stroke rates are beingimplemented, raising thereby the structural dynamic load on the press and especially on the forming tool. Adetailed knowledge of the vibrations and resulting critical loads is thus essential for accurate and reliable de-signs of forming tools. In this paper, multibody simulation (MBS) of aTo improve efficiency in automotive press shops, press systems with increasingly high stroke rates are beingimplemented, raising thereby the structural dynamic load on the press and especially on the forming tool. Adetailed knowledge of the vibrations and resulting critical loads is thus essential for accurate and reliable de-signs of forming tools. In this paper, multibody simulation (MBS) of a selected automotive tool is presentedenabling the identification of the vibration of its components. Starting from a pure rigid modelling approach,the MBS model is extended by adding finite element (FE) component to allow extra flexibility in the sys-tem. As an example, a detailed vibrational analysis - both in time and frequency domain - is performed ona blankholder. Also an experimental validation of a blankholder vibration under operational load is carriedout, with test signal data gained by piezoelectric accelerometers.show moreshow less

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Author:Krzysztof Swidergal, Christian Lubeseder, Ingo von Wurmb, Josef Meinhardt, Marcus WagnerOTHORCiDGND, Steffen MarburgORCiD
URL / DOI:http://past.isma-isaac.be/downloads/isma2014/papers/isma2014_0245.pdf
Parent Title (English):Proceedings of the 26th International Conference on Noise and Vibration Engineering (ISMA2014), Leuven, Belgium
Document Type:conference proceeding (article)
Language:English
Year of first Publication:2014
Release Date:2021/05/27
First Page:2931
Last Page:2942
Institutes:Fakultät Maschinenbau
Fakultät Maschinenbau / Labor Finite-Elemente-Methode (FEM)
Fakultät Maschinenbau / Labor Maschinendynamik und Strukturanalyse (LMS)
research focus:Materialien und Produktion
Frontdoor-URL:https://opus4.kobv.de/opus4-oth-regensburg/1897
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