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Authors:Olaf Enge-Rosenblatt: Fraunhofer Institute for Integrated Circuits, Division Design Automation, Dresden, Germany
Christian Bayer: Fraunhofer Institute for Integrated Circuits, Division Design Automation, Dresden, Germany
Joachim Schnüttgen: Interroll Holding GmbH, Interroll Research Center, Wassenberg, Germany
Publication title:Modeling a drum motor for illustrating wearout phenomena
Conference:Proceedings of the 9th International MODELICA Conference; September 3-5; 2012; Munich; Germany
Publication type: Abstract and Fulltext
Issue:076
Article No.:092
Abstract:Applications of mathematical models of technical systems are widespread in today’s product development cycle. Mathematical models help to increase the understanding of physical properties of a product. The Usage of mathematical models in the design phase allows investigations of functional properties under changing operational conditions.

Often; mathematical models with different levels of detail are used. In this contribution; a model of a drum motor is presented. This model was designed for the description of dynamic behaviour of the drum motor as well as for the possible implementation of several wearing phenomena. Using this model; a better understanding of wear and tear phenomena has been achieved by carrying out a considerable number of simulation runs using different operational and wearing conditions. Using this information; important knowledge about detection of wearout signs was able to be gained.

Language:English
Keywords:drum motor; mathematical model; wearout phenomena modelling; parameter determination
Year:2012
No. of pages:8
Pages:889-896
ISBN:978-91-7519-826-2
Series:Linköping Electronic Conference Proceedings
ISSN (print):1650-3686
ISSN (online):1650-3740
File:http://www.ep.liu.se/ecp/076/092/ecp12076092.pdf
Available:2012-11-19
Publisher:Linköping University Electronic Press; Linköpings universitet

REFERENCE TO THIS PAGE
Olaf Enge-Rosenblatt, Christian Bayer, Joachim Schnüttgen (2012). Modeling a drum motor for illustrating wearout phenomena, Proceedings of the 9th International MODELICA Conference; September 3-5; 2012; Munich; Germany http://dx.doi.org/10.3384/ecp12076889 (accessed 11/21/2014)