Characterization of Non-Highly Compressed Iron Powders in Ring Form for Application in the Field of Electrical Machines

Authors

Mohammad Torabi Shahbaz
Johannes Kepler University Linz, Institute for Electric Drives and Power Electronics
Daniel Wöckinger
Johannes Kepler University Linz, Institute for Electric Drives and Power Electronics
https://orcid.org/0000-0002-7794-0311
Edmund Marth
Johannes Kepler University Linz, Institute for Electric Drives and Power Electronics
https://orcid.org/0000-0002-8455-5841
Gerd Bramerdorfer
Johannes Kepler University Linz, Institute for Electric Drives and Power Electronics
https://orcid.org/0000-0002-0987-7306

Synopsis

In this study, non-highly compressed iron powders in a ring-shaped sample container are characterized. This approach involves the dimensioning of a non-magnetic ring-shaped container to measure the magnetic properties of ferromagnetic powders with different bulk densities. Therefore, an optimization of the container’s dimensions is presented. Finally, the precise data acquisition systems for determining the material’s B-H characteristics and loss curves in relevant operating points are discussed and first measuring results for several distinct material densities are presented.

Author Biographies

Mohammad Torabi Shahbaz, Johannes Kepler University Linz, Institute for Electric Drives and Power Electronics

Linz, Austria. E-mail: mohammad.torabi_shahbaz@jku.at

Daniel Wöckinger, Johannes Kepler University Linz, Institute for Electric Drives and Power Electronics

Linz, Austria. E-mail: daniel.woeckinger@jku.at

Edmund Marth, Johannes Kepler University Linz, Institute for Electric Drives and Power Electronics

Linz, Austria. E-mail: edmund.marth@jku.at

Gerd Bramerdorfer, Johannes Kepler University Linz, Institute for Electric Drives and Power Electronics

Linz, Austria. E-mail: g.bramerdorfer@jku.at

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Published

May 14, 2025

How to Cite

Characterization of Non-Highly Compressed Iron Powders in Ring Form for Application in the Field of Electrical Machines. (2025). In XXVIII. Symposium Electromagnetic Phenomena in Nonlinear Circuits (EPNC 2024): Conference Proceedings (pp. 69-74). University of Maribor Press. https://press.um.si/index.php/ump/catalog/book/963/chapter/460