State-of-the-art and future trends in soft magnetic materials characterization with focus on electric machine design – Part 1

Author:

Bramerdorfer Gerd1,Kitzberger Martin1,Wöckinger Daniel1,Koprivica Branko2ORCID,Zurek Stan3

Affiliation:

1. 27266 Johannes Kepler University Linz , Department of Electrical Drives and Power Electronics , Altenbergerstraße 69 , Linz , Austria

2. University of Kragujevac , Faculty of Technical Sciences in Cacak , Svetog Save 65 , Cacak , Serbia

3. Megger Instruments Ltd , Archcliffe Road , Dover , UK

Abstract

Abstract The first of this two-part article illustrates the state-of-the-art in soft magnetic materials characterization starting with very early developments and giving a retrospective view of research carried out in this field. One famous measurement setup is the Epstein frame, named after Josef Epstein. Around 1900, he published a German article about “The magnetic testing of laminated steel”. As it is highly likely interesting to researchers worldwide, the authors reconsidered his contributions in English language. Consequently, the most common measurement setups are introduced. Besides the Epstein frame, these are the single sheet tester and setups analyzing ring-shaped specimens. These setups allow for a 1-D characterization of the material, while it usually features anisotropic properties and cross-coupling of the magnetization axes. For this reason, 2-D and even 3-D setups are considered and presented here. This article provides a thorough introduction to the field of material characterization. It is the basis for modeling the material characteristics, which is presented in the second part, which also includes recent developments for considering manufacturing impact. It is of particular interest when dealing with mass-produced electric machines. Eventually, these articles shall constitute valuable references for both engineers new to this field as well as experienced researchers.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Instrumentation

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