Local Instantaneous Iron Loss Measurement in Grain-Oriented Electrical Steel

Conventional iron loss measurement methods for grain-oriented electrical steel (GOES), typified by the single sheet tester (SST), evaluate the average iron loss over a large area during one excitation cycle. However, the spatial and temporal resolutions of these conventional methods are insufficient for evaluating local instantaneous iron loss associated with local magnetic domain structure changes occurring near grain boundaries in GOES. Therefore, this study proposes a novel measurement method that dramatically improves the spatial and temporal resolutions, enabling the measurement of local instantaneous iron loss. To validate the proposed method, the local instantaneous iron loss at the same location was compared before and after magnetic domain refinement.

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Publication Details

Journal
Sensors
Published
2026-08-26
DOI
https://doi.org/10.3390/s26175380
Primary Topic
Magnetic Properties and Applications
Type
article
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Local Instantaneous Iron Loss Measurement in Grain-Oriented Electrical Steel

Georgi Shilyashki, Helmut Pfützner, Yusuke Kawamura
Sensors
Magnetic Properties and Applications
article

Local Instantaneous Iron Loss Measurement in Grain-Oriented Electrical Steel

Georgi Shilyashki, Helmut Pfützner, Yusuke Kawamura
article en

Abstract

Conventional iron loss measurement methods for grain-oriented electrical steel (GOES), typified by the single sheet tester (SST), evaluate the average iron loss over a large area during one excitation cycle. However, the spatial and temporal resolutions of these conventional methods are insufficient for evaluating local instantaneous iron loss associated with local magnetic domain structure changes occurring near grain boundaries in GOES. Therefore, this study proposes a novel measurement method that dramatically improves the spatial and temporal resolutions, enabling the measurement of local instantaneous iron loss. To validate the proposed method, the local instantaneous iron loss at the same location was compared before and after magnetic domain refinement.

SensorsVol. 26(17)
Nippon Steel (Japan) (JP), TU Wien (AT), Manufacturing Advocacy & Growth Network (United States) (US)
Sustainable cities and communities
Openalex Percentile: Top 26%
Magnetic Properties and Applications
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