DocumentCode :
3602738
Title :
The Influence of Cutting Edge Deformations on Magnetic Performance Degradation of Electrical Steel
Author :
Shih-Kang Kuo ; Wen-Chieh Lee ; Sheng-Yang Lin ; Chen-Yuan Lu
Author_Institution :
Dept. of Iron & Steel R&D, China Steel Corp., Kaohsiung, Taiwan
Volume :
51
Issue :
6
fYear :
2015
Firstpage :
4357
Lastpage :
4363
Abstract :
Although it has been widely known that the cutting process of electrical steel brings deterioration effects to magnetic properties, it is still unclear how to evaluate the quality of the cutting process effectively. This paper investigates the performance degradation due to the punching process based on a needle probe instrument that incorporates three needle probes arranged in a way to pick up the flux around the area of the cutting edge and the flux of the unaffected center area. The amount of performance degradation can be obtained by comparing the edge and the center flux values. 50CS1300 samples with different punching clearances were produced, and measurement results were demonstrated. The power conversion losses imposed by the punching process were evaluated in terms of several measured parameters, including the magnetic flux density, the iron loss, and the copper loss. In addition, how different grain sizes affect the punching performance is also studied in this paper. Two materials with the same iron loss grade but different grain sizes were punched, and their magnetic properties were also examined.
Keywords :
cutting; deformation; grain size; magnetic flux; needles; probes; punching; steel; center area flux; copper loss; cutting edge deformations; cutting process quality evaluation; electrical steel; grain sizes; iron loss grade; magnetic flux density; magnetic performance degradation; magnetic properties; needle probe instrument; performance degradation; power conversion losses; punching clearances; punching performance; Grain size; Magnetic field measurement; Magnetic flux; Magnetomechanical effects; Needles; Probes; Punching; Deformation; electrical steel; motor manufacturing; needle probe; residual stress;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2015.2440351
Filename :
7116552
Link To Document :
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