Influence of temperature on magnetic properties of silicon steel lamination

In this paper, we studied the influence of thermal effect on the iron loss components by DC and AC magnetic measurement. The measured result shows that iron loss of nonoriented silicon steel is more influenced by temperature than grain oriented one. Based on loss separation model, we have found a su...

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Veröffentlicht in:AIP advances 2017-05, Vol.7 (5), p.056113-056113-7
Hauptverfasser: Chen, Junquan, Chen, Zhihua, Wang, Dong, Wu, Leitao, Zheng, Xiaoqin, Birnkammer, Florian, Gerling, Dieter
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container_end_page 056113-7
container_issue 5
container_start_page 056113
container_title AIP advances
container_volume 7
creator Chen, Junquan
Chen, Zhihua
Wang, Dong
Wu, Leitao
Zheng, Xiaoqin
Birnkammer, Florian
Gerling, Dieter
description In this paper, we studied the influence of thermal effect on the iron loss components by DC and AC magnetic measurement. The measured result shows that iron loss of nonoriented silicon steel is more influenced by temperature than grain oriented one. Based on loss separation model, we have found a suitable iron loss expression for nonoriented and grain oriented steels. Then a temperature dependent iron loss model is proposed, where temperature coefficient k is introduced to consider thermal effect on dynamic loss. The iron loss model is validated by all series of silicon steel stripe made by WISCO. The relative error of the model is about 11% in a wide range of 20∼400Hz, 20∼200°C, 0∼2T. The proposed model can be applicable to other types of magnetic materials as long as their resistivity rate exhibits approximately linear thermal dependence within a temperature range of 20∼200°C.
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subjects Core loss
Magnetic materials
Magnetic measurement
Magnetic properties
Silicon steels
Steel
Temperature dependence
title Influence of temperature on magnetic properties of silicon steel lamination
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