期刊论文详细信息
JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS 卷:500
Static and dynamic energy losses along different directions in GO steel sheets
Article; Proceedings Paper
Appino, Carlo1  Ferrara, Enzo1  Fiorillo, Fausto1  Ragusa, Carlo2  de la Barriere, Olivier3 
[1] Ist Nazl Ric Metrol INRIM, Adv Mat Metrol & Life Sci, Turin, Italy
[2] Politecn Torino, Dept Energy, Turin, Italy
[3] CNRS ENS, Lab SATIE, Cachan, France
关键词: Grain-oriented Fe-Si;    Magnetisation process;    Magnetic losses;    Power transformers;    Large rotating machines;   
DOI  :  10.1016/j.jmmm.2019.166281
来源: Elsevier
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【 摘 要 】

Grain-oriented (GO) Fe-Si sheets are often preferred to non-oriented steels in large rotating machines, where the material response along directions different from the rolling one (RD) matters, both in terms of magnetisation curve and energy losses. The experiments show that the material properties depend in a complex fashion on the angle theta made by the applied field with respect to RD in the lamination plane, an effect that can be quantitatively interpreted in terms of evolution of the domain wall processes. It was shown that the pre-emptive knowledge of the material behaviour along RD (theta = 0 degrees) and the transverse direction TD (theta = 90 degrees) allows one to predict, under quasi-static excitation, the normal magnetisation curve, the hysteresis loop shape, and the energy loss dependence on theta in high-permeability GO sheets. The evolution of the quasi-static magnetic properties with theta has an obvious counterpart in the dynamic behaviour. In the present work we have therefore investigated, from the experimental and theoretical viewpoint, the behaviour of the magnetic energy loss W (f, J(p)) versus frequency (1 Hz <= f <= 200 Hz) and peak polarisation (0.15 T <= J(p) <= 1.6 T) in high-permeability 0.29 mm thick GO Epstein samples, cut at 15 degrees steps between RD and TD. We show that the predicting method developed for the quasi-static loss can be made general through loss decomposition and applied, in particular, to the determination of the excess loss term. This leads to a general description of W (f, J(p)) as a function of the sheet cutting angle, without using arbitrary parameters.

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