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The effects of boron content in the range of 0-0.0082 wt%, on the inclusion type, microstructure, texture and magnetic properties of non-oriented electrical steels have been studied. Afterfi nal annealing, the addition of excess boron(w(Bt)>0.004 1 wt%) led to the formation of Fe2B particles. As boron content increased, grain size increased and reached a maximum in steel with 0.004 1 wt% boron. Furthermore, steel containing 0.004 1 wt% boron had the strongest {100}fi ber texture, Goss texture and the weakest {111}fi ber texture among thefi ve tested steels. Flux densityfi rstly rapidly increased and then suddenly decreased with increasing boron content and reached a maximum in steel with 0.004 1 wt% boron. Conversely, core lossfi rst sharply decreased and then abruptly increased with the increase of boron content and reached a minimum in steel containing 0.004 1 wt% boron. Steel containing 0.004 1 wt% boron obtained the best magnetic properties, predominantly through the development of optimum grain size and favorable texture.

参考文献

[1] Hou C.-K.;Hu C.-T. .The effect of aluminium on the magnetic properties of lamination steels[J].IEEE Transactions on Magnetics,1991(5):4305-4309.
[2] Chun-Kan Hou .The effects of grain size on the magnetic properties of fully processed, continuous-annealed low-carbon electrical steels[J].IEEE Transactions on Magnetics,1996(2):471-477.
[3] 夏兆所.含硼冷轧无取向硅钢的研制[J].上海金属,2003(04):20-23.
[4] Takehide SENUMA .Present Status of and Future Prospects for Precipitation Research in the Steel Industry[J].ISIJ International,2002(1):1-12.
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