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Magnetic Properties and Recrystallization Texture Evolutions of Phosphorus-bearing Non-oriented Electrical Steel Sheets

机译:含磷无取向电工钢板的磁性能和再结晶织构演变

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The effect of phosphorus (P) on magnetic properties and also on recrystallization texture of non-oriented electrical steel sheets has been investigated to develop core materials with low core loss and high permeability. Specimens containing different amounts of P were cold-rolled to various thicknesses, i.e. with various cold-rolling reductions, and annealed for recrystallization and grain growth. Magnetic induction of the steel with a large amount of P was higher than that of the steel with a small amount of P. Moreover, magnetic induction of the steel with a large amount of P slightly decreased with reduction of sheet thickness, i.e. with an increase in cold-rolling reduction, whereas magnetic induction of the steel with a small amount of P dramatically decreased. The most effective way to reduce core loss was to reduce thickness of electrical steel sheets. Therefore, P-bearing thin gauge non-oriented electrical steel sheets achieved low core loss and high permeability. The typical magnetic properties of P-bearing non-oriented electrical steel sheets with a thickness of 0.27 mm were 16.6 W/kg in W10/400 and 1.73 T in B50. These excellent magnetic properties were provided by the recrystallization texture control by P. {111}〈112〉 component in recrystallization texture, which deteriorates magnetic properties of electrical steel sheets, was suppressed during recrystallization. Furthermore, {φ_1, Φ, φ_2}={25°, 10-15°, 45°} component significantly developed at the expense of {111 }〈112〉 component during grain growth. P segregation at initial grain boundaries would be responsible for this texture evolution. Accordingly, P would greatly contribute to the improvement of magnetic properties of non-oriented electrical steel sheets through the recrystallization texture control.
机译:已经研究了磷(P)对无取向电工钢板的磁性能以及再结晶织构的影响,以开发低铁损和高磁导率的铁芯材料。将含有不同量P的试样冷轧至各种厚度,即以不同的冷轧压下率进行退火,然后进行退火以进行再结晶和晶粒长大。 P含量高的钢的磁感应强度高于P含量低的钢的磁感应强度。而且,P含量高的钢的磁感应强度随着板厚的减小而略有降低,即随着厚度的增加而减小。冷轧压下率降低,而少量P的钢的磁感应强度显着降低。减少铁损的最有效方法是减少电工钢板的厚度。因此,P轴承薄型无方向性电磁钢板的铁损低,导磁率高。厚度为0.27 mm的P轴承无取向电工钢板的典型磁性能在W10 / 400中为16.6 W / kg,在B50中为1.73T。通过利用P. {111}& 112&成分的再结晶织构控制来提供这些优异的磁性能。在再结晶过程中,抑制了电磁钢板的磁性能劣化。此外,{φ_1,Φ,φ_2} = {25°,10-15°,45°}分量显着发展,但在晶粒生长过程中以{111} 〈112〉分量为代价。初始晶界处的P偏析将负责这种纹理演变。因此,P通过再结晶织构的控制而极大地有助于改善无方向性电磁钢板的磁性能。

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