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Influence of Nb Content on Precipitation Grain Microstructure Texture and Magnetic Properties of Grain-Oriented Silicon Steel

机译:Nb含量对晶粒硅钢沉淀晶粒组织质地和磁性磁性的影响

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摘要

The effects of Nb content on precipitation, microstructure, texture and magnetic properties of primary recrystallized grain-oriented silicon steel were investigated by various methods. The results show that the precipitates in primary recrystallized sheets are mainly MnS, Nb(C,N), composite precipitates of MnS and AlN, and composite precipitates of Nb(C,N) and AlN. Adding niobium could refine the primary recrystallized microstructure. The steel with 0.009 wt% Nb possesses the finest and the most dispersed precipitates, which contributes to the finest primary recrystallized microstructure due to the strong pinning force. Adding niobium is beneficial to obtain large volume fraction favorable texture for grain-oriented silicon steel, and the effect of Nb addition is not obvious when the content is higher than 0.009 wt%. After final annealing, the steel with 0.009 wt% Nb shows the best magnetic properties, B800 = 1.872 T, P1.7/50 = 1.25 W/kg.
机译:采用各种方法研究了Nb含量对初级重结晶晶粒硅钢的沉淀,微观结构,质地和磁性的影响。结果表明,初级重结晶片中的沉淀物主要是MNS,Nb(C,N),MNS和AlN的复合沉淀物,以及Nb(C,N)和AlN的复合沉淀物。添加Niobium可以优化初级再结晶的微观结构。具有0.009wt%Nb的钢具有最优选的,并且最具分散的沉淀物,这有助于由于钉扎力强的最佳初级重结晶微观结构。添加Niobium有利于获得大量型硅钢的大容量分数良好的质地,并且当含量高于0.009重量%时,Nb添加的效果是不明显的。在最终退火后,具有0.009wt%Nb的钢显示最佳磁性,B800 = 1.872 T,P1.7 / 50 = 1.25 / kg。

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