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含銅取向硅鋼磁性能波動成因分析

Analyses of magnetic properties fluctuation in conventional grain oriented silicon steels containing copper

  • 摘要: 含銅取向硅鋼是一種成本低、成品率高的新型CGO取向硅鋼.其制備工藝明顯區別于主流的低溫加熱滲氮高磁感(HiB)取向硅鋼,其產品的磁性能波動范圍顯著高于低溫滲氮鋼.本文對實際生產中收集到的一些含銅CGO鋼成品板中的組織與磁性能進行研究分析,嘗試建立不同組織和磁性能相互間的對應關系,并對磁性能波動現象進行分析.分析結果表明,含銅CGO鋼成品板組織與抑制劑有明確的對應關系,而晶粒尺寸與Goss晶粒取向度并不完全呈對應關系.同時對熱軋板中的異常組織進行了深入研究,認為熱軋板表層脫碳區和中心層粗大形變晶粒的存在,直接影響了抑制劑的分布,導致最終成品板中組織和磁性能的波動.

     

    Abstract: The conventional grain-oriented (CGO) silicon steel containing copper is a type of grain-oriented steel with low cost and high productivity. The processing parameters in CGO steels are quite different to those of low temperature heating and nitriding high permeability (HiB) grain oriented silicon steels, the fluctuation range of the magnetic properties in CGO is much higher than that of nitrided HiB steels. In this study, typical final sheets from production lines of CGO steels containing copper during early stage production were collected, and the structure, texture, and magnetic properties were determined and compared to establish a relationship between the structure of the steels and inhibitors and to elucidate the reasons for property fluctuation. The results indicate that the macrostructure in the final sheets has a relationship with inhibitors and that the grain sizes do not show monotonous behavior. In addition, the defective microstructure in hot-rolled bands and intermediately annealed sheets are investigated and a coarse grain region and a decarburized surface layer are observed. Such regions are considered to influence the inhibitor distribution and impact the fluctuation in structure and its properties.

     

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