中温晶粒取向硅钢组织、织构及抑制剂的演变

Fan Lifeng, Xingyuan Zhao, Li-jun Xiao, Jiao Huang, Y. Zhang
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摘要

采用中温再加热和两段冷轧工艺生产工业化晶粒取向硅钢。结果表明:热轧薄板沿厚度方向存在表面层、过渡层和中心层三个断面;表层为完全再结晶晶粒,平均晶粒尺寸为42.81µm,中间层主要为纤维组织。高斯织构只出现在表层,含量为3.44% ~ 3.65%。经72%还原和脱碳退火后的第一次冷轧发生了一次再结晶,平均晶粒尺寸达到19.0µm,同时织构旋转为λ, γ纤维织构和高斯织构下降到2.89%。冷轧钢板采用第二次冷轧,还原率为58%,冷轧钢板由变形纤维组织组成,织构保持γ纤维织构,织构峰值在{111}处。热轧薄板析出相主要由Cu2 S和少量AlN组成,平均粒径为~ 14 nm。脱碳退火片中的抑制剂主要是AlN、Cu2 S、MnS及其复合析出物,它们呈球状或块状,平均粒径为~ 21 nm。经高温退火后,得到平均晶粒尺寸为9.41 mm的单一Goss取向晶粒,晶粒强度达到873.30。最终磁性能为:B8 = 1.865 T, P1.7/50 = 1.124 W/kg,满足27Q120的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evolution of microstructure, texture and inhibitor of medium temperature grain-oriented silicon steel
The medium temperature reheating and two-stage cold rolling process were adopted to produce industrialized Grain-oriented silicon steel. Results showed there were three sections (surface layer, transition layer and central layer) along the thickness direction on hot rolled sheets. Surface layer was occupied by complete recrystallization grains with average grain size 42.81 µm, while the central layer mainly consisted of fibrous microstructure. The Goss texture appeared only on surface layer with content 3.44%∼3.65%. After the first cold rolling with 72% reduction and decarburization annealing, the primary recrystallization occurred and average grains size reached 19.0 µm, simultaneously accompanied with texture rotated to λ, γ fiber texture and Goss texture dropped to 2.89%. Adopting the second cold rolling with 58% reduction, the cold rolled sheet consisted of deformed fiber microstructure and the texture maintained γ fiber texture with a peak at {111} . The precipitates in hot rolled sheets comprised Cu2 S and few AlN, and the average particle size was ∼14 nm. The inhibitors in the decarburization annealing sheet were mainly AlN, Cu2 S, MnS and their composite precipitation, which were spherical or massive with the average particle size ∼21 nm. The single Goss oriented grains with average grain size 9.41 mm were obtained after high temperature annealing, and the intensity reached 873.30. The final magnetic properties were: B8  = 1.865 T and P1.7/50  = 1.124 W/kg, which met the requirement of 27Q120.
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