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Study on microstructure and texture of a new-type low Si high Mn non-oriented silicon steel 50W250

机译:新型低Si高Mn非定向硅钢组织和质地的研究50W250

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摘要

A new method to fabricate a high grade non-oriented silicon steel was provided, in which the significant feature is low Si high Mn. Metallographic microscopy, X-ray diffraction (XRD) and transmission electron microscopy (TEM) were used to investigate the microstructure, texture evolution and precipitates characteristics, respectively. It is found that hot rolled sheet had a distinct stratification appearance. Fine equiaxed grains occupy the surface while subsurface and center regions were dominated by deformed microstructure and equiaxed grains. After normalizing, the microstructure of hot rolled sheet completely recrystallized. A number of shear bands were observed attributed to cold rolling. With the increase of annealing temperature or time, the average grain size of final annealed sheet increases. Annealed at 1000 degrees C for 7 min, annealed sheet exhibits highest and lowest fraction of {001} cube texture and {112} copper texture, respectively. The average grain size of final sheet also reaches peak, and it is 117.65 mu m. In addition, the fine precipitates mainly include spherical MnS, CuS, regular hexahedral AlN, TiN and partly approximate spherical composite precipitates. The average size and distribution density are 132.10 nm and 1.62 x 10(12) cm(-3), respectively. Under the condition annealed at 1000 degrees C for 7 min, the core loss P-1.5/50 is 2.461 W center dot Kg(-1) and the magnetic induction B-50 is 1.699 T.
机译:提供了一种制造高级非取向硅钢的新方法,其中显着特征是低Si高Mn。金相显微镜,X射线衍射(XRD)和透射电子显微镜(TEM)分别用于研究微观结构,质地演化和沉淀特性。发现热轧板具有不同的分层外观。精细等轴谷物占据表面,而地下和中心区域以变形的微观结构和等式晶粒主导。归一化后,热轧板的微结构完全重结晶。观察到许多剪切带归因于冷轧。随着退火温度或时间的增加,最终退火片的平均晶粒尺寸增加。在1000摄氏度下退火7分钟,退火片分别显示出最高和最低的{001}立方体纹理和{112}铜纹理。最终纸张的平均晶粒尺寸也达到峰值,它是117.65亩。此外,细沉淀物主要包括球形MNS,CU,常规六面腺ALN,锡和部分近似球形复合材料沉淀物。平均尺寸和分布密度分别为132.10nm和1.62×10(12)厘米(-3)。在1000摄氏度的条件下,核心损耗P-1.5 / 50为2.461W中心点kg(-1),磁感应B-50为1.699吨。

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