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Microstructure texture evolution and magnetic properties of high magnetic-induction 6.5 Si electrical steel thin sheet fabricated by a specially designed rolling route

机译:通过特殊设计的轧制路线制造的高磁感应强度6.5%Si电工钢薄板的显微组织,织构演变和磁性能

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摘要

Electrical steel sheets with 6.5% (mas fraction) Si with good shapes and superior magnetic inductions were successfully produced by a specially designed processing route including ingot casting, hot rolling and warm rolling both with interpass thermal treatment, and final annealing. The sheets were of 0.2 mm and 0.3 mm thick over 140 mm width. A detailed study of the microstructural and textural evolutions from the hot rolling to annealing was carried out by optical microscopy, X-ray diffraction and electron backscattered diffraction. The hot rolled sheet characterized by near-equiaxed grains was dominated by the mixture of <001>//ND fiber (λ-fiber), <110>//RD fiber (α-fiber) and <111>//ND fiber (γ-fiber) textures owing to the partial recrystallization and strain induced boundary migration (SIBM) during the hot rolling interpass thermal treatment. The static recovery and SIBM during the warm rolling interpass thermal treatment result in large and elongated warm rolling grains. The warm rolling texture is dominated by obvious λ, Goss and strong γ-fiber textures. The application of the interpass thermal treatment during hot and warm rolling significantly enhances the impact of SIBM during annealing, which is responsible for the formation of the moderate λ-fiber, some near-λ fiber texture components and the obviously weakened γ-fiber texture in the annealed sheet, leading to a higher magnetic induction compared to the commercially produced 6.5% Si steel by chemical vapor deposition (CVD).
机译:通过特殊设计的加工工艺,包括铸锭铸造,热轧和热轧以及道间热处理和最终退火,成功生产出具有良好形状和优良磁感应强度的6.5%(质量分数)Si的电工钢板。片材在140mm宽上为0.2mm和0.3mm厚。通过光学显微镜,X射线衍射和电子反向散射衍射,对从热轧到退火的微观组织和组织演变进行了详细研究。特征为接近等晶粒的热轧板主要由<001> // ND纤维(λ纤维),<110> // RD纤维(α纤维)和<111> // ND纤维(在热轧道次热处理过程中,由于部分再结晶和应变诱发的边界迁移(SIBM)而产生了γ-纤维)织构。在热轧道次间热处理期间的静态恢复和SIBM导致大而细长的热轧晶粒。温暖的轧制织构主要由明显的λ,高斯和强γ纤维织构组成。在热轧和热轧过程中使用中间道次热处理可显着增强SIBM在退火过程中的影响,这是造成中等λ纤维,一些近λ纤维织构成分以及γ纤维织构明显减弱的原因。与商业化生产的化学气相沉积(CVD)的6.5%硅钢相比,它具有更高的磁感应强度。

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  • 来源
    《中南大学学报(英文版)》 |2016年第3期|523-528|共6页
  • 作者单位

    State Key Laboratory of Rolling and Automation (Northeastern University), Shenyang 110819, China;

    State Key Laboratory of Rolling and Automation (Northeastern University), Shenyang 110819, China;

    Institute of Research of Iron and Steel, Shasteel, Zhangjiagang 215625, China;

    State Key Laboratory of Rolling and Automation (Northeastern University), Shenyang 110819, China;

    State Key Laboratory of Rolling and Automation (Northeastern University), Shenyang 110819, China;

    National Engineering Research Center for Silicon Steel (Wuhan Iron & Steel (Group) Corp), Wuhan 430083, China;

    National Engineering Research Center for Silicon Steel (Wuhan Iron & Steel (Group) Corp), Wuhan 430083, China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 01:06:36
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