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Transformation Delay and Texture Memory Effect of Columnar Grained Cast Slab in Low Grades Non-oriented Electrical Steels

机译:低等级非线电钢中柱状粒度铸造板的变换延迟和质地记忆效应

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摘要

The cast slab of low grades non-oriented electrical steels experiences twice diffusional solid phase transformation and demonstrates the features of strong morphological memory referring to columnar structure and texture memory referring to the preferred <100> texture at room temperature. In this paper, electron backscatter diffraction (EBSD), quasi-insitu observation of heating samples, and dilatometry are used to study and analyze the two kinds of memory phenomena. The results show that the cast slab consists of about 70% coarse columnar grains and 30% small equiaxed grains. Many small equiaxed grains show Σ3 misorientations with columnar grains indicating K-S orientation relationship obeyed during phase transformation. Coarse columnar grains show a typical < 100> ‖growing axis orientation which is the same as solidified columnar grains. The quasi-insitu observation shows that transformation of columnar grained ferrite to austenite is very sluggish and columnar grained ferrite can still be seen even at a superheating degree of 176°C for 1 hour. Dilatometry measurement indicates that the starting transformation temperatures for a columnar-grain-dominant sample and a small-equiaxed-grain-dominant sample are similar, whereas their transformation extents are quite different with columnar grained sample showing a low dilatational amount due to insufficient transformation. It is most likely that the coarse columnar grains in cast slab are retained and untransformed high temperature δ-ferrite are not subjected to twice complete transformations. These retaining columnar grains in low grades of electrical steels can be used to improve magnetic properties through optimizing processing parameters.
机译:低等级的铸造板非取向电钢的经历两次扩散固相变化,并参考柱状结构和纹理记忆的强型形态记忆的特征,参考室温下的优选<100>纹理。在本文中,电子反向散射衍射(EBSD),准内部的加热样品观察和扩张法用于研究和分析两种内存现象。结果表明,铸造板由约70%粗柱颗粒和30%小等轴晶粒组成。许多小型等轴晶粒显示σ3与柱状晶体的误报,表明在相变期间服从遵守的K-S取向关系。粗柱状晶体显示出与固化柱状晶粒相同的典型<100>‖owing轴取向。准内部观察结果表明,即使在176℃的过热程度为1小时,仍然仍然可以看到柱状颗粒铁氧体转化为奥氏体对奥氏体的转化非常缓慢,并且仍然可以看到柱状颗粒铁氧体。膨胀测量结果表明,柱状晶粒显性样品和小等型晶粒显性样品的起始转化温度类似,而其转化率与柱状颗粒样品完全不同,显示由于转化不足而显示低扩张量。最有可能保留铸造板中的粗柱状颗粒,并且未转化的高温δ-铁素体不受两倍完整的转化。这些保持柱状晶粒在低等级的电钢中可以通过优化处理参数来改善磁性。

著录项

  • 来源
    《ISIJ international》 |2021年第5期|1669-1678|共10页
  • 作者单位

    School of Materials Science and Engineering University of Science and Technology Beijing Beijing 100083 PR China;

    School of Materials Science and Engineering University of Science and Technology Beijing Beijing 100083 PR China;

    School of Materials Science and Engineering University of Science and Technology Beijing Beijing 100083 PR China;

    School of Materials Science and Engineering University of Science and Technology Beijing Beijing 100083 PR China;

    Iron and Steel Research Institute Angang Group Anshan 114000 PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    phase transformation; morphological memory; textural memory; columnar grain;

    机译:相变;形态记忆;质地记忆;柱状谷物;

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