首页> 外文会议>International Symposium on Fundamentals of Deformation and Annealing; 20060905-7; Manchester(GB) >The Effects of Hot Band Annealing Temperature on the Texture of 2Si Nonoriented Electrical Steel
【24h】

The Effects of Hot Band Annealing Temperature on the Texture of 2Si Nonoriented Electrical Steel

机译:热轧带退火温度对2%Si无取向电工钢织构的影响

获取原文
获取原文并翻译 | 示例

摘要

The effects of hot band annealing temperature on the texture of the 2%Si nonoriented electrical steel were investigated. Slab was hot rolled and then hot band annealed in the temperature range of 900℃~1100℃. The magnetic flux density and the core loss were improved by the hot band annealing because of the texture improvement. As the hot band annealing temperature was increased, the magnetic properties were improved. The microstructure of the hot band was composed of a recrystallized structure at the surface and a deformation structure near the middle plane. These hot bands were completely recrystallized after annealing above 1000 ℃. The main texture of the hot band was rotated cube and gamma-fibre. After hot band annealing, rotated cube changed to cube texture and gamma-fibre intensity gradually decreased. In the case of non-annealed hot band, rotated cube in the middle plane was changed to near {111} < 112 > texture and Goss texture in the surface to gamma fibre after final annealing. In the case of the hot band annealed at 900 ℃, rotated cube near the middle plane changed to Goss texture and Goss texture in the surface to rotated cube after final annealing. After final annealing, the {111} and {112} texture was dramatically decreased as the hot band annealing temperature was higher. The total {100} texture intensity was not changed. Cube texture {100} < 001 > increased and rotated cube texture {100} < 011 > decreased. The {110} texture increased after hot band annealing irrespective of temperature. As the hot band annealing temperature was higher, the Goss texture increased, and this increase of Goss texture causes the anisotropy of the magnetic flux density.
机译:研究了热退火温度对2%Si无取向电工钢组织的影响。对板坯进行热轧,然后在900℃〜1100℃的温度范围内进行热轧带退火。由于织构的改善,通过热带退火改善了磁通密度和铁损。随着热带退火温度的升高,磁性能得到改善。热轧带的微观结构由表面的重结晶组织和中平面附近的变形组织组成。在1000℃以上退火后,这些热带完全重结晶。热轧带的主要纹理是旋转的立方体和伽马纤维。热带退火后,旋转的立方体变成立方体纹理,并且γ-纤维强度逐渐降低。在未退火的热轧带情况下,经过最终退火后,中间平面中旋转的立方体变为接近{111} <112>织构,表面的高斯织构变为伽马纤维。在900℃退火的热带中,最终退火后,中间面附近的旋转立方体变为高斯织构,表面的高斯织构变为旋转立方体。最终退火后,{111}和{112}织构随着热带退火温度的升高而急剧下降。总{100}纹理强度没有改变。多维数据集纹理{100} <001>增大,旋转的多维数据集纹理{100} <011>减小。热带退火后,{110}织构增加,与温度无关。随着热带退火温度的升高,戈斯织构增加,并且戈斯织构的这种增加引起磁通密度的各向异性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号