Deformation and recrystallization texture features of medium temperature reheated grain oriented silicon steel containing copper
-
摘要: 通過對比中溫含銅取向硅鋼與普通取向硅鋼和高磁感取向硅鋼的組織和織構特征,分析中溫含銅取向硅鋼獨特的織構演變規律及其對二次再結晶行為的影響.結果表明,為了獲得有利于高斯晶粒長大的強γ取向線織構,中溫含銅鋼需經過回復退火處理和高溫退火階段慢速升溫.回復過程中γ取向線晶粒儲能降低,同時慢速升溫有利于γ取向線晶粒的形核和再結晶.中溫含銅鋼的二次再結晶開始溫度超過1000℃,由于初次再結晶晶粒組織以γ織構為主且非γ取向線晶粒較少,導致最終二次晶粒尺寸超大且晶界圓滑,二次再結晶機理以擇優長大為主導,超大的二次晶粒尺寸導致最終成品的鐵損升高,但通過激光刻痕處理后,整體鐵損的降低效果比二次晶粒較小的高磁感取向硅鋼更加顯著.Abstract: The unique texture evolution and secondary recrystallization behavior of medium temperature reheated grain oriented silicon steel containing copper were analyzed by comparison with those of conventional grain oriented silicon steel and high permeability silicon steel.The results show that to obtain a stronger γ-fiber primary recrystallization texture,which can be easily consumed by Goss grains,recovery annealing and slow heating rate of high temperature annealing are necessary.During the high temperature annealing stage,the strong γ-fiber primary recrystallization texture shows the effects of decreasing the stored energy caused by recovery annealing and increasing the nucleation rate of γ-fiber grains with slow heating rate.The onset temperature of secondary recrystallization exceeding 1000 ℃ and the strong γ-fiber primary recrystallization texture with less non-γ-fiber oriented grains indicate that the secondary recrystallization behavior is dominated by preferred grain growth.As a result,very huge secondary recrystallization grains with smooth boundaries are obtained.The iron loss is increased due to huge secondary grain size characterized in medium temperature reheated grain oriented silicon steel final products,but can be reduced significantly by magnetic domain refinement using laser scribing,compared with that of high permeability grain oriented silicon steel with small secondary grain size.
-
Key words:
- silicon steel /
- texture /
- deformation /
- recrystallization /
- laser scribing
-

計量
- 文章訪問數: 200
- HTML全文瀏覽量: 35
- PDF下載量: 10
- 被引次數: 0