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薄板坯連鑄連軋工藝下Hi-B鋼的組織及織構

Microstructure and texture of Hi-B steel produced by TSCR process

  • 摘要: 采用金相顯微鏡和掃描電鏡研究實驗室模擬薄板坯連鑄連軋(TSCR)工藝試制的高磁感取向硅鋼(Hi-B鋼)組織、織構的演變特征.研究發現實驗室模擬薄板坯連鑄連軋工藝試制的Hi-B鋼熱軋板顯微組織及織構在厚度方向上存在不均勻性.常化板表面脫碳層鐵素體晶粒明顯粗化,常化板織構基本繼承了熱軋板相應的織構類型,僅織構強度不同.一次大壓下率冷軋后,晶粒及其晶界沿軋向被拉長形成鮮明的纖維組織,織構主要為α纖維織構和γ纖維織構,脫碳退火后試樣發生回復和再結晶現象并形成初次晶粒組織,脫碳退火后織構分布較為集中.溫度升高至1000℃時二次再結晶開始,1010℃時鋼中晶粒發生異常長大,高斯織構強度達到61.779.成品磁感為1.915 T,鐵損為1.067 W·kg-1.

     

    Abstract: The microstructure and texture evolution of Hi-B steel produced by thin slab casting and rolling (TSCR) process in the laboratory was studied by metalloscopy and scanning electron microscopy. It was found that the microstructure and texture of the hot rolling slab of Hi-B steel, which was manufactured by simulated TSCR process in the laboratory, was inhomogeneous along the thickness direction. Ferrite grains in the surface decarbonization layer of the normalizing slab obviously coarsen; moreover, the texture of the normalizing slab inherited the texture type of the hot rolling slab, with only a difference in texture density. After cold roiling with big reduction rate, the coarse grains and grain boundaries were stretched to be fibrous bands in the rolling direction, and the α fiber texture and the γ fiber texture were the main texture style. With the deearburizing annealing carrying out, the recovery and reerystallization of the cold rolling slab occurred, primary recrystallization grains formed, and the texture was more centrally distributed. When the temperature increased to 1000℃, secondary recrystallization appeared; at 1010℃ the Goss grains grew up, and the Goss texture intensity reached to 61. 779. By testing, the products had a magnetic induction of 1. 915 T and an iron loss of 1. 0671 W.kg-1.

     

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