Electrical Steel ›› 2024, Vol. 6 ›› Issue (4): 17-.

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The influence of oxide layer thickness in decarburized plateon the forsterite film of Hi-B steel

PANG Shufang1,2, YOU Qinglei3, JANG Qiwu3, JIA Zhewei1,2, LUO Li1,2   

  1. (1.State Key Lab of Metal Material for Marine Equipment and Application, Anshan 114009, China;
    2.Ansteel Iron & Steel Research Institutes, Anshan 114009, China;
    3.Angang Steel Co., Ltd., Anshan 114021, China)
  • Online:2024-08-28 Published:2024-08-23

Abstract: ThermoCalc software was used to simulate the oxidation process of decarburized annealing plates for oriented silicon steel, and the oxides that can be generated with different pH2O/pH2 were analyzed. During decarburization annealing at 800 ℃,It was found that when the range of pH2O/pH2 values was 0.19~23, the oxidation products were FeO and Fe2SiO4. Using a glow spectrometer to analyze the oxide layers of three different decarburized annealing plates with different oxygen contents, as well as the surface characteristics of the corresponding finished plates. Found out than the total oxygen content of decarburized annealed plates is different, but the oxygen content in the surface is alike, all of which are very high. As the oxygen content in the decarburized annealing plate increases, the thickness of the oxide layer increases.The oxygen content in the surface insulation film of the three finished boards is almost the same, and the forsterite film in the finished board corresponding to the decarburized annealing board with the thickest oxide layer is also the thickest, and the spinel is the deepest.

Key words: Oxidized layer, oxygen content, forsterite film