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IF鋼鑄坯厚度方向潔凈度演變

Cleanliness evolution of interstitial free(IF) steel slabs in the thickness direction

  • 摘要: 采用夾雜物原貌分析、掃描電鏡和能譜分析、氧氮分析等手段系統分析了IF鋼鑄坯全厚度方向的潔凈度變化及夾雜物分布規律.鑄坯厚度方向全氧(T.O)和N質量分數平均值均為17×10-6.內、外弧表層1/16內T.O、N均高于平均值5%~10%,存在夾雜物聚集帶;內弧1/4至外弧1/4區域T.O、N水平低于平均值5%~10%;表層1/16至1/4區域接近平均水平.共統計夾雜物963個,夾雜物平均粒徑5.7μm,〈5μm占60%,〈10μm占90%;Al2O3夾雜主要存在表層5 mm內,尺寸在2~10μm;TiN-Al2O3和TiN粒子主要在距離表層5~80 mm,尺寸隨深度增加而增大;TiN-TiS和TiS夾雜主要在距離表面80~130 mm,尺寸1~5μm.從鑄坯表層到中心主要夾雜物的分布依次是Al2O3、Al2O3-TiN、TiN、TiN-TiS、TiS和MnS.

     

    Abstract: The cleanness evolution and inclusion distribution of IF slabs in the thickness direction were studied by original morphology analysis, scanning electron microscopy and energy spectroscopy analysis, and total oxygen (T. O) and nitrogen analysis. The average values of mass fraction of total oxygen and N in the slabs in the thickness direction are within 17 × 10-6. The mass fractions of T. O and N in the area within 1/16 thickness from the slab surface are 5% to 10% higher than the average values, in the area between 1/4 thickness from the inner are and 1/4 thickness from the outer arc are 5% to 10% lower than the average values and in other area are close to the average levels. The average size of inclusions is 5.7 txm based on a total of 963 statistical inclusions. Inclusions with the particle size smaller than 5μm account for 60% and with the particle size smaller than 10 txm account for 90%. Al2O3 mainly exits within 5 mm from the slab surface with the size of 2 to 10μm; TiN-Al2O3 and TiN exist in the area from 5 to 80 mm in the thickness direction, and their particle size grows up as the thickness increasing; TiN-TiS and TiS inclusions mainly exist in the area from 80 to 130 mm in the thickness direction with the size of 1 to 5μm. Inclusions from the slab surface to center are mainly Al2O3, Al2O3-TiN, TiN, TiN-TiS, TiS, and MnS in order.

     

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