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鋼中殘余元素在連鑄坯和熱軋板中的富集行為

Enrichment of residual elements in continuously cast slabs and medium Plates

  • 摘要: 通過掃描電鏡和X射線能譜分析儀(X-EDS)分析,對低合金鋼種連鑄板坯和熱軋板中Cu、As和Sn的富集行為進行了研究.實驗結果表明:連鑄坯中氧化層和氧化層/基體層界面存在Cu、As和Sn元素同時富集現象;熱軋板氧化層/基體層界面存在Cu、As和Sn元素富集相,基體層中Cu、As和Sn含量高于氧化層;熱軋板晶界處Cu、As和Sn含量明顯高于熱軋板晶內;Cu、As和Sn在γ晶界偏聚和Fe的優先氧化造成連鑄坯中Cu、As和Sn富集,加熱爐的二次加熱加劇Cu、As和Sn的富集程度,引起Cu、As和Sn向鋼材基體滲透擴散,使鋼的塑性惡化,導致中板大量表面微裂紋缺陷.分析了Cu、As和Sn富集相對表面微裂紋的影響機理.

     

    Abstract: The enrichment mechanism of Cu, As and Sn in HSLA continuously cast slabs and medium plates were studied by scanning electron microscope and X-ray energy dispersive spectroscopy (X-EDS). It is shown that Cu, As and Sn are simultaneous enriched in the scale and the scale/steel matrix interface of continuously cast slabs. There are Cu, As and Sn enriched phases in the scale/steel matrix interface of medium plates, and the contents of Cu, As and Sn in the steel matrix are large than those in the scale. The contents of Cu, AS and Sn at grain boundaries of hot rolled plates are more than those in grains. Segregation of Cu, AS and Sn at austenite grain boundaries and selective oxidation of Fe result in enrichment of Cu, As and Sn, reheating in the reheating furnace exacerbates the enrichment, and the penetration and diffusion of Cu, As and Sn toward the steel matrix deteriorates the hot ductility of steel tremendously, which lead to lots of surface microcracks in medium plates. The effect meehanism of Cu, As and Sn enriched phases on the surface microcracks was analyzed.

     

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