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Improvement of Service Life and Reliability of SEN for TSCC

Improvement of Service Life and Reliability of SEN for TSCC
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摘要 SEN is a key relative technology to TSCC, the quality of which influences not only the heats of continuous casting but also the stream field in the mould. The powder line is the key part of SEN, that determines the continuous casting life. In this study the microstructure of used SEN samples were examined by SEM, the causes of the abnormal erosion phenomena were analyzed from slag corrosion mechanism, reactions between carbon containing refractories and slag and molten steel, properties of refractories. The improvement of the quality of SEN were achieved by adjusting the graphite content and composite structure designing of SEN's powder line. SEN is a key relative technology to TSCC, the quality of which influences not only the heats of continuous casting but also the stream field in the mould. The powder line is the key part of SEN, that determines the continuous casting life. In this study the microstructure of used SEN samples were examined by SEM, the causes of the abnormal erosion phenomena were analyzed from slag corrosion mechanism, reactions between carbon containing refractories and slag and molten steel, properties of refractories. The improvement of the quality of SEN were achieved by adjusting the graphite content and composite structure designing of SEN's powder line.
出处 《China's Refractories》 CAS 2008年第1期3-9,共7页 中国耐火材料(英文版)
关键词 SEN Powder line Abnormal wear Decarbonization SEN, Powder line, Abnormal wear, Decarbonization
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参考文献9

  • 1[1]Mukai K,Toguri J M,Stubina N M,et al.A mechanism for local corrosion of immersion nozzle.ISU International,1989,29(6):469-476.
  • 2[2]Dick A F,Yu X,Pomfret R J,et al.Attack of submerged entry nozzles by mould flux and dissolution of refractory oxides in the flux.ISIJ International,1997,37(2):102-108.
  • 3[3]Da Costa Reis W L,Silva S N,Varela J A,et al.Corrosion of the immersion nozzle during steel continuous casting.Interceram,1998,47(2):88-96.
  • 4[4]Hong J H,Kim S M.powder line wear of graphite-bonded zirconia SENs.Am.Cerram.Soc.Bull.1997,76(5):75-78.
  • 5[5]Deinet T,Krause O,Potschke J.Studies on the wear of submerged entry nozzles.47th International Colloquium on Refractories,Aachen,Germany,Proceedings,2004,38-41.
  • 6[6]Katagiri S,Iitsuka S,Harada T.High performance-zirconia-graphite material for submerged nozzle.Proceedings of UNITECR'97,1441-1450.
  • 7[7]Uchida K.Influence of zirconia grain size on corrosion resistance of zirconia graphite material.Taikabutsu,2001,53(5):274-279.
  • 8[8]Nomura O,Uchida S,Lin W,et al.Decarbonization phenomena of graphite containing refractories caused by molten steel.Shinagava Technical Report,1998,41:25-36.
  • 9[9]Lin W,Yamaguchi A.Formation of ZrC in ZrO2-C material and its effect on molten steel penetration.Proceedings of UNITECR'05.

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