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Variation of Non-Metallic Inclusions Composition in X80 Pipeline Steel Refined by High Basicity Slag 被引量:2

Variation of Non-Metallic Inclusions Composition in X80 Pipeline Steel Refined by High Basicity Slag
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摘要 The transformation of inclusions was studied when control technology of refining top slag in ladle furnace was used in X80 pipeline steelmaking.Sufficient amount of aluminum was added to experimental heats for final deoxidation during BOF tapping,and then the refining top slag with high basicity and strong reducibility was adopted to transform Al 2 O 3 to inclusions with low melting point.The results show that the composition of inclusions changes in order of "Al 2 O 3 → MgO-Al 2 O 3 system→ CaO-MgO-Al 2 O 3 system→ CaO-Al 2 O 3 system".And the inclusions after LF refining are liquid or semi-liquid state at the temperature of steelmaking,which are easily removable to obtain high cleanliness steel by collision,agglomeration and flotation. The transformation of inclusions was studied when control technology of refining top slag in ladle furnace was used in X80 pipeline steelmaking.Sufficient amount of aluminum was added to experimental heats for final deoxidation during BOF tapping,and then the refining top slag with high basicity and strong reducibility was adopted to transform Al 2 O 3 to inclusions with low melting point.The results show that the composition of inclusions changes in order of "Al 2 O 3 → MgO-Al 2 O 3 system→ CaO-MgO-Al 2 O 3 system→ CaO-Al 2 O 3 system".And the inclusions after LF refining are liquid or semi-liquid state at the temperature of steelmaking,which are easily removable to obtain high cleanliness steel by collision,agglomeration and flotation.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2011年第S1期563-566,共4页 钢铁研究学报(英文版)
关键词 TRANSFORMATION of INCLUSIONS high BASICITY top SLAG removal of INCLUSIONS X80 PIPELINE steel transformation of inclusions high basicity top slag removal of inclusions X80 pipeline steel
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参考文献8

  • 1王新华,陈斌,姜敏,王万军.渣-钢反应对高强度合金结构钢中生成较低熔点非金属夹杂物的影响[J].钢铁,2008,43(12):28-32. 被引量:39
  • 2M. Elboujdaini,R. W. Revie.Metallurgical factors in stress corrosion cracking (SCC) and hydrogen-induced cracking (HIC)[J]. Journal of Solid State Electrochemistry . 2009 (7)
  • 3Hiroyasu Itoh,Mitsutaka Hino,Shiro Ban-Ya.Thermodynamics on the formation of spinel nonmetallic inclusion in liquid steel[J]. Metallurgical and Materials Transactions B . 1997 (5)
  • 4Kushida T,,Higuchi Y.Advanced Technologies of High Strength Linepipe for Sour Service. Sumitomo Search . 1996
  • 5Todoroki H,Mizuno K.Variation of Inclusion Compositions in 304 Stainless Steel Deoxidized with Aluminum. ISS Transactions . 2003
  • 6D.Z. Lu,G.A. Irons,W.K. Lu.Kinetics and Mechanisms of Calcium Dissolution and Modification of Oxide and Sulphide Inclusions in Steel. Journal of Occupational Medicine . 1994
  • 7Inoue R,Suito H.Calcium Desulfurization Equilibriumin Liq-uid Iron. Steel Research International . 1994
  • 8Choudhary S K,Ghosh A.Thermodynamic Evaluation of Formation of Oxide-Sulfide Duplex Inclusions in Steel. ISIJ International . 2008

二级参考文献4

  • 1Mimura T. Control of Inclusions in Tire Cord Steel and Valve Spring Steel[A]. Technology for Control of Nonmetallic Inclusions and Production of Clean Steel[C]. Nagoya: ISIJ, 2005. 127.
  • 2Kawakami K, Taniguchi T, Nakashima K. Generation Mechanisms of Non-metallic Inclusions in High-cleanliness Steel[J]. Tetsu-to-Hagane, 2007, 93: 741.
  • 3Tsubota K, Fukumoto I. Production and Quality of High Cleanliness Bearing Steel[A]. Proceedings of the Sixth International Iron and Steel Congress[C]. Nagoya: ISIJ, 1990. 637.
  • 4Eguchi J , Fukanaka M , Sugimoto T,et al. Manufacture of High Quality Case-Hardening Low Alloy Steel for Automobile Use[A]. Proceedings of the Sixth International Iron and Steel Congress[C]. Nagoya: ISIJ: 1990. 644.

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