The large quantity of sediment produced in the hearth during vanadium titano-magnetite smelting in a blast furnace (BF) affects the stability of the blast furnace operation. Testing and analysis of the sediment in the hearth of Chengde Iron and Steel Company?s BF No.7 revealed that it was mainly concentrated in the location below the tuyere and above the iron notch. Notably, some of the bonding material (sediment) consisted of greater than 50% pig iron, and the pig iron distributed in the slag was granu-lar. It is proposed that a large quantity of TiC and Ti(C,N) are deposited on the surface of the pig iron. These high melting point materials mix with iron drops, preventing the slag from lfowing freely, thus leading to the formation of bonding materials. In ad-dition, the viscosity and melting temperature of the slag in the tuyere areas lfuctuate greatly, and thus the properties of the slag are unstable. Moreover, the slag contains large quantities of carbon, which results in the reduction of TiO2. The resultant precipitation of Ti is followed by the formation of TiC in the slag, which also leads to an increase in the viscosity of the slag and dififculty in achieving separation of the slag-iron. In fact, all of these factors interact with each other, and as a result, sediment is formed when the operating conditions in the hearth lfuctuate.
参考文献
[1] | J.Z.Zhang;L.L.Shi;W.Z.Ao .[J].J Iron Steel Res,2010,22(4):16-19. |
[2] | K.Datta;P.K.Sen;S.S.Gupta .[J].STEEL RESEARCH,1993,64:232-238. |
[3] | K.Narita;M.Maekawa .[J].ISIJ Trans,1977,17:459-468. |
[4] | J.N.Gu.[J].Ironmaking,1997(4):10-13. |
[5] | J.C.Song.The Lining Protection Technology of Blast Furnace with Titanium Material[M].北京:冶金工业出版社,1994 |
[6] | Z.Y.Pei .[J].Iron and Steel,1990,25(1):13-18. |
[7] | J.Y.Ma.Theory and Practice of Smelting Vanadium Titanium-mag-netite in Blast Furnace[M].北京:冶金工业出版社,2000 |
[8] | W.G.Fu;R.S.Diao;J.M.Li;G.C.Song,J.M.Li .[J].Iron Steel Vana-dium Titanium,2003,24(3):37-41. |
[9] | X.Wu;J Zhang .[J].Titanium Industry Progress,2006,23(6):8-12. |
[10] | Z.F.Zhang;Q.Lü;H.J.Chen;S.H.Zhang,F.M.Li .[J].Rock and Min-eral Analysis,2008,27(6):470-472. |
[11] | R.Q.Qiao;H.G.Du .[J].J Iron Steel Res,1998,10(4):1-4. |
[12] | Z.J.Zhao;E.Q.Ma;Y.J.Lian .[J].Iron Steel Vanadium Titanium,2001,22(3):36-43. |
[13] | X.L.Wang.Iron and Steel Metallurgy[M].北京:冶金工业出版社,2002 |
[14] | S.Q.Cui .[J].Iron Steel Vanadium Titanium,2014,35(4):62-67. |
[15] | B.H.Zhang;Y.C.Diao;D.H.Liao;J.H.Zhu,L.F.Wang,H.B.Yang .[J].J Iron Steel Res,2005,17(4):14-16. |
[16] | H.G.Du;G.T.Xu;X.W.Sun;R.S.Diao .[J].Iron and Steel,2003,38(1):55-58. |
[17] | H.G.Du.Theory of Smelting Vanadium Titanium-magnetite in Blast Furnace[M].北京:科学出版社,1996 |
[18] | X.S.Li.Investigation on Precipitation Law of Ti(C,N)in Hot Metal Saturated with Carbon[M].Kunming University of Science and Technol-ogy,Kunming,2006 |
[19] | X.Wan;H.N.Pei;C.G.Bai;P.T.Zhou .[J].J Chongqing Univ Nat Sci,2000,23(5):36-40. |
[20] | Y.Q.Li;L.Yun;R.J.Fruehan.[J].Baosteel Technology,2002(1):12-16. |
- 下载量()
- 访问量()
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%