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从几个方面对多年来在钢中非金属夹杂物基础研究方面做的工作做简单介绍:钢中夹杂物和钢水洁净度的评估方法、稳态浇注和非稳态浇注的定义、非稳态浇注过程中形成的大颗粒夹杂物、总氧和大颗粒夹杂物的对应关系、脱氧过程夹杂物形成的热力学基础、钢水中夹杂物形核及长大的动力学研究和钢水中流体流动和夹杂物的运动、去除及被凝固前沿的捕捉.并讨论了钢中夹杂物研究下一步应该继续进行的工作,对洁净钢的生产提出了一些指导性意见.

参考文献

[1] Thorbjorn Hansen;Par Jonsson.Some Ideas od Determining the Macro Inclusion Characteristic During Steelmaking[A].Warrendale:ISS,2001:71.
[2] Lifeng ZHANG;Brian G. THOMAS .State of the Art in Evaluation and Control of Steel Cleanliness[J].ISIJ International,2003(3):271-291.
[3] Nam S H;Kwon O D;Yang DW.Improvement of Steel Cleanliness in Ladle Exchange Period[A].Warrendale:ISS,1995:551.
[4] Komai T .Source of Exogenous Inclusions and Reduction of Their Amount in the Continuous Casting Process[J].Tetsu To Hagane-Journal of the Iron and Steel Institute of Japan,1981,67(08):1152.
[5] Byrne M;Fenicle T W;Cramb A W.The Sources of Exogenous Inclusions in Continuous Cast,Aluminum-Killed Steels[A].Warrendale:ISS,1985:451.
[6] Richard Gass;H John Knoepke;Jerry Moscoe.Conversion of Ispat Inland' s No.1 Slab Caster to Vertical Bending[A].Warrandale:ISS,2003:3.
[7] Tsai H T;Sammon W J;Hazelton D E.Characterization and Countermeasures for Sliver Defects in Cold Rolled Products[A].Warrendale:Iron and Steel Society,1990:49.
[8] Chakraborty S;Hill W.Reduction of Aluminum Slivers at Great Lakes No.2 CC[A].Warrendale:ISS,1994:389.
[9] H. Uehara;H. Osanai;J. Hasunuma;K. Hara;T. Nakagawa;M. Yoshida;S. Yuhara .Continuous casting technology of hot cycle operations of tundish for clean steel slabs[J].Revue de Metallurgie: Cahiers d'Informations Techniques,1998(10):1273-1285.
[10] Philippe Rocabois;Jean-Noel Pontoire;Valerie Delville.Different Slivers Type Observed in Solla Steel Plants and Improved Practice to Reduce Surface Defects on Cold Roll Sheet[A].Warrandale:ISS,2003:995.
[11] Jungreithmeier A;Pissenberger E;Burgstaller K.Production of ULC IF Steel Grades at Voestalpine Stahl GmbH,Linz[A].Warrandale:ISS,2003:227.
[12] Byrne M;Cramb A W .Operating Experience With Large Tundishes[J].I and Smaker,1988,15(10):45.
[13] Hoh B;Jacobi H;Wiemer H.Improvement of Cleanliness in Continuous Casting[A].Dusseldorf:Verlag Stahl Eisen mbH,1988:211.
[14] Paul Rasmussem.Improvements to Steel Cleanliness at Dofasco' s Melt Shop 2[A].Warrendale:ISS,1994:219.
[15] Chakraborty S;Hill W.Improvement in Steel Cleanliness at Great Lakes No.2 Continuous Caster[A].Warrendale:ISS,1995:401.
[16] Wang Yan .Inclusion Evolution in Molten and Solidifying Steel[D].Pittsburgh:Carnegie Mellon University,2003.
[17] Schlatter R.Review of Teeming Stream Protection Systems for Ingot Casting[J].Steel Times,1986(08):432.
[18] K.P. Hughes;C.T. Schade;M.A. Shepherd .Improvement in the Internal Quality of Continuously Cast Slabs at Lukens Steel[J].Iron & Steelmaker,1995(6):35-41.
[19] Keisuke Sumitomo;Moriki Hashio;Tohru Kishida et al.Bottom Pouring and Ingot Quality at Sumitomo Metal Industries[J].Iron & Steel Engineers,1985,62(03):54.
[20] Jack R .Investigation and Metallographic Examination of Large Non-Metallic Inclusions in Fully Killed Steel[J].Metals Forum,1979,2(02):87.
[21] Manabu I;Yutaka S;Ryusuke O et al.Eveluation of the Critical Gas Flow Rate Using Water Model for the Entrpment of Slag into a Metal Bath Subject to Gas Injection[J].Tetsu To Hagane-Journal of the Iron and Steel Institute of Japan,1993,79(05):33.
[22] Harman J M;Cramb A W.A Study of the Effect of Fluid Physical Properties Upon Droplet Emulsification[A].Warrendale:ISS,1996:773.
[23] Pirker S.Simulation of Slag Entrainment During Metal Charging[A].Trond-heim:Metallurgical and Process Industries,2005:1.
[24] Kahlweit M .Further Considerations on the Theory of Aging (Ostwald Ripening)[J].Berichte der Bunsen-Gesellschaft Physikalische Chemie,1974,78(10):997.
[25] Kampmann L;Kahlweit M .On the Theory of Precipitations Ⅱ[J].Berichte der Bunsen-Gesellschaft Physikalische Chemie,1970,74(05):456.
[26] Kampmann L;Kahlweit M .On the Theory of Precipitations Ⅰ[J].Berichte der Bunsen-Gesellschaft Physikalische Chemie,1967,71(01):78.
[27] Lifeng Zhang;W. Pluschkell .Nucleation and growth kinetics of inclusions during liquid steel deoxidation[J].Ironmaking & Steelmaking: Products and applications,2003(2):106-110.
[28] Zhang Lifeng;Wolfgang Pluschkell;Brian G.Thomas.Nucleation and Growth of Alumina Inclusions During Steel Deoxidation[A].Warrandale:ISS,2002:463.
[29] Jian ZHANG;Hae-Geon LEE .Numerical modeling of nucleation and growth of inclusions in molten steel based on mean processing parameters[J].ISIJ International,2004(10):1629-1638.
[30] Dauby P H;Kunstreich S.ElectromagneticStirring in Slab Caster Molds What and Why[A].Warrandale:ISS,2003:491.
[31] Gert ABBEL;Wout DAMEN;Geert de GENDT;Wouter TIEKINK .Argon Bubbles in Slabs[J].ISIJ International,1996(1):S219-S222.
[32] Emling W H;Waugaman T A;Feldbauer S L.Subsurface Mold Slag Entrainment in Ultra-Low Carbon Steels[A].Warrendale:ISS,1997:371.
[33] Kiriha L;Tosawa H;Sorimachi K .Behavior of Alumina CLuster in Ultra Low Carbon Steel During SteelmakingProcess[J].Current Advances in Materials and Processes,2000,13:120.
[34] Zhang L.;Taniguchi S. .Fundamentals of inclusion removal from liquid steel by bubble flotation[J].International Materials Reviews,2000(2):59-82.
[35] Assar M B;Dauby P H;Lawson G D.Opening the Black Box:PIV and MFC Measurements in a Continuous Caster Mold[A].Warrendale:ISS,2000:397.
[36] Dauby P H;Assar M B;Lawson G D .PIV amd MFC Measurements in a Continuous Caster Mould.New Tools to Penetrate the Caster Black Box[J].La Revue de Metallurgie-CIT,2001,98(04):353.
[37] ZheWANG;Kusuhiro IVIUKAI .Influence of Injected Ar Gas on the Involvement of the Mold Powder under Different Wettabilities between Porous Refractory and Molten Steel[J].ISIJ International,1999(8):795-803.
[38] Thomas B G;Denissov A;Bai H.Behavior of Argon Bubbles During Continuous Casting of Steel[A].Warrendale:ISS,1997:375.
[39] Knoepke J;Hubbard M;Kelly J.Pencil Blister Reduction at Inland Steel Company[A].Warrendale:ISS,1994:381.
[40] Hatto Jacobi;Hans-Jurgen Ehrenberg;Klaus Wunnenberg .Development of the cleanness of different steels for flat and round products[J].Stahl und Eisen,1998(11):87-95.
[41] D.GUPTA .Asymmetry and Oscillation of the Fluid Flow Pattern in a Continuous Casting Mould: a Water Model Study[J].ISIJ International,1997(7):654-658.
[42] Yang Shufeng;Zhang Lifeng;Li Jingshe.Fluid Flow and Steel Cleanliness in a Continuous Casting Tundish and Mold[A].Warrandale:ISS,2011:717.
[43] YUFENG WANG;LIFENG ZHANG .Fluid Flow-Related Transport Phenomena in Steel Slab Continuous Casting Strands under Electromagnetic Brake[J].Metallurgical and Materials Transactions, B. Process metallurgy and materials processing science,2011(6):1319-1351.
[44] YUFENG WANG;LIFENG ZHANG;XIANGJUN ZUO .Simulation of the Fluid Flow-Related Phenomena in the Electrolyte of an Aluminum Electrolysis Cell[J].Metallurgical and Materials Transactions, B. Process metallurgy and materials processing science,2011(5):1051-1064.
[45] Lifeng Zhang .Transient Fluid Flow Phenomena in Continuous Casting Tundishes[J].Iron & Steel Technology,2010(7):55-69.
[46] Wang Yufeng;Zhang Lifeng .Study on Transient Fluid Flow Phenomena During Continuous Casting:Part Ⅱ-Cast Speed Change,Temperature Fluctuation and Steel Grade Mixing[J].ISIJ International,2010,50(12):1783.
[47] Wang Yufeng;Zhang Lifeng .Study on Transient Fluid Flow Phenomena During Continuous Casting:Part Ⅰ:Cast Start[J].ISIJ International,2010,50(12):1777.
[48] Zhang Lifeng.Transient Fluid Flow Phenomena in Continu-ous Casting Tundishes[A].Warrandale:ISS,2009:603.
[49] Yang Shufeng;Zhang Lifeng;Kent Peaslee et al.Fluid Flow and Inclusion Motion in Horizontal Continuous Casting Tundishes[J].ISIJ International,2009,49(10):1551.
[50] Zhang Lifeng;Yang Subo;Cai Kaike et al.Investigation on the Fluid Flow and Steel Cleanliness in the Continuous Casting Strand[J].Metallurgical and Materials Transactions,2007,38B(01):63.
[51] Zhang Lifeng;Brian G Thomas .Fluid Flow and Inclusion Removal in Continuous Casting Strands[J].Journal of University of Science and Technology Beijing,2006,13(04):293.
[52] Zhang Lifeng.Fluid Flow and Transport Phenomena During Steel Refining and Casting Process[A].Sanantonio:TMS,2006:659.
[53] Wang Xinhua;Zhang Lifeng.Effect of Operation Parameters on the Fluid Flow and Inclusion Motion in Continuous Casting Strands:Water Model,Numerical Simulation and Industry Measurement[A].Cleveland:ISS,2006:371.
[54] Lifeng Zhang .Fluid Flow, Heat Transfer and Inclusion Motion in a Four-Strand Billet Continuous Casting Tundish[J].Steel Research International,2005(11):784-796.
[55] ZHANG Li-feng.Effect of Thermal Buoyancy on Fluid Flow and Inclusion Motion in Tundish without Flow Control Devices--Part Ⅱ: Inclusion Motion[J].钢铁研究学报(英文版),2005(05):11-17.
[56] ZHANG Li-feng,ZHI Jian-jun,MOU Ji-ning,CUI Jian.Effect of Thermal Buoyancy on Fluid Flow and Inclusion Motion in Tundish without Flow Control Devices--Part Ⅰ: Fluid Flow[J].钢铁研究学报(英文版),2005(04):20-27.
[57] Lifeng Zhang .Validation of the numerical simulation of fluid flow in the continuous casting tundish[J].Journal of University of Science and Technology Beijing,2005(2):116-122.
[58] Zhu Mingmei;Wen Guanghua;Zhang Lifeng.Modeling Study on Fluid Flow,Heat Transfer and Inclusion Removal in Tundish of 6-Strand Bloom Caster[A].Beijing:CSM,2004:214.
[59] Zhang Lifeng;Yang Subo;Wang Xinhua.Physical,Numerical and Industrial Investigation of Fluid Flow and Steel Cleanliness in the Continuous Casting Mold at Panzhihua Steel[A].Warrandale:ISS,2004:879.
[60] Zhang Lifeng;Wang Yong;Zhou Deguang.Numerical Simulation of Fluid Flow and Inclusion Motion in Continuous Casting Tundish[A].Beijing:CSM,2004:641.
[61] Zhang Lifeng;Brian G Thomas.Effect of Argon Gas Distribution on FLuid Flow in the Mold Using Time-Averaged k-εModels[A].Champaign:University of Illinois at Urbana-Champaign,2004:1.
[62] Zhang Lifeng;Brian G Thomas.Report on DOE Project:Development of a Process to Continuously Melt,Refine,and Cast High-Quality Steel-Fluid Flow,Mixing and Inclusion Motion in Bottom Gas-Stirred Molten Steel Vessel[A].Champaign:University of Illinois at Urbana-Champaign,2003:1.
[63] Zhang Lifeng;Brian G Thomas.Fluid Flow and Inclusion Motion in the Continuous Casting Strand[A].Morelia,2003:184.
[64] Wen Guanghua;Zhang Lifeng;Tang Ping.Physical and Mathematical Simulation of Fluid Flow,Heat Transfer and Particle Motion in a 6-Strand Continuous Casting Tundish[A].Warrandale:ISS,2003:577.
[65] Brian G. THOMAS;Lifeng ZHANG .Mathematical Modeling of Fluid Flow in Continuous Casting[J].ISIJ International,2001(10):1181-1193.
[66] L.Zhang;S.Taniguchi .Fluid Flow and Inclusion Removal in Continuous Casting Tundish[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2000(2):253-266.
[67] Zhang LF. .Mathematical simulation of fluid flow in gas-stirred liquid systems[J].Modelling and simulation in materials science and engineering,2000(4):463-476.
[68] Yang Shufeng;Zhang Lifeng;Li Jingshe.Fluid Flow and Steel Cleanliness in an Argon-Stirred Ladle[A].Warrandale:ISS,2009:907.
[69] Zhang Lifeng;Wang Yufeng;Zuo Xiangjun .Flow Transport and Inclusion Motion in Steel Continuous-Casting Mold Under Submerged Entry Nozzle Clogging Condition[J].Metal and Material Trans,2008,39B(04):534.
[70] Wang Yufeng;Zhang Lifeng.Effect of SEN Clogging on Flow Transport in Continuous Casting Mold[A].Pest-Buda,2007:161.
[71] Zhang L;Aoki J;Thomas B G .Inclusion Removal by Bubble Flotation in a Continuous Casting Mold[J].Metal and Material Trans,2006,37B(03):361.
[72] Yufeng Wang;Anping Dong;Lifeng Zhang .Effect of Slide Gate and EM Br on the Transport of Inclusions and Bubbles in Slab Continuous Casting Strands[J].Steel Research International,2011(4):428-439.
[73] WANG Qiang-qiang,王强强,ZHANG Li-feng,张立峰.FC结晶器内流场的数值模拟研究[C].第十六届冶金反应工程学会议论文集,2012:607-613.
[74] Zhang Lifeng;Wang Yufeng;Edith Martinez.Fluid Flow,Solidification and Inclusion Entrapment During Steel Centrifugal Casting Process[A].Orlando:TMS,2012:3.
[75] Zhang Lifeng .Application of Computational Fluid Dynamics (CFD) Modeling on the Transport Phenomena During Casting Process[J].JOM-Journal of the Minerals Metals and Materials Society,2012,64(09):1059.
[76] Zhang Lifeng .Modeling on the Entrapment of Non-Metallic Inclusions in Steel Continuous Casting Billets[J].JOM-Journal of the Minerals Metals and Materials Society,2012,64(09):1063.
[77] 板坯连铸结晶器内流场数值模拟[J].过程工程学报,2012(06):925-932.
[78] Zhang Lifeng;Yang Shufeng;Lucas N W Damoah .Inclusions in Runner Steel during Ingot Casting[J].Journal of Iron and Steel Research International,2011,18(z2):283.
[79] Zhang Lifeng;Chen Yongfeng;Yang Shufeng.Fluid Flow and Inclusion Entrapment in the Runner Steel During Ingot Casting[A].Orlando:TMS,2012:169.
[80] Wang Yufeng;Zuo Xiangjun;Zhang Lifeng.Entrapment of Inclusions in Continuous Casting Billet:Industrial Observation and Modeling[A].Warrandale:ISS,2010:793.
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