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以微合金元素的析出热力学和析出动力学为基础,针对Fe-Nb-V-Ti-Al-C-N合金系,定量计算了热连轧过程中(Nb,V,Ti)(C,N)和AlN在奥氏体中的析出行为,并进一步分析了热轧制温度对析出行为的影响.计算结果表明,对所研究的钢种成分和工艺条件,在加热过程中(Nb,V,Ti)(C,N)就已经析出,在粗轧阶段,(Nb,V,Ti)(C,N)析出粒子平均半径逐渐减小,在精轧阶段,(Nb,V,Ti)(C,N)基本达到平衡析出量,终轧后析出粒子平均半径保持在23 am左右.轧制时的热变形增大了形核率,促进了析出,使析出粒子的平均半径减小.随加热和轧制温度的降低,(Nb,V,Ti)(C,N)的析出量有所增加,粒子平均半径减小.

参考文献

[1] Adrian H .Thermodynamic model for precipitation of carbonitrides in high strength low alloy steels containing up to three microalloying elements with or without additions of aluminum[J].Materials Science and Technology,1992,8(05):406-420.
[2] Sharma R C;Lakshmanan V K;Kirkaldy J S .Solubility of niobium carbide and niobium carbonitride in alloyed austenite and ferrite[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1984,15:545-553.
[3] 唐广波,吴秀月,雍兮,白埃民,刘正东,雍歧龙.复合微合金化高强度低合金钢奥氏体相中碳氮化物析出热力学数值模拟[J].金属热处理,2008(08):67-72.
[4] 雍岐龙.钢铁材料中的第二相[M].北京:冶金工业出版社,2006
[5] H.S.ZUROB;Y.BRECHET;G.PURDY .A MODEL FOR THE COMPETITION OF PRECIPITATION AND RECRYSTALLIZATION IN DEFORMED AUSTENITE[J].Acta materialia,2001(20):4183-4190.
[6] 徐瑞;荆天辅.材料热力学与动力学[M].哈尔滨:哈尔滨工业大学出版社,2003
[7] Christian J W.The Theory of Transformations in Metals and Alloys,part 1 3 rd Edition[M].Oxford:pergamon Press,2002
[8] Dutta B;valdes E;Sellars C M .Mechanism and kinetics of strain induced precipitation of Nb(C,N) in austenite[J].Acta Metallurgica Et Materialia,1992,40(04):653-662.
[9] B. DUTTA;E. J. PALMIERE;C. M. SELLARS .MODELLING THE KINETICS OF STRAIN INDUCED PRECIPITATION IN Nb MICROALLOYED STEELS[J].Acta materialia,2001(5):785-794.
[10] Anan G;Nakajma S;Miyahara M et al.Model for recovery and recrystallization of hot deformed austenite considering structural heterogeneity[J].ISIJ International,1992,32(03):261-266.
[11] 唐广波 .热轧带钢热轧区物理冶金过程数值模拟及应用研究[D].北京:北京科技大学,2005.
[12] Okaguchi S;Hashimoto T .Computer model for prediction of carbonitride precipitation during hot working in Nb-Ti bearing HSLA steels[J].ISIJ International,1992,32(03):283-290.
[13] 曹建春,雍岐龙,刘清友,孙新军.含铌钼钢中微合金碳氮化物沉淀析出及其强化机制[J].材料热处理学报,2006(05):51-55.
[14] Gladman T.The Physical Metallurgy of Microalloyed Steels[M].London:Institute of Materials Press,1997
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