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Hot rolling, cold rolling and continuous annealing processes of Ti bearing and Ti+ Nb stabilized ultra-low-carbon bake hardened steels were experimentally studied. The microstrueture and texture evolution, as well as the morphology, size and distribution of second phase precipitates during hot roiling, cold rolling and continuous annea-ling were also analyzed. The results showed that the size of NbC precipitates in Ti+ Nb stabilized ultra-low-carbon bake hardened steel was smaller than that of TiC precipitates in Ti bearing ultra-low-carbon bake hardened steel, which made the average grain size of Ti+ Nb stabilized ultra-low-carbon bake hardened steel finer than that of Ti bearing ultra-low-carbon bake hardened steel; for the yield strength, the former was higher than the latter; but for the γ value which reflects the deep-drawing performance, the former was lower than the latter.

参考文献

[1] KANG Yong-lin.Quality Control and Formability of Modern Automobile Steel Sheet[M].Beijing:Metallurgical Industrial Publishing Company,1999
[2] Kozeschnik E;Pletenev V;Zolotorevsky N et al.Aluminum Nitride Precipitation and Texture Development in Batch-Annealed Bake-Hardening Steel[J].Metallurgical and Materials Transactions,1999,30A:1663.
[3] Ooi S W;Fourlaris G .A Comparative Study of Precipitation Effects in Ti Only and Ti-V Ultra Low Carbon(ULC)Strip Steels[J].Materials Characterization,2006,56:214.
[4] Berbenni S;Favier V;Lemoine X et al.A Micromechanical Approach to Model the Bake Hardening Effect for Low Carbon Steels[J].Scripta Materialia,2004,51:303.
[5] Zhao J.Z.;De A.K. .A Model for the Cottrell Atmosphere Formation During Aging of Ultra Low Carbon Bake Hardening Steels[J].ISIJ International,2000(7):725-730.
[6] Zhao J Z;De A K;Cooman B C D .Formation of the Cottrell Atmosphere During Strain Aging of Bake-Hardenable Steels[J].Metallurgical and Materials Transactions,2001,32A:417.
[7] Soenen B;De A K;Vandeputte S et al.Competition Between Grain Boundary Segregation and Cottrell Atmosphere Formation During Static Strain Aging in Ultra Low Carbon Bake Hardening Steels[J].Acta Materialia,2004,52:3483.
[8] T. KVACKAJ;I. MAMUZIC .DEVELOPMENT OF BAKE HARDENING EFFECT BY PLASTIC DEFORMATION AND ANNEALING CONDITIONS[J].Metalurgija,2006(1):51-55.
[9] Jeong W C .Relationship Between Mechanical Properties and Microstructure in a 1.5% Mn-0.3% Mo Ultra-Low Carbon Steel With Bake Hardening[J].Materials Letters,2007,61:2579.
[10] Wenjin Nie,Shanwu Yang,Shaoqiang Yuan,Xinlai He.Dissolving of Nb and Ti carbonitride precipitates in microalloyed steels[J].北京科技大学学报(英文版),2003(05):78-80.
[11] Shalfan W A;Speer J G;Findley K et al.Effect of Annealing Time on Solute Carbon in Ultra-Low-Carbon Ti-V and TiNb Steels[J].Metallurgical and Materials Transactions,2006,37A:207.
[12] Bocos J L;Novillo E;Petite M M et al.Aspects of Orientation-Dependent Grain Growth in Extra-Low Carbon and Interstitial-Free Steels During Continuous Annealing[J].Metallurgical and Materials Transactions,2003,34A:827.
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