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The effect of coiling temperatures on the evolution of texture in Ti-IF steel during ferritic hot rolling, cold rolling and annealing was studied. It was found that texture evolution at high temperature coiling is absolutely different from that at low temperature one. The hot band texture includes a strong α-fiber as well as a weak γ-fiber after ferritic hot rolling and Iow temperature coiling. Both of them intensify after cold rolling and a γ-fiber with peak at {111}<112> is the main texture of annealed samples. However, the main component of the hot band texture after high temperature coiling is γ-fiber. After cold rolling, the intensity of γ texture reduces; α fiber (except {111}<110> component) intensifies and a strong and well-proportioned γ-fiber forms in the annealed samples.

参考文献

[1] R Mendoza;M Alanis;O Alvarez-Fregoso;J A Juarez-Islas .[J].Scripta Materialia,2000,43(08):771.
[2] T Senuma .[J].ISIJ International,2001,41(06):520.
[3] A Tomitz;R Kaspar .[J].Steel Research,2000,71(12):497.
[4] V.J. Martinez;J.I. Verdeja;J.A. Pero-Sanz .Interstitial free steel Influence of #alpha#-phase hot-rolling and cold-rolling reduction to obtain extra-deep drawing quality[J].Materials Characterization,2001(1):45-53.
[5] P Juntunen;D Raabe;P Karjalainen;T Kopio and G Bolle .[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,2001,32(08):1989.
[6] L K Tung;M Z Quadir;B J Duggan .[J].Key Engineering Materials,2002,233-236(01):437.
[7] A Tomitz;R Kaspar .[J].ISIJ International,2000,40(09):927.
[8] 王昭东,郭艳辉,赵忠,孙大庆.应用铁素体区热轧工艺开发超低碳热轧深冲板[J].东北大学学报(自然科学版),2005(08):747-750.
[9] H. Zhao;S. C. Rama;G. C. Barber .Experimental study of deep drawability of hot rolled IF steel[J].Journal of Materials Processing Technology,2002(1/3):73-79.
[10] P. J. Hurley;P. D. Hodgson .Formation of ultra-fine ferrite in hot rolled strip: Potential mechanisms for grain refinement[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2001(2):206-214.
[11] T Senuma;H Yada.[A].Iron Steel Inst,Tokyo,Japan,1988:628.
[12] T Senuma;H Yada;R Shimizu;J Harase .[J].Acta Metallurgica Et Materialia,1990,38(12):2673.
[13] Xinping MAO .[J].Iron & Steel,2004,39(05):71.
[14] M R Toroghinejad;A O Humphreys;D S Liu;F Ashrafizadeh,A Najafizadeh and J J Jonas .[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,2003,34(05):1163.
[15] Xiaojun GUAN;Yun LI;Zuocheng WANG .[J].Iron & Steel,2004,39(09):58.
[16] R J Roe .[J].Journal of Applied Physics,1965,36(06):2024.
[17] D Vanderschueren;N Yoshinaga;K Koyama .[J].ISIJ International,1996,36(08):1046.
[18] H Inagaki .[J].ISIJ International,1994,34(04):313.
[19] M.R.BARNETT .Influence of Ferrite Rolling Temperature on Microstructure and Texture in Deformed Low C and IF Steels[J].ISIJ International,1997(7):697-705.
[20] M.R.BARNETT .Influence of Ferrite Rolling Temperature on Grain Size and Texture in Annealed Low C and IF Steels[J].ISIJ International,1997(7):706-714.
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