采用拉伸试验、金相、ODF织构分析及电子背散射衍射(EBSD)技术研究了一种冷轧高Nb-IF钢和传统Nb+Ti-IF钢在不同退火温度下的组织性能、织构及晶界特征。结果表明:与传统Nb+Ti-IF钢相比,该新型高Nb-IF钢由于添加了质量分数为60×10-6的碳和0.10%的铌,其再结晶温度和再结晶完成温度均大幅度提高;新型高Nb-IF钢具有晶粒细小、组织均匀性良好的组织和γ取向织构发展充分且强点密度高的织构,能够获得强度高、伸长率高和r值高的优异的综合性能。EBSD分析结果表明,该新型高Nb-IF钢中小角度晶界和低指数重位点阵(ΣCSL)晶界含量较多,这也是试验钢获得优良成形性能的原因之一。
Microstructure, mechanical properties, texture and grain boundaries characterization of novel high Nb-IF steel sheet and convention Nbq-Ti-IF steel sheet annealed at different temperatures were investigated using tension test, rnetallography, X-ray diffraction ODF analysis and electron backscatter diffraction (EBSD) technique. The results show that the relatively higher carbon content near 60 )〈 106 with a suitable carbide forming element niobium (0.10%) significantly increases the recrystallization temperature and the fully recrystallization temperature of the novel high Nb-IF steel sheet compared with those of conventional Nb-FTi-IF steel sheet after subjected to the same hot and cold rolling. While this steel has excellent comprehensive properties such as higher strength, higher elon- gation and higher r-value due to the formation of the fine grain structure with more homogeneous microstructure and the ~' fiber texture sufficiently develops. EBSD analysis show that more small angle and low coincidence site lattice (,SCSL) boundaries in the high Nb-IF steel sheet is one of the reasons obtain well formability.
参考文献
[1] | 李俊 .影响高强钢汽车板发展的主要问题及对策[J].世界钢铁,2006,3:1. |
[2] | 马鸣图,柏建仁.汽车轻量化材料及相关技术的研究进展[J].新材料产业,2006(06):37-42. |
[3] | 马鸣图.先进汽车用钢[M].北京:化学工业出版社,2007 |
[4] | Hutchinson W B .Development and Control of Annealing Tex- tures in Low-Carbon Steels[J].International Materials Reviews,1984,29(01):25. |
[5] | Han S;Lee O .Effect of Manufacturing Conditions on Mechan- ical Properties of Super Formable IF High Strength Steels[J].Steel Research International,2004,75(03):178. |
[6] | Ghosh P;Bhattacharya B;Ray R K .Comparative Study on Precipitation Behavior and Texture Formation in Cold Rolled- Batch Annealed and Cold Rolled-Continuous Annealed Intersti- tial Free High Strength Steels[J].Ser Mater,2007,56(08):657. |
[7] | 曹圣泉,张津徐,吴建生,陈家光.IF钢织构与晶界特征分布的研究[J].金属学报,2004(10):1045-1050. |
[8] | Fusato KITANO;Toshiaki URABE;Takeshi FUJITA .New Type of IF-High Strength Steel with Superior Anti-secondary Work Embrittlement[J].ISIJ International,2001(11):1402-1410. |
[9] | Toshiaki Urabe;Takeshi Fujita;Yuji Yamasaki .Development of High-Strength Steel with Fine Grain Structure for Exposure Panel[J].自動車技術,2001(10):8-13. |
[10] | Ahbaschiam D R;Abbaschiam L;Reed-Hill R E.Physical Metallurgy Principles(Fourth edition)[M].Stamford:Cengage Learning,2009 |
[11] | Takeehi H .Metallurgical Aspects on Interstitial Free Sheet Steel From Industrial View Point[J].ISIJ International,1994,34(01):1. |
[12] | Mark Denis NAVE;Matthew Robert BARNETT .Fragmentation of Orientation within Grains of a Cold-rolled Interstitial-free Steel[J].ISIJ International,2004(1):187-196. |
[13] | Nadedkar V M;Samajdar I;Narasimhan K .Development of Grain Interior Strain Loealizations During Plane Strain De- formation of a Deep Drawing Quality Sheet Steel[J].ISIJ International,2001,41(12):1517. |
[14] | Sdnchez-Araiza M;Godet S;Jacques P J et al.Texture Evo- lution During the Reerystallization of a Warm-Rolled Low- Carbon Stee[J].Acta Materialia,2006,54(11):3085. |
[15] | Watatxabe T.Grain Boundary Engineering:Historical Persp- ective and Future Prospects[J].J Mater Sei,2011(46):4095. |
[16] | Rajib S;Ray P K .Microstructural and Textural Changes in a Severely Cold Rolled Boron-Added Interstitial-Free Steel[J].Ser Mater,2007,57(09):841. |
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