Influence of Cold Rolling Reduction and Annealing Temperature
on Texture and Formability of Ti-IF Steel
Luo Haiyan1, Xiao Huan2, Zhao Gang2, Yu Chong2, Sun Hongyun2, Wei Junjie2 , Fan Lei3
1 Guangxi Metallurgy Research Institute, Nanning 530023;
2 Department of Materials Processing Engineering,
Wuhan University of Science and Technology, Wuhan 430081 ;
3 Guangxi Liuzhou Iron and Steel Co, Liuzhou 545002
Luo Haiyan, Xiao Huan, Zhao Gang, Yu Chong, Sun Hongyun, Wei Junjie, Fan Lei. Influence of Cold Rolling Reduction and Annealing Temperature
on Texture and Formability of Ti-IF Steel[J]. Special Steel, 2013, 34(6): 52-55.
[1]傅作宝.冷轧薄钢板生产[M ].北京:冶金工业出版社,2005.
[2]崔忠圻,覃耀春.金属学与热处理(第2版)[M].北京:机械工业出版社,2007.
[3]王昭东,李自刚,何晓明,等.冷轧压下量对铁素体区热轧Ti-IF 钢冷轧板的再结晶织构特点和深冲性能的影响[J].金属学报, 2000,36(6) :613-617.
[4]郑之旺,刘庆春,李叙生,等.冷轧压下率对连续退火Ti-IF钢组 织和织构的影响.钢铁钒钛[J]. 2010,31(1) :40-45.
[5] Karel Eloot. Texture Evolution during Cold Rolling and Recrystallisation of IF Steel with Strong {111} Hot Band Texture [J]. ISIJ International ,1998,38(6) :602-609.
[6]高鲁峰,康永林,吕 超,等.Ti-IF钢退火再结晶织构的实验研究[J].热加工工艺,2010,39(22) :45-48.
[7]Yasunobu Nagataki, Yoshihiro Hosoya. Origin of the Recrystallization Texture Formation in an Interstitial Flee Steel[J]. ISIJ International, 1996,36(4) :451-460.
[8]杨 平,李志超,毛卫民,等.钢中{111} <112>再结晶织构的形成[J].材料热处理学报,2009,30(3) :46-52.