低碳含铌细晶双相钢的组织控制Microstructure control of low carbon Nb-microalloyed fine grained dual phase steel
徐海卫,杨王玥,孙祖庆,王西涛
摘要(Abstract):
利用热模拟压缩变形实验研究了低碳含铌钢基于过冷奥氏体动态相变细晶双相钢的组织控制。相变前的奥氏体状态(再结晶奥氏体或形变奥氏体组织)及Nb的存在状态对动态相变有较大的影响。结果表明,由于铌在再结晶奥氏体中主要以固溶状态存在,其固溶拖曳作用延迟了铁素体动态相变,要求在动态相变中施以大的应变量才能获得细小马氏体岛弥散分布于细晶铁素体中的双相组织;形变奥氏体中,大部分铌在奥氏体未再结晶区形变中应变诱导析出,动态相变中固溶铌拖曳作用的降低以及未再结晶区形变对奥氏体有效晶界面积(Sv)的提高均有利于铁素体在动态相变中快速形核,在小应变量下即可获得铁素体晶粒为1~2μm,马氏体岛<1μm的超细晶双相组织。
关键词(KeyWords): 动态相变;双相钢;细化晶粒;铌
基金项目(Foundation): 国家“973”计划资助项目(2004CB619102)
作者(Author): 徐海卫,杨王玥,孙祖庆,王西涛
参考文献(References):
- [1]Park K T,Han S Y,Ahn B D,et al.Ultrafine grained dual phase steel fabricated by equal channel angular pressing and subsequent intercritical annealing[J].Scripta Mater,2004,51:909-913.
- [2]Hong S C,Lee K S.Influence of deformation induced ferrite transformation on grain refinement of dual phase steel[J].Mater Sci Eng A,2002,323:148-159.
- [3]Hong S C,Lim S H,Hong H S,et al.Effects of Nb on strain induced ferrite transformation in C-Mn steel[J].Mater Sci Eng A,2003,355:241-248.
- [4]Mukherjee K,Hazra S,Militzer M.Deformation-induced ferrite transformation in dual-phase steels[C].The Joint International Conference of HSLA Steels2005 and ISUGS 2005,Hainan:CSM,2005:949-953.
- [5]Dutta B,Palmiere E J,Sellars C M.Modelling the kinetics of strain induced precipitation in Nb microalloyed steels[J].Acta Mater,2001,49:785-794.
- [6]Sellars C M.Options and constraints for thermomechanical processing of microalloyed steel[C].HSLA Steels Metallurgy and Applications,1985:73-81.
- [7]Pereloma E V,Crawford B R,Hodgson P D.Strain-induced precipitation behaviour in hot rolled strip steel[J].Mater Sci Eng A,2001,299:27-37.
- [8]Palmiere E J,Garcia C I,Deardo A J.The influence of niobium supersaturation in austenite on the static recrystallization behavior of low carbon microalloyedsteels[J].Metal Mater Trans A,1996,27:951-960.
- [9]Kang K B,Kwon O,Lee W B,et al.Effect of precipitation on the recrystallization behavior of a Nb containing steel[J].Scripta Mater,1997,36(11):1303-1308.
- [10]Deardo A J,Gray J M.Austenite conditioning alternatives for microalloyed steel products[C].HSLA Steels Metallurgy and Applications,1985:83-96.
- [11]Sun Z Q,Yang W Y,Qi JJ,et al.Deformation enhanced transformation and dynamic recrystallization of ferrite in a low carbon steel during multipass hotdeformation[J].Mater Sci Eng A,2002,334(9):201-206.
- [12]杨王,胡安民,齐俊杰,等.低碳钢形变强化相变的组织细化[J].材料研究学报,2001,15(2):171-178.YANG Wang-yue,HU An-ming,QI Jun-jie,et al.Microstructure refinement of deformation-enhanced transformation in low carbon steel[J].Chinese Journalof Materials Research,2001,15(2):171-178.
- [13]周荣锋,杨王,孙祖庆,等.不同碳含量低碳钢过冷奥氏体形变过程中的铁素体转变[J].钢铁,2004,39(8):93-99.ZHOU Rong-feng,YANG Wang-yue,SUN Zu-qing,et al.Ferrite transformation during deformation of undercooled austenite in low carbon(Mn)steels withdifferent C content[J].Iron and Steel,2004,39(8):93-99.
- [14]徐海卫,杨王,孙祖庆.基于动态相变的细晶双相低碳钢组织控制[J].金属学报,2006,42(10):1101-1108.XU Hai-wei,YANG Wang-yue,SUN Zu-qing.Microstructure control of fine grained dual phase low carbon steel based on the dynamic transformation[J].Acta Metallurgica Sinica,2006,42(10):1101-1108.
- [15]Lepera F S.Improved etching technique for the determination of percent martensite in high-strength dual-phase steels[J].Metallography,1979,12:263-265.
- [16]Underwood E E.Quantitative Metallography[M].McGraw-Hill,New York,1968:77-127.
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