Cu-P-Cr-Ni-Mo耐候钢两相区铁素体晶粒细化机理Mechanism of ferrite grain refinement in the(γ+α) region of weathering steel Cu-P-Cr-Ni-Mo
张春玲,杨金凤,孔玉婷,蔡大勇
摘要(Abstract):
采用Gleeble-3500热模拟试验机和背散射电子衍射(EBSD)技术分析研究了Cu-P-Cr-Ni-Mo耐候钢在(γ+α)两相区不同变形量和不同变形温度下的组织演变,探究了铁素体晶粒的细化机理。结果表明,Cu-P-Cr-Ni-Mo耐候钢在750℃,应变速率为0.01 s-1变形时,当应变超过0.69后,铁素体的转变量增加不明显,但等轴铁素体晶粒数量增加,新形成的细小等轴再结晶铁素体晶粒尺寸达到1.4~3μm;在850~750℃、应变速率为0.01 s-1变形时,随着变形温度的降低,铁素体转变量增加,铁素体晶粒尺寸减小,但均匀性降低。Cu-P-Cr-Ni-Mo耐候钢(γ+α)两相区铁素体晶粒细化机制为铁素体的连续动态再结晶,并且随着变形温度的降低,发生铁素体的连续动态再结晶的能力增强。
关键词(KeyWords): Cu-P-Cr-Ni-Mo耐候钢;(γ+α)两相区;组织;晶粒细化;EBSD
基金项目(Foundation): 国家自然科学基金(51104130);; 河北省自然科学基金(E2012203137)
作者(Author): 张春玲,杨金凤,孔玉婷,蔡大勇
DOI: 10.13289/j.issn.1009-6264.2014.06.009
参考文献(References):
- [1]Wang R Z,LEI T C.Dynamic recrystallization of ferrite in a low carbon steel during hot rolling in the(F+A)two-phase range[J].Scripta Metallurgica Et Materialia,1994,31(9):1193-1196.
- [2]Wang R Z,LEI T C.Substructural evolution of ferrite in a low carbon steel during hot deformation in(F+A)two-phase range[J].Scripta Metallurgica Et Materialia,1993,28(5):629-632.
- [3]Hurley P J,Hodgson P D.Formation of ultra-fine ferrite in hot rolled strip:potential mechanisms for grain refinement[J].Materials Science and Engineering A,2001,302(2):206-214.
- [4]Beladi H,Kelly G L,Shokouhi A,et al.The evolution of ultrafine ferrite formation through dynamic strain-induced transformation[J].Materials Science and Engineering A,2004,371(1):343-352.
- [5]Santos D B,Bruzszek R K,Rodrigues P C M,et al.Formation of ultra-fine ferrite microstructure in warm rolled and annealed C-Mn steel[J].Materials Science and Engineering A,2003,346(1):189-195.
- [6]Tsuji N,Matsubara Y,Saito Y.Dynamic recrystallization of ferrite in interstitial free steel[J].Scripta Materialia,1997,37(4):477-484.
- [7]Song R,Ponge D,Raabe D,et al.Microstructure and crystallographic texture of an ultrafine grained C-Mn steel and their evolution during warm deformation and annealing[J].Acta Materialia,2005,53(3):845-858.
- [8]Gourdet S,Montheillet F.A model of continuous dynamic recrystallization[J].Acta Materialia,2003,51(9):2685-2699.
- [9]Gourdet S,Montheillet F.An experimental study of the recrystallization mechanism during hot deformation of aluminium[J].Materials Science and Engineering A,2000,283(1):274-288.
- [10]Seung Chan Hong,Kyung Sub Lee.Influence of deformation induced ferrite transformation on grain refinement of dual phase steel[J].Materials Science and Engineering A,2002,323(1):148-159.
- [11]杨平,傅云义,崔凤娥,等.形变温度对Q235碳素钢应变诱导相变的影响[J].金属学报,2001,37(6):601-608.YANG Ping,FU Yun-yi,CUI Feng-e,et al.Influence of deforming temperatures on the strain induced transformation in Q235 plain carbon steel[J].Acta Metallurgica Sinica,2001,37(6):601-608.
- [12]杨平,傅云义,崔凤娥,等.Q235碳素钢应变强化相变的基本特点及影响因素[J].金属学报,2001,37(6):592-600.YANG Ping,FU Yun-yi,CUI Feng-e,et al.Characteristics of strain enhanced transformation and its influencing factors in Q235 plain carbon steel[J].Acta Metallurgica Sinica,2001,37(6):592-600.
- [13]杨平,崔凤娥,傅云义,等.Q235碳素钢应变诱导相变中的应力-应变曲线分析[J].金属学报,2001,37(6):609-616.YANG Ping,FU Yun-yi,CUI Feng-e,et al.Analysis ofσ-εcurves during strain induced transformation in Q235 plain carbon steel[J].Acta Metallurgica Sinica,2001,37(6):609-616.
- [14]周荣锋,杨王玥,孙祖庆,等.不同形变速率条件下低碳钢过冷奥氏体形变过程铁素体超细化[J].北京科技大学学报,2004,26(5):512-518.ZHOU Rong-feng,YANG Wang-yue,SUN Zu-qing,et al.Formation of ultra-fine ferrite in low carbon steel during deformation at different strain rates of undercooled austenite[J].Journal of University of Science and Technology Beijng,2004,26(5):512-518.
- [15]Huang Y D,Yang W Y,Sun Z Q.Formation of ultrafine grained ferrite in low carbon steel by heavy deformation in ferrite or dual phase region[J].Journal of Materials Processing Technology,2003,134(1):19-25.
- [16]Abdollah-zadeh A,Eghbali B.Mechanism of ferrite grain refinement during warm deformation of a low carbon Nb-microalloyed steel[J].Materials Science and Engineering A,2007,457(1):219-225.
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