马鸣图,吴宝榕.双相钢——物理和力学冶金[M].北京:冶金工业出版社,1988:13/67.(Ma Mingtu,Wu Baorong.Physical and mechanical metallurgy of dual phase steel[M].Beijing:Metallurgical Industry Press,1988:13/67.)
[2]
王晓鹏,杜林秀,周民.冷轧低碳钢快速加热过程中的相变规律[J].东北大学学报:自然科学版,2012,33(8):1137/1140.(Wang Xiaopeng,Du Linxiu,Zhou Min.Phase tranformation law of coldrolled low carbon steel during rapid heating[J].Journal of Northeastern University:Natural Science,2012,33(8):1137/1140.)
[3]
Erdogan M.Effect of austenite dispersion on phase transformation in dual phase steel[J].Scripta Materialia,2003,48(5):501/506.
[4]
Landron C,Bouaziz O,Maire E,et al.Characterization and modeling of void nucleation by interface decohesion in dual phase steels[J].Scripta Materialia,2010,63(10):973/976.
[5]
Aaronson H,Furuhara T,Rigsbee J,et al.Crystallographic and mechanistic aspects of growth by shear and by diffusional processes[J].Metallurgical and Materials Transactions A,1990,21(9):2369/2409.
[6]
Calcagnotto M,Adachi Y,Ponge D,et al.Deformation and fracture mechanisms in fine and ultrafinegrained ferrite/martensite dualphase steels and the effect of aging[J].Acta Materialia,2011,59(2):658/670.
[7]
Jacques P,Furnemont Q,Pardoen T,et al.On the role of martensitic transformation on damage and cracking resistance in TRIPassisted multiphase steels[J].Acta Materialia,2001,49(1):139/152.
[8]
Kim D H,Kim S J,Kim S H,et al.Microtexture development during equibiaxial tensile deformation in monolithic and dual phase steels[J].Acta Materialia,2011,59(14):5462/5471.
[9]
Lacroix G,Pardoen T,Jacques P J.The fracture toughness of TRIPassisted multiphase steels[J].Acta Materialia,2008,56(15):3900/3913.