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Microstructure and texture evolution in dual-phase steels: Competition between recovery, recrystallization, and phase transformation

机译:双相钢的组织和织构演变:恢复,再结晶和相变之间的竞争

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The microstructure and texture evolution of dual-phase steel sheets with a cold reduction of about 50%, annealed at ferritic and intercritical temperatures, were analyzed by scanning electron microscopy and electron backscatter diffraction. The competition between recrystallization and phase transformation was of particular interest. The sheets were annealed in salt bath or were annealed in a MULTIPAS annealing simulator under variation of annealing temperature, annealing time, and heating rate. For low intercritical temperatures, recrystallization occurred before phase transformation. The sheets showed a similar through-thickness texture inhomogeneity with a plane-strain texture with strong α-fiber and weak 7-fiber as cold rolled sheets and a ferritic-martensitic band structure in the sheet center layers. An inverse correlation between the volume fractions of recrystallized ferrite and martensite was observed. This interdependence is attributed to a different phase transformation kinetics for recyrstallized and deformed ferrite and is discussed in terms of deformation strain energy, diffusion, and number of nucleation sites.
机译:通过扫描电子显微镜和电子反向散射衍射分析了在铁素体和临界温度之间退火的冷轧约50%的双相钢板的组织和组织演变。重结晶和相变之间的竞争尤为重要。将板在盐浴中退火或在MULTIPAS退火模拟器中根据退火温度,退火时间和加热速率的变化进行退火。对于较低的临界温度,在相变之前发生重结晶。薄板表现出与冷轧薄板相似的贯穿厚度纹理的不均匀性,具有强α纤维和薄7纤维的平面应变纹理,并且在薄板中心层具有铁素体-马氏体带结构。观察到再结晶的铁素体和马氏体的体积分数成反比。这种相互依赖性归因于再结晶和变形的铁素体具有不同的相变动力学,并在变形应变能,扩散和成核位点数量方面进行了讨论。

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