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Deformation Behavior and Microstructure Development of Ultrafine Grained Iron

机译:超细粒化铁的变形行为和微观结构开发

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Work hardening behavior and microstructure development during deformation by cold rolling were investigated in pure iron with coarse grains (mean grain size; 20μm) and that with ultrafine grains (0.25μm). In the coarse grained iron, dislocations are introduced inhomogeneously in the early stage of deformation, and then the dislocation cell structure is formed with the increase in dislocation density during the deformation. On the other hand, the microstructure development in the ultrafme grained iron is significantly different from that in the coarse grained iron; that is, dislocations are more densely introduced by the deformation and form no dislocation cell structure. However, the ultrafine grained iron never exhibits work hardening, and the proof stress is kept constant even after 40% cold rolling. This suggests that the strength of the deformed ultrafine grained iron can not be given by the addition of dislocation strengthening and grain refinement strengthening even when the iron has a quite high dislocation density.
机译:在纯铁中研究了冷轧变形过程中的工作硬化行为和微观结构开发,粗晶粒(平均粒度;20μm),用超细晶粒(0.25μm)。在粗粒铁中,位于变形的早期阶段,脱离脱位,然后在变形期间形成位错细胞结构。另一方面,超薄粒子铁中的微观结构显着与粗粒铁中的粗糙度显着不同;也就是说,通过变形更密集地引入脱位,并形成不脱臼细胞结构。然而,超细堆积的铁从不表现出工作硬化,即使在40%冷轧后也保持恒定。这表明即使铁具有相当高的位错密度,也不能通过增加脱位强化和晶粒细化来给出变形超细粒子铁的强度。

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