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Macrotexture and microtexture evolution in cold rolled non-oriented electrical steel sheets during annealing

机译:冷轧无取向电工钢板退火过程中的宏观组织和微观组织演变

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Texture evolution in cold rolled non-oriented electrical steel sheets during annealing has been investigated using both electron backscatter diffraction (EBSD) microtexture and macrotexture sampling strategies. The comparison between macrotexture and microtexture pole figures showed that a reliable orientation distribution is obtained if a sampling strategy which acquires data from a sufficiently large number of grains, i.e. using a step size of the order of the grain size, is used. On the other hand, step sizes much smaller than the grain size must be used to generate an orientation map which reveals the microstructure morphology. The texture measurements showed that deformed bands in cold rolled sheets have strong orientations of {100}, {111}, {211} and {311}, i.e. on the α fibre. During annealing at 800°C, recrystallisation occurred. The deformed bands in which the rolling direction was far away from were consumed initially during recrystallisation. In contrast, the α fibres remained to be consumed last. Grain growth occurred after annealing at 900°C.
机译:使用电子背散射衍射(EBSD)微观纹理和宏观纹理采样策略,研究了冷轧无取向电工钢板在退火过程中的织构演变。宏观纹理和微观纹理极图之间的比较表明,如果使用从足够大量的晶粒中获取数据的采样策略(即,使用粒度的数量级的步长)来获取可靠的取向分布。另一方面,必须使用比晶粒小得多的步长来生成显示微观结构形态的取向图。织构测量表明,冷轧薄板中的变形带具有{100},{111},{211}和{311}的强取向,即在α纤维上。在800℃下退火期间,发生重结晶。最初在重结晶过程中消耗了轧制方向远离的变形带。相反,α纤维保持最后消耗。在900°C退火后,晶粒长大。

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