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Effect of Annealing Time on the Texture of a 2.8 Si Non-Oriented Electrical Steel After Inclined and Skew Rolling

机译:倾斜和斜轧后退火时间对2.8%Si无取向电工钢组织的影响

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Non-oriented electrical steels are widely used in electric motors and generators as core materials to amplify magnetic flux and thus enhancing the conversion of energy. The efficiency of the motors and generators is closely related to the magnetic properties of the lamination core. In order to produce the magnetically favourable <001>//ND texture (θ-fibre) and suppress the unfavourable <111>//ND (γ-fiber) components in non-oriented electrical steels, two unconventional cold rolling schemes (inclined and skew rolling) were employed to process the steel. These rolling schemes have shown great potential in altering the texture of non-oriented electrical steel, especially for the 60° (inclined rolling) and 22.5° (skew rolling) angles. In this paper the effect of annealing time on the texture evolution of a 2.8 wt% Si steel was investigated using EBSD techniques. It was found that, all the unconventional rolling schemes were able to produce a strong 9-fiber texture, but the annealing time to achieve this texture was different.
机译:无方向性电工钢广泛用作电动机和发电机的核心材料,以放大磁通量,从而提高能量的转化率。电动机和发电机的效率与叠片铁芯的磁性能密切相关。为了产生无磁性的<001> // ND织构(θ纤维)并抑制无取向电工钢中的不利的<111> // ND(γ纤维)成分,有两种非常规的冷轧方案(倾斜和冷轧)。斜轧)被用来加工钢。这些轧制方案在改变无方向性电工钢的织构方面显示出了巨大的潜力,特别是对于60°(倾斜轧制)和22.5°(斜轧)角度而言。在本文中,使用EBSD技术研究了退火时间对2.8 wt%Si钢的织构演变的影响。结果发现,所有非常规的轧制方案都能够产生很强的9纤维织构,但是达到该织构的退火时间却不同。

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