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Change Of Rotated Cube Texture Through Multi-processing In 3% Si-steels

机译:3%硅钢经多次加工后旋转立方体纹理的变化

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Rotated cube texture was obtained about 5% during the 1st heavy cold rolling 80% and the subsequent annealing increased it by 40% but thereafter both the 2nd light cold rolling 10% and the 2nd low temperature annealing at 700℃ were not able to increase the rotated cube orientation. This result assures that a small amount of reduction grows hardly the rotated cube orientation and even subsequent annealing of such lightly cold rolled materials does not increase it properly either. The γ fiber of hard magnetizing orientation revealed a large volume fraction above 20% through the 1st cold rolling and subsequent annealing, but it decreased noticeably after the 2nd cold rolling and annealing, which also means that it does not change under such low cold reduction and low temperature annealing. The CSL boundaries of ∑3, ∑7, ∑9 and ∑15 appeared as the main 2 boundaries.
机译:在第一次重冷轧制80%时获得约5%的旋转立方织构,随后的退火将其增加40%,但是此后第二次轻冷轧制10%和在700℃的第二次低温退火均无法提高旋转的立方体方向。该结果确保了少量的还原几乎不增加旋转的立方取向,并且即使随后的这种轻度冷轧材料的退火也不能适当地增加它。硬磁化取向的γ纤维在第一次冷轧和随后的退火处理中显示出20%以上的较大体积分数,但在第二次冷轧和退火处理后却显着降低,这也意味着在如此低的冷压下,它不会发生变化。低温退火。 ∑3,∑7,∑9和∑15的CSL边界显示为主要的2个边界。

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