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Effect of annealing after strip casting on texture development in grain oriented silicon steel produced by twin roll casting

机译:带钢铸造后退火对双辊铸造取向硅钢组织发展的影响

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An ultra-low carbon Fe-3%Si grain oriented electrical steel strip was produced by a twin roll strip casting process. Next, the strip with or without annealing was cold rolled and subsequently annealed. The effect of annealing after strip casting on the texture development was studied using macro-/micro texture analysis. Due to the rapid solidification, the precipitation behavior of second phase particles was suppressed and very few particles were observed in the as-cast strip. The direct cold rolled texture was characterized by strong alpha (< 110 >//RD) and weak gamma ({111}//ND) fibers. While, in the annealed strip, a large number of particles were precipitated during the annealing of the cast strip and these particles hindered the crystal rotation during cold rolling such that part of the initial solidification texture remained in the cold rolled sheet. In the case of the direct cold rolling process, the precipitation occurred before recrystallization during primary annealing. These fine particles had a significant pinning effect on dislocations and further retarded the reoystallization behavior, leading to relatively strong a-fiber in the primary annealed sheet. On the other hand, compared with the fine and dispersed particles precipitated during the strip annealing process, the distribution of particles precipitated during primary annealing were inhomogeneous. Therefore, there was no secondary recrystallization during secondary annealing, which was distinct from the strip annealing process where abnormal growth of Goss grains were observed and the magnetic properties were significantly improved. (C) 2015 Elsevier Inc. All rights reserved.
机译:通过双辊薄带连铸工艺生产了超低碳的Fe-3%Si晶粒取向电工钢带。接下来,将带退火或不带退火的带材冷轧并随后退火。使用宏观/微观纹理分析研究了带钢铸造后退火对纹理发展的影响。由于快速凝固,抑制了第二相颗粒的沉淀行为,并且在铸态带中观察到很少的颗粒。直接冷轧织构的特征在于强α(<110> // RD)和弱γ({111} // ND)纤维。同时,在退火后的带材中,在铸造带材的退火过程中沉淀出大量颗粒,这些颗粒阻碍了冷轧过程中的晶体旋转,从而使部分初始凝固织构保留在冷轧板中。在直接冷轧过程中,沉淀发生在初次退火的重结晶之前。这些细颗粒对位错具有显着的钉扎作用,并进一步阻碍了再结晶行为,从而导致初级退火板中的a纤维相对较强。另一方面,与在条带退火过程中沉淀的细小和分散的颗粒相比,在一次退火过程中沉淀的颗粒的分布是不均匀的。因此,在二次退火期间没有二次再结晶,这与带材退火过程不同,在条带退火过程中,观察到了高斯晶粒的异常生长,并且磁性能得到了显着改善。 (C)2015 Elsevier Inc.保留所有权利。

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