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Characteristic Microstructure and Grain Boundary Motion in Secondary Recrystallization of Fe-3 percent Si alloys

机译:Fe-3%Si合金二次重结晶中的特征微观结构和晶界运动

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The microstructure of Fe-3 mass percent Si alloys before secondary recrystallization has been characterized by analyzing precipitates and grain boundary segregated elements. The samples used were mainly sheets of Fe-3 percent Si alloys containing manganese, sulfur, aluminum, nitrogen and tin, which were decarburized and annealed up to secondary recrystallization. Grain boundary segregation in primarily recrystallized samples was studied using Auger electron spectroscopy (AES), and precipitates were analyzed using transmission electron microscopy (TEM) with an energy dispersive X-ray spectrometer (EDX). AES spectra showed that tin and nitrogen were enriched on grain boundaries in the Fe-3 mass percent Si alloys. TEM/EDX analysis showed that the morphology and distribution of the fine precipitates such as manganese sulfide and aluminum nitride were influenced by addition of tin. The characteristic structure formed by secondary recrystallization of grain oriented silicon steel is considered to be influenced by the fine precipitates and segregation of a small amount of elements, as the abnormal motion of grain boundaries of the silicon steel was correlated with the precipitation and segregation of the alloying elements.
机译:的Fe-3质量%Si系合金的二次再结晶之前的微观结构的特点是分析和析出物的晶界偏析元素。所用的样品是主要含有锰,硫,铝,氮和锡的Fe-3%Si系合金,将其脱碳退火到二次再结晶的片材。使用初次再结晶样品中晶界偏析进行了研究俄歇电子能谱(AES),和使用进行了分析沉淀物的透射电子显微镜(TEM)用能量分散型X射线光谱仪(EDX)。 AES光谱表明锡和氮富集在所述的Fe-3质量%Si系合金的晶界。 TEM / EDX分析表明,细的形态和分布沉淀如硫化锰和氮化铝通过添加锡的影响。由晶粒取向硅钢的二次再结晶形成的特征结构被认为是由微细析出物和元素的少量的偏析的影响,作为硅钢的晶界的异常运动用的沉淀和分离相关合金元素。

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