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Microstrtictural Study of as-cast Fe-Si Alloys. Effect of Percentage of Silicon

机译:铸造Fe-Si合金的微三r型研究。硅百分比的影响

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Silicon steels are materials used in construction of electric motors and transformers. Silicon is an effective element to improve the electrical and magnetic properties. During the solidification stage is defined the distribution of solute on the solid as segregation or coring. This paper researched the effect of the percentage of silicon on the microstructure and segregation profiles of the Fe-0.5wt%Si, Fe-1.5wt%Si and Fe-3wt%Si cast alloys. The samples were metallographically prepared by conventional techniques. The concentration of silicon in grain boundary regions was carried out by scanning electron microscopy (SEM) with EDS-WDS microanalysis, the morphological changes of the grain as a function of silicon was evaluated by optical microscopy. Experimental microsegregation patterns showed significant difference from the Scheil model and greater agreement with this model when considering convective-diffusive conditions. The microstructural study revealed discrepancies with the solidification pattern governed by the solidification interval.
机译:硅钢是用于电动机和变压器的建筑的材料。硅是改善电磁性和磁性的有效元素。在凝固阶段,定义溶质在固体上的分布作为偏析或芯。本文研究了硅百分比对Fe-0.5wt%Si,Fe-1.5wt%Si和Fe-3wt%Si铸造合金的微观结构和分离型材的影响。样品通过常规技术进行金相制备。通过扫描电子显微镜(SEM)与EDS-WDS微分分析进行晶界区域中硅浓度,通过光学显微镜评估作为硅的函数的晶粒的形态变化。实验微量测定模式与Scheil模型显示出显着差异,并在考虑对流 - 扩散条件时与该模型更加一致。微观结构研究揭示了凝固间隔控制的凝固模式的差异。

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