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Investigation of Orientation Inhomogeneities in Polycrystalline Materials by means of FEG-SEM, FIB, EBSD and 3-D Reconstruction

机译:用FEG-SEM,FIB,EBSD和3-D重建研究多晶材料取向inhomenesities

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The efficiency of different techniques application for the investigation of orientation inhomogeneities in polycrystalline materials was studied using FEG SEM-FIB dual beam station equipped with EBSD. It is shown that for the visualization of pearlitic ferrite fragments it is more appropriate to acquire the images in secondary electrons induced by Ga ions. At the same time for the visualization of nano-sized particles it is more prospective to use images in forward scatter electrons in combination with IQ maps. It is established that pearlitic ferrite fragments are not flat. Complicated spatial configuration of orientation inhomogeneities in pearlitic ferrite is shown by means of 3-d reconstruction. The features of ferrites aggregation are revealed depending on pearlitic ferrite fragmentation criterion. The existence of long-range misorientations in the aggregation area of proeutectoid and pearlitic ferrites is shown.
机译:使用配备有EBSD的FEG SEM-FIB双光束站研究了不同技术应用对多晶材料中取向不均匀性的研究的效率。结果表明,对于珠光体铁氧体片段的可视化,更合适地获取由Ga离子引起的二次电子中的图像。同时为了可视化纳米尺寸粒子,它更具前瞻性,可以与智商映射结合使用向前散射电子中的图像。建立珠光体铁氧体碎片不平坦。通过3-D重建表示珠光体铁氧体中取向不均匀性的复杂空间配置。根据珠光体铁氧体碎片标准揭示了铁氧体聚集的特征。显示了Proeutectoid和珠光体铁氧体的聚集区域中的远程错误化的存在。

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