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Micro-CT Quantitative Evaluation of Graphite Nodules in SGI

机译:SGI中石墨结节的微型CT定量评价

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摘要

The quality of spheroidal graphite cast iron (SGI) castings is directly related to the morphology of graphite nodules. Therefore, accurate and comprehensive quantitative evaluation of microstructure is critical for industrial practices. The most influential morphological characteristics of the graphite phase in SGI can be divided into three categories: (1) shape and size of individual graphite nodules, (2) total volume of graphite phase and nodule number, and (3) spatial distribution. During the last decades, SGI structure analysis has progressed from visual observation of polished cross section and quantitative 2D techniques (metallography and automated SEM/EDX) to observation of the real 3D structure using micro-computed tomography (mu CT) scanning. In this article, 2D and 3D morphological characteristics of graphite nodules were determined by mu CT scanning and compared. 3D mu CT provides accurate characterization of the real shape factor and diameter of graphite nodules. It was shown that large and small graphite nodules in inoculated SGI have the different modes of space distribution which could be linked to casting solidification.
机译:球形石墨铸铁(SGI)铸件的质量与石墨结节的形态直接相关。因此,对微观结构的准确和综合定量评估对于工业实践至关重要。 SGI中石墨相的最有影响力的形态特征可分为三类:(1)单个石墨结节的形状和尺寸,(2)石墨相和结节数的总体积,以及(3)空间分布。在过去几十年中,SGI结构分析从抛光横截面和定量2D技术(金相和自动化SEM / EDX)的视觉观察开始,以使用微计算机断层扫描(MU CT)扫描来观察真正的3D结构。在本文中,通过Mu CT扫描确定石墨结节的2D和3D形态特征并进行比较。 3D MU CT提供了石墨结节的真实形状因子和直径的精确表征。结果表明,接种SGI中的大型和小型石墨结节具有不同的空间分布模式,其可以与铸造凝固相关联。

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