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Graphite Nucleation in Compacted Graphite Cast Iron

机译:压实石墨铸铁的石墨成核

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摘要

During the last several decades, a multitude of theories have attempted to explain the process of graphite nucleation in lamellar (LG) and spheroidal (SG) graphite iron castings. Nevertheless, the complex 3D morphology of compacted graphite (CG) has hindered significant advances in similar theories for this type of graphite. To bring clarity to this issue, interrupted solidification experiments were conducted on compacted graphite irons at two different levels of titanium content in the melt (0.008% and 0.037%), with and without addition of commercial inoculants (Ce, MnZr). Nucleation sites were characterized through detectors, spectrums, mapping, and line scans utilizing FEG-SEM equipment. It was found that the nature of the inclusions acting as nucleation sites is directly related to the titanium content in the base metal. Nucleation in samples with low level of Ti occurs on Mg-Ca sulfides or Mg-Si-Al nitrides, which usually appear alone and seem to affect the growth of graphite. In the case of high percentage of Ti, double inclusions formed by Ti carbonitrides growing on Mg-Ca sulfides and restricting their growth seem to be the best combination for the nucleation of graphite. This is in line with our earlier findings for spheroidal graphite.
机译:在过去的几十年中,多种理论试图解释层状(LG)和球形(SG)石墨铁铸件中石墨成核的过程。然而,压实石墨(CG)的复杂3D形态已经阻碍了这种类型石墨的类似理论的显着进展。为了提高本问题,在熔融(0.008%和0.037%)的两种不同水平的钛含量下进行中断的凝固实验,在熔体(0.008%和0.037%),有和不添加商业植物(Ce,MnZr)。通过使用FEG-SEM设备的探测器,光谱,映射和线扫描表征成核位置。结果发现,作为成核位点的夹杂物的性质与基础金属中的钛含量直接相关。在Mg-Ca硫化物或Mg-Si-Al氮化物上发生具有低水平Ti的样品中的成核,其通常单独出现并且似乎影响石墨的生长。在高百分比的Ti百分比的情况下,通过在Mg-Ca硫化物上生长的Ti碳氮化物形成的双夹杂物并限制其生长似乎是石墨核化成核的最佳组合。这符合我们的前期球形石墨的研究结果。

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