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Structure Characteristics of Silicon Alloyed Ductile Cast Iron

机译:硅合金铸铁硅的结构特征

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Experiments deal with the solidification pattern of FeSiCaMgRE-treated and un-inoculated and inoculated [Ca,Ce,S,0-FeSi] three ductile iron compositions [2.5%Si; 4%Si and 4%Si-1.6%Mo (Si:Mo=2.5)]. Structure analysis is performed in 20mm diameter bar, resin sand mould solidification. Increasing of the Si content leads to increasing the graphite amount. Mo addition in high Si-iron limits the graphitizing effect of Si, but the graphite amount remains higher compared with conventional iron. A similar evolution is registered for graphite nodule count, while Si-Mo iron has lower nodule count compared with referred iron. For the same production conditions, graphite nodularity [according to ISO 945 evaluation] is negatively affected by Si and Si-Mo: it decreases from 95% up to 80% value, but remains at the accepted level, which means that the selected inoculant seems to be effective in these irons. For high Si-ductile irons, the nodularity evaluation must be more carefully considered, by including a minimum limit of the accepted sphericity shape factor. Increasing of the Si content leads to a prevalent ferritic matrix. Supplementary addition of Mo at the upper limit in Si-Mo affects the ferritic effect of Si, resulting an intermediary ferrite and pearlite mixture. It is found that inoculation is important for high-Si, and particularly for Si-Mo alloyed irons, requiring a high efficiency inoculation procedure.
机译:实验处理的凝固图案FeSiCaMgRE处理的和未接种和接种的[Ca,铈,S,O-硅铁] 3球墨铸铁组合物[2.5%的Si; 4%的Si和4%的Si-1.6%的Mo(SI:钼= 2.5)]。结构分析在直径20mm的棒进行,树脂砂模凝固。 Si含量引线的提高增加的石墨量。与常规的铁相比,添加Mo在高Si铁限制Si的石墨化作用,但石墨保留量更高。类似的进化被登记为石墨球数,同时用称为铁相比硅钼铁具有较低的球数。出于同样的生产条件下,石墨球化率[根据ISO 945评价]负由Si和硅钼影响:它从95%减小到80%的值,但仍保持在可接受的水平,这意味着所选择的孕育剂似乎可有效地这些铁杆。对于高Si-球墨铸铁时,球化率评价必须更仔细地考虑,通过包括接受球体形状因数的最小极限。 Si含量引线提高到一个普遍的铁素体基体。补充添加Mo在硅钼上限影响Si的铁素体的效果,从而导致中间铁素体和珠光体的混合物。据发现,接种是重要的高的Si,和特别是用于硅钼合金铁杆,需要高效率接种程序。

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