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Effect of Bismuth on Preventing Chunky Graphite in High-Silicon Ductile Iron Castings

机译:铋对高硅韧性铁铸件中浅色石墨的影响

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The effect of Bi level on the macro- and microstructure of thick-walled high-silicon ductile iron castings has been investigated, as well as the influence of chunky graphite on the mechanical properties. Influence of cooling rate on graphite morphology was also investigated. High silicon level has caused the formation of chunky graphite, in very high amounts, along the entire cross section of the casting. Microstructure reveals that the addition of Bi affects not only the reduction of chunky graphite amount, but also the distribution along the casting cross section which is not uniform any more as in the casting without Bi. When Bi is added, the zone with chunky graphite appears independently of the cooling rate. Positive effect of Bi on the reduction of chunky graphite has been shifted towards higher levels, from 0.006 to 0.01 wt% Bi. Higher levels of Bi are more efficient also for the improvement in spheroidal morphology of graphite. The addition of 0.01 wt% Bi gave the best results, while the Ce/Bi ratio amounted to 0.6. This paper has proven that Bi acts on the increase in the strength values also in the high-silicon ductile iron casting. According to microstructure observations, it can be concluded that eutectic cells of chunky graphite are formed during bulk eutectic reaction. First, the primary graphite nodules are precipitated, followed by the initial phase of eutectic reaction during which the austenite dendrites precipitate and grow encapsulating at the same time primary graphite nodules.
机译:研究了BI水平对厚壁高硅球墨铸铁铸件的宏观和微观结构的影响,以及厚实石墨对机械性能的影响。还研究了冷却率对石墨形态的影响。高硅电平导致沿着铸件的整个横截面形成块状石墨的形成。微观结构表明,BI的添加不仅影响块状石墨量的减小,而且还影响沿铸造横截面的分布,所述铸造横截面不再均匀,而不是没有BI的铸造。添加BI时,具有块状石墨的区域独立于冷却速率出现。 BI对厚实石墨的减少的积极作用已向较高的水平移位,0.006至0.01wt%BI。较高水平的BI也更有效地用于石墨的球形形态的改善。添加0.01wt%BI产生了最佳效果,而CE / Bi比相当于0.6。本文证明,BI对高硅球墨铸铁铸造的强度值的增加。根据微观结构观察,可以得出结论,在散装共晶反应期间形成粗石墨的共晶细胞。首先,沉淀出初级石墨结节,然后进行共晶反应的初始相,在此期间奥氏体树枝状酸淀粉沉淀并在同一时间初级石墨结节中包封。

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