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Microstructure of Compacted Graphite Iron Near Critical Shrinkage Areas in Cylinder Blocks

机译:压实石墨铁的微观结构靠近圆柱体临界收缩区域

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摘要

To study the microstructure of CGI near areas prone to shrinkage, a special sample was developed that resembles critical areas in cylinder blocks. Foundry trials were conducted with different magnesium contents and inoculation amounts. Using color etching techniques to follow the solidification sequence, four areas were observed with different macrostructure: (i) direct chill and columnar region near the surface; (ii) small eutectic cells and small intercellular space; (iii) large eutectic cells and large intercellular space; and (iv) eutectic cells with carbides in the last to freeze area. By increasing the amount of inoculation, the size of the eutectic cells in the zone with large eutectic cells (iii) is reduced, and the eutectic cells are now smaller and more evenly distributed through the section. Increasing the magnesium content brings a similar effect. In zone (iv), the samples with less inverse chill formation show smaller shrinkage porosities, which are located in the same regions where the inverse chill are, between the eutectic cells, in the last to freeze areas; they also have higher amounts of spheroidal graphite in the last-to-freeze areas. The amount of inverse chill carbides observed in zone (iv) did not present any clear relation with inoculation levels or magnesium content variations used in the experiments.
机译:为了研究容易收缩的区域附近CGI的微观结构,开发了一种特殊的样本,其类似于圆柱体中的临界区域。用不同的镁含量和接种量进行铸造试验。利用颜色蚀刻技术跟随凝固序列,用不同的宏观结构观察到四个区域:(i)表面附近的直接寒冷和柱状区域; (ii)小共晶细胞和小细胞间隙; (iii)大的共晶细胞和大的细胞间空间; (IV)含有碳化物的共晶细胞,最后是冻结区域。通过增加接种量,降低了具有大共晶细胞(III)的区域中的共晶细胞的大小,并且其较小且更均匀地分布通过该部分。增加镁含量带来了类似的效果。在区域(iv)中,具有较少逆冷却形成的样品显示出较小的收缩孔隙孔,其位于与冻结区域的共晶细胞之间的相反寒冷的相同区域中;它们在最后一冻地区也具有较高量的球形石墨。在区域(IV)中观察到的逆寒碳化物的量并未出现与实验中使用的接种水平或镁含量变化的任何明确的关系。

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