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Investigation on properties and microstructures of spheroidal graphite Fe-C-2Si and Fe-C-2Al cast irons

机译:球墨铸铁Fe-C-2Si和Fe-C-2Al的性能和组织研究

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In this study, two types of spheroidal graphite cast irons were cast in a resin-bonded mould prepared by using a 1m long fluidity pattern having different section thicknesses. The lengths of cast specimens were measured to determine the fluidity lengths and were X-rayed to see the porosity /void in the cast specimens. Density of each casting along the length was also determined. The experimental results show that the fluidity length of Fe-C-2Si cast iron is higher than that of Fe-C-2Al cast iron irrespective of section thickness. At the same time, as the section thickness increases, the density decreases indicating that the shrinkage porosity increases for both systems. It is also found that the amount of shrinkage porosity is more for the Fe-C-2Al cast iron than that of the Fe-C-2Si cast iron. As the section thickness increases, the presence of carbide in the microstructure decreases and that of the pearlite increases for both cast irons. However, the degree of nodularity for the graphite and the ferrite rings are better in the matrix structure of the SG-Si cast iron compared to those for the SG-Al cast iron. The overall results show that the solidification characteristics of the Fe-C-Al alloy system are more complicated than those of the silicon bearing system. Thus, special inoculation technique and feeding arrangement need to be adopted to produce spheroidal graphite aluminium cast iron.
机译:在这项研究中,将两种类型的球墨铸铁铸入树脂粘结模具中,该模具是使用具有1m长的具有不同截面厚度的流动性图案制备的。测量铸件试样的长度以确定流动性长度,并用X射线检查铸件试样的孔隙/空隙。还确定了沿长度方向的每个铸件的密度。实验结果表明,无论截面厚度如何,Fe-C-2Si铸铁的流动性长度都比Fe-C-2Al铸铁的流动性长度长。同时,随着截面厚度的增加,密度降低,表明两种体系的收缩孔隙率均增加。还发现,Fe-C-2Al铸铁的收缩孔隙率比Fe-C-2Si铸铁的收缩孔隙率更大。随着截面厚度的增加,两种铸铁的显微组织中碳化物的存在减少,珠光体的存在增加。但是,与SG-Al铸铁相比,SG-Si铸铁的基体组织中的石墨和铁素体环的球化度更好。总体结果表明,Fe-C-Al合金系统的凝固特性比含硅系统的凝固特性更为复杂。因此,需要采用特殊的接种技术和进料方式来生产球形石墨铝铸铁。

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