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Solidification and microstructure characterizations of eutectic aluminum-silicon casting alloy with the addition of tin

机译:共晶铝 - 硅铸造合金加入锡的凝固及微观结构特征

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摘要

The effects of tin (Sn) addition on aluminum-silicon and alpha-aluminum phase solidification parameters as well as eutectic aluminum-silicon casting alloy microstructure are systematically investigated. In this research, these characteristic parameters are examined by using computer-aided cooling curve thermal analyses. The results of microstructure analyses and cooling curves show that tin alters silicon structure. By increasing the amount of tin up to 1 wt.%, alpha-aluminum phase nucleation temperature, aluminum-silicon phase growth temperature, and last phase solidus temperature increase. The mean area of silicon particles decreases when 0.1 wt.% tin is added but by its further increasing up to 1 wt.%, silicon particle mean area increases. It means that increase of tin content does not lead to silicon structure modification in this type of aluminum-silicon alloy. Besides, by increasing the amount of tin, the reaction temperature of the last phase is increased by the formation of intermetallic compounds such as ternary compounds (Al-Si-Sn).
机译:系统地研究了锡(Sn)加入锡(Sn)的效果以及α-铝相凝聚参数以及共晶铝 - 硅铸造合金微观结构。在该研究中,通过使用计算机辅助冷却曲线热分析来检查这些特征参数。微观结构分析和冷却曲线的结果显示锡改变硅结构。通过将锡的量增加至1wt%,α-铝相成核温度,铝 - 硅相生长温度和最后相固相温度升高。当0.1重量%时,硅颗粒的平均面积降低。加入%锡,但通过其进一步增加至1wt%。%,硅粒子平均面积增加。这意味着锡含量的增加不会导致这种类型的铝 - 硅合金中的硅结构改性。此外,通过增加锡的量,通过形成金属间化合物如三元化合物(Al-Si-Sn),增加了上阶段的反应温度。

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