Influence of AlNb3.5B0.4 Grain Refinement on the Precipitation of Fe-rich Intermetallics in a secondary AlSi7Mg Alloy

G. Scampone, O. Gursoy, R. Cerato, G. Timelli
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Abstract

Aluminum-silicon alloys are important materials in foundry to produce light components to be used in the automotive industry for weight saving, reduction of carbon emission from vehicles and air pollution. The mechanical properties of these alloys are strictly related to the final microstructure that can be improved by grain refinement. However, the addition of specific grain refiners can promote the formation of Fe-rich compounds with platelet morphology, which can significantly affect the ductility of the alloy. In the present research, the effect of AlNb3.5B0.4 grain refiner on the formation of Fe-rich intermetallics in a secondary AlSi7Mg alloy was investigated. Metallographic and image analysis techniques were used to quantitatively investigate the microstructural variations occurring with the addition of grain-refining agent at different cooling rates. The results show that the α-Fe compounds are the dominant Fe-rich phase in the secondary AlSi7Mg alloy. On the other side, the addition of AlNb3.5B0.4 grain refiner promotes the precipitation of β-Fe platelets at the expense of Chinese script α-Fe particles. This mechanism is even more evident at higher cooling rates. The AlNb3.5B0.4 grain refinement significantly affects the number density of β-Fe compounds but it does not influence their dimensions. The size of β-Fe particles appears to be sensitive to the change of the cooling rate; higher cooling rate refines the microstructural scale as well as the Fe-rich platelets. The addition of AlNb3.5B0.4 produces a fine and uniform grain structure throughout the alloy and this effect is more pronounced in the slowly solidified material. Increasing the cooling rate, lower amounts of grain refiner are needed to produce a uniform grain size throughout the casting.
AlNb3.5B0.4晶粒细化对二次AlSi7Mg合金中富铁金属间化合物析出的影响
铝硅合金是铸造生产轻型零部件的重要材料,用于汽车工业,以减轻重量,减少汽车碳排放和空气污染。这些合金的力学性能与最终组织密切相关,而最终组织可以通过细化晶粒来改善。然而,特定晶粒细化剂的加入会促进富铁化合物形成具有血小板形态,从而显著影响合金的延展性。本文研究了AlNb3.5B0.4晶粒细化剂对二次AlSi7Mg合金中富铁金属间化合物形成的影响。采用金相和图像分析技术定量研究了在不同冷却速率下晶粒细化剂的加入所引起的显微组织变化。结果表明:α-Fe化合物是次生AlSi7Mg合金中主要的富铁相;另一方面,AlNb3.5B0.4晶粒细化剂的加入促进了β-Fe血小板的析出,而牺牲了汉字α-Fe颗粒。这种机制在较高的冷却速率下更为明显。AlNb3.5B0.4晶粒细化显著影响β-Fe化合物的数量密度,但不影响其尺寸。β-Fe颗粒的大小对冷却速率的变化较为敏感;较高的冷却速率细化了微观结构尺度以及富铁的血小板。AlNb3.5B0.4的加入使整个合金具有细小均匀的晶粒组织,这种效果在缓慢凝固的材料中更为明显。提高冷却速度,减少晶粒细化剂的用量,在整个铸件中产生均匀的晶粒尺寸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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