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Feeding and Distribution of Porosity in Cast Al-Si Alloys as Function of Alloy Composition and Modification

机译:铸造铝硅合金中气孔的进给和分布与合金成分和变质的关系

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摘要

Unmodified, Na-modified, and Sr-modified castings of Al-7 pct Si and Al-12.5 pct Si alloys were cast in molds in which it was possible to create different cooling conditions. It is shown how solidification influences the distribution of porosity at the surface and the center of the castings as a function of modification and Si content in sand- and chill-cast samples. Eutectic modification, Si content, and cooling conditions have a great impact on the distribution of porosity. Unmodified and Na-modified castings are more easily fed with porosity tending to congregate near the centerline of the casting, while Sr-modified castings solidify in a mushy manner that creates a more homogeneous distribution of porosity in the casting. The amount of porosity was highest in the Sr-modified alloys, lower in the Na-modified alloys, and lowest in the unmodified alloys. The size of the porosity-free layer and the effectiveness of the feeders were greater in the castings made with the steel chills due to the increased thermal gradients and consequent increase in the directionality of solidification.
机译:在模具中铸造Al-7 pct Si和Al-12.5 pct Si合金的未改性,Na改性和Sr改性铸件,可以在其中创建不同的冷却条件。结果表明,凝固如何影响铸件表面和中心的孔隙率分布,作为砂型和冷铸型样品中改性和硅含量的函数。共晶改性,Si含量和冷却条件对孔隙率分布有很大影响。未改性的和Na改性的铸件更容易充填有趋于聚集在铸件中心线附近的孔隙率,而Sr改性的铸件以糊状凝固,从而在铸件中产生更均匀的孔隙率分布。孔隙率在Sr改性合金中最高,在Na改性合金中较低,而在未改性合金中最低。由于增加的热梯度以及随之而来的凝固方向性的增加,在用钢冷水制造的铸件中,无孔层的尺寸和冒口的有效性更大。

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