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Relationship between casting modulus and grain size in cast A356 aluminium alloys

机译:铸造A356铝合金的铸造模量与晶粒尺寸的关系

摘要

Microstructure of Al-Si alloy castings depends most generally on melt preparation and on the cooling rate imposed by the thermal modulus of the component. In the case of Al-Si alloys, emphasis is put during melt preparation on refinement of pro-eutectic (Al) grains and on modification of the Al-Si eutectic. Thermal analysis has been used since long to check melt preparation before casting, i.e. by analysis of the cooling curve during solidification of a sample cast in an instrumented cup. The conclusions drawn from such analysis are however valid for the particular cooling conditions of the cups. It thus appeared of interest to investigate how these conclusions could extrapolate to predict microstructure in complicated cast parts showing local changes in the solidification conditions. For that purpose, thermal analysis cups and instrumented sand and die castings with different thermal moduli and thus cooling rates have been made, and the whole set of cooling curves thus recorded has been analysed. A statistical analysis of the characteristic features of the cooling curves related to grain refinement in sand and die castings allowed determining the most significant parameters and expressing the cube of grain size as a polynomial of these parameters. After introduction of a further parameter quantifying melt refining an excellent correlation, with a R2 factor of 0.99 was obtained.
机译:Al-Si合金铸件的微观结构最普遍地取决于熔体制备以及取决于部件的热模量所带来的冷却速率。对于Al-Si合金,在熔体制备过程中将重点放在前共晶(Al)晶粒的细化和Al-Si共晶的改性上。长期以来一直使用热分析来检查浇铸前的熔体制备,即通过分析在仪器杯中浇铸的样品在凝固过程中的冷却曲线。然而,从这种分析得出的结论对于杯的特定冷却条件是有效的。因此,研究这些结论如何外推以预测在凝固条件下局部变化的复杂铸件的显微组织似乎显得很有趣。为此,制得了具有不同热模量并因此具有冷却速率的热分析杯以及仪表砂和压铸件,并分析了由此记录的整套冷却曲线。对与砂型和压铸件中晶粒细化相关的冷却曲线特征进行统计分析,可以确定最重要的参数,并将晶粒尺寸的立方表示为这些参数的多项式。在引入进一步的参数以量化熔体精炼之后,获得了极好的相关性,R2因子为0.99。

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