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Microstructures of a pressure die cast Al-8.5%Si-3.5%Cu alloy

机译:压力模铸铝铸铁Al-8.5%Si-3.5%Cu合金的微观结构

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摘要

Quantitative microstructural measurements of constituents of an Al-Si-Cu alloy, used to manufacture a part with thin sections by Pressure Die Casting (PDC), do not correspond to phase diagram calculations. A simulation of the liquid velocity when filling the mold was made in order to understand the relation between this parameter and pressure, cooling rate and the eutectic amount and morphology. Also, the microstructures of the same alloy solidified in a ceramic crucible (low cooling rate) and in a metal flask (high cooling rate) were compared to those obtained by PDC to analyze the role of pressure on the displacement of eutectic composition and formation of different eutectic morphologies. The amount of constituents varies with distance from the mold walls, producing higher or lower pressure zones, which may be estimated from the Al-Si phase diagram simulation at different pressures. As these pressures must be very high (similar to 2 CPa), a possible explanation for the displacement of the eutectic point is the combination of high cooling rate of the manufacturing process, entrapment of gases during solidification and influence of the alloying elements.
机译:用于制造具有压力压铸(PDC)的薄截面的组分的定量微观结构测量,用于制造具有薄截面(PDC)的部分,不对应于相图计算。制备填充模具时液体速度的模拟,以了解该参数和压力,冷却速率与共晶量和形态之间的关系。此外,将在陶瓷坩埚(低冷却速率)和金属烧瓶中固化的相同合金的微观结构与通过PDC获得的那些进行比较,分析压力对共晶组成的位移和形成的作用不同的共晶形态。成分的量随着距模具壁的距离而变化,产生较高或更低的压力区,可以从不同压力下的Al-Si相图模拟估计。由于这些压力必须非常高(类似于2个CPA),所以对共晶点的位移的可能解释是制造过程的高冷却速率,在凝固过程中夹紧气体的组合,以及合金元素的影响。

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