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Metallographic Assessment of Al-12Si High-Pressure Die Casting Escalator Steps

机译:Al-12Si高压压铸扶梯台阶的金相评估

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摘要

A microstructural characterization study was performed on high-pressure die cast specimens extracted from escalator steps manufactured from an Al-12 wt.% Si alloy designed for structural applications. Black and white, color light optical imaging and scanning electron microscopy techniques were used to conduct the microstructural analysis. Most regions in the samples studied contained globular-rosette primary α-Al grains surrounded by an Al-Si eutectic aggregate, while primary dendritic α-Al grains were present in the surface layer. This dendritic microstructure was observed in the regions where the melt did not impinge directly on the die surface during cavity filling. Consequently, microstructures in the surface layer were nonuniform. Utilizing physical metallurgy principles, these results were analyzed in terms of the applied pressure and filling velocity during high-pressure die casting. The effects of these parameters on solidification at different locations of the casting are discussed.
机译:对高压压铸试样进行了微结构表征研究,该试样是从自动扶梯台阶上提取的,该扶梯台阶是为结构应用设计的Al-12 wt%Si合金制成的。黑白,彩色光光学成像和扫描电子显微镜技术被用于进行显微结构分析。所研究样品中的大多数区域都包含被Al-Si共晶聚集体包围的球状的初生α-Al晶粒,而表层中存在初生的树枝状α-Al晶粒。在空腔填充期间熔体没有直接撞击到模具表面的区域中观察到这种树枝状微观结构。因此,表层的微观结构不均匀。利用物理冶金原理,对高压压铸过程中施加的压力和填充速度进行了分析。讨论了这些参数对铸件不同位置凝固的影响。

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