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Precipitation Structure of Al-10 mass%Si-0.3 mass%Mg Alloy Produced by High Pressure Die Casting and Permanent Mold Casting with T5 Treatment

机译:T5处理的高压压铸和永久压铸的Al-10质量%Si-0.3质量%Mg合金的析出组织

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摘要

The precipitation structures in as-cast and T5-treated specimens of high pressure die casting and permanent mold casting in Al-10mass%Si-0.3mass%Mg alloys were investigated using transmission electron microscopy (TEM) and field emission scanning electron microscopy (FE-SEM). No precipitates were observed in any of the as-cast materials. Fine needle-shaped precipitates, coarse rod-shaped precipitates, and granular precipitates were observed in all peak-aged specimens, which are thought to be the main cause of the increase in hardness during T5 treatment. These precipitates became finer near the eutectic phases than inside the alpha-Al phase cells, because the contact interface between the alpha-Al phase and the eutectic Si phase can be considered to become an area of vacancy sink and inhibit the growth of the precipitates. It became clear that almost all the precipitates in the die cast and the permanent mold cast specimens of this alloy were not due to the as-cast heat; rather, they were generated by the T5 treatment.
机译:使用透射电子显微镜(TEM)和场发射扫描电子显微镜(FE)研究了Al-10mass%Si-0.3mass%Mg合金在高压压铸和永久铸模铸造和T5处理的试样中的沉淀结构。 -SEM)。在任何铸态材料中均未观察到沉淀。在所有峰龄试样中均观察到细的针状沉淀,粗棒状沉淀和颗粒状沉淀,这被认为是T5处理过程中硬度增加的主要原因。这些析出物在共晶相附近比在α-Al相晶胞内部更细,因为可以认为α-Al相和共晶Si相之间的接触界面成为空位沉陷的区域并抑制了析出物的生长。显然,该合金的压铸件和永久铸模样品中几乎所有的析出物都不是由于铸态热引起的。而是由T5处理产生的。

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