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UNDERCOOLING OF RAPIDLY SOLIDIFIED DROPLETS AND SPRAY FORMED STRIPS OF Al-Cu (Sc)

机译:过冷却迅速凝固的液滴和Al-Cu(SC)的喷雾形成条带

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Impulse Atomization (IA) (a single fluid atomization technique) was used to rapidly solidify Al-4.5wt%Cu and Al-4.5wt%Cu-0.4wt%Sc under argon atmosphere. In addition to the IA-generated droplets, the same technique was used to produce strips by Spray Deposition (SD) of the same alloys on a copper substrate with and without oil coating. The rapid solidification microstructures were analyzed using Scanning Electron Microscopy (SEM). From the SEM images, the amount of eutectic and the secondary dendrite arm spacing (SDAS) were measured. These SDAS results lead to the estimation of cooling rate. The eutectic fraction coupled with the metastable extension of the solidus and liquidus lines of Al-Cu (Sc) phase diagram lead to the estimation of primary and eutectic undercoolings. A comparison of the solidification path of the droplets and the strips was done as well as the analysis of the effects of scandium.
机译:脉冲雾化(IA)(单一流体雾化技术)用于在氩气氛下快速固化Al-4.5wt%Cu和Al-4.5wt%Cu-0.4wt%sc。除了IA-产生的液滴之外,使用相同的技术通过喷射沉积(Sd)在具有和不具有油涂层的铜基材上的相同合金的喷射沉积(SD)。使用扫描电子显微镜(SEM)分析快速凝固微观结构。从SEM图像,测量共晶和二牙齿臂间距(SDA)的量。这些SDA结果导致冷却速率的估计。与Al-Cu(SC)相位图的固体和液相线的亚稳延伸偶联的共晶馏分导致初级和共晶过废除过冷却。完成了液滴和条带的凝固路径的比较以及钪的影响分析。

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