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A General Formulation of Eutectic Silicon Morphology and Processing History

机译:共晶硅形态和加工历史的一般表述

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Understanding the influence of rapid solidification conditions on the formed microstructure is important to determine how process conditions affect the final mechanical properties. In this work the rapid solidification of hypoeutectic and hypereutectic Al-xSi (x = 10, 18 wt%) alloys was achieved using Impulse Atomization (IA). The resultant microstructures were examined and from this analysis a wide range of eutectic Si morphologies and length scales were observed. These results were further analyzed using 2 mathematical approaches to help quantify the experienced eutectic growth kinetics (i.e. growth rate and cooling rate), along with the thermal history of the powders. In the case of the hypereutectic Al-Si alloy distinct microstructure zones were observed. These distinct zones were used to determine the nucle-ation undercooling using combined concepts of the coupled zone in Al-Si alloys and the hypercooling limit of a melt. Here, a region of fine eutectic, α-Al+Si, is observed and is believed to be the first solids that precipitated directly from the undercooled melt and grew during recalescence. Following recalescence, a coarser structure of Si particles and eutectic developed. Within this work, the solidification paths of both hypo and hypereutectic Al-Si alloys will be outlined and a generalized approach to relate the shape of the eutectic Si to processing conditions will be presented.
机译:了解快速凝固条件对所形成的微结构的影响对于确定工艺条件如何影响最终的机械性能非常重要。在这项工作中,使用脉冲雾化(IA)实现了亚共晶和过共晶Al-xSi(x = 10,18 wt%)合金的快速凝固。检查了所得的微观结构,并从该分析中观察到了广泛的共晶硅形态和长度尺度。使用2种数学方法进一步分析了这些结果,以帮助量化经历的共晶生长动力学(即生长速率和冷却速率)以及粉末的热历史。在过共晶Al-Si合金的情况下,观察到明显的微观结构区域。这些不同的区域用于结合Al-Si合金中耦合区域的概念和熔体的过冷极限来确定成核过冷。在这里,观察到一个细小的共晶区域,即α-Al+ Si,被认为是直接从过冷熔体中沉淀出来并在重新形成过程中生长的第一批固体。复光后,形成了较粗的Si颗粒和共晶结构。在这项工作中,将概述次共晶和过共晶Al-Si合金的凝固路径,并提出将共晶Si的形状与加工条件相关联的通用方法。

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