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Microstructural Morphology Changes of the Lead-Tin Eutectic Alloy by Different Undercooling Levels

机译:不同过冷度下铅锡共晶合金的组织形态变化

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Experimental work is described in undercoolings and microstructures of Pb-Sn eutectic alloy droplets emulsified in oil bath. By controlling experimental variables, the final droplet size produced was in the range of 10 to 300 mu m, and measured undercoolings ranged up to about 70 K. Microstructures of the droplets depend strongly on the degree of undercooling before solidification. By increasing undercooling, three major microstructure transitions, which include the morphological changes of eutectic phase from lamellar to anomalous in lower undercooling level and of primary alpha-Pb phase from dendrite to equiaxed grains in higher undercooling levels, are observed. The phase change from eutectic to primary a-Pb dendrite plus eutectic is also observed. The physical mechanism of these microstructure transitions is analyzed on the basis of the Lipton-Kurz-Trivedi theory for dendrite growth and the Jackson-Hunt theory for lamellar eutectic growth.
机译:在油浴中乳化的Pb-Sn共晶合金微滴的过冷和微观结构中描述了实验工作。通过控制实验变量,最终产生的液滴尺寸在10至300μm的范围内,测得的过冷度高达70K。液滴的微观结构在很大程度上取决于固化前的过冷度。通过增加过冷度,观察到三个主要的微观结构转变,包括较低的过冷度下从层状相向反常相的共晶相的形态变化,以及在较高的过冷度下从枝晶向等轴晶相的初生α-Pb相的形态变化。还观察到从共晶到初生a-Pb枝晶加共晶的相变。这些微观结构转变的物理机理是基于Lipton-Kurz-Trivedi理论用于枝晶生长和Jackson-Hunt理论用于层状共晶生长的。

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