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Theoretical - Experimental Analysis of Cellular and Primary Dendritic Spacings during Unidirectional Solidification of Sn-Pb Alloys

机译:Sn-Pb合金单向凝固过程中细胞和主要树突间距的理论-实验分析

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摘要

Structural parameters as grain size, dendritic and cellular spacings, segregated products, porosity and other phases are strongly influenced by the thermal behavior of the metal/mold system during solidification, imposing a close correlation between this and the resulting microstructure. Several unidirectional solidification studies with the objective of characterizing cellular and dendritic spacings have been developed in large scale involving solidification in steady-state heat flow. The main objective of this work is to determine the thermal solidification parameters during the cellular/dendritic transition as well as to compare theoretical models that predict cellular and primary dendritic spacings with experimental results for solidification situations in unsteady-state heat flow. Experiments were carried out in a water cooled unidirectional solidification apparatus and dilute alloys of the Sn-Pb system were used (Sn 1.5wt%Pb, Sn 2.5wt%Pb and Sn 5wt%Pb). The upper limit of the Hunt-Lu cellular growth model closely matched the experimental spacings. The lower limit calculated with the Hunt-Lu dendritic model best generated the experimental results. The cellular/dendritic transition was observed to occur for the Sn 2.5wt%Pb alloy over a range of analytical cooling rates from 0.28 K/s to 1.8 K/s.
机译:凝固过程中,金属/模具系统的热行为会严重影响结构参数,例如晶粒尺寸,枝晶和晶胞间距,偏析产物,孔隙率和其他相,这与所形成的微观结构密切相关。为了表征细胞和树突间距的目的,已经进行了一些大规模的单向凝固研究,涉及稳态热流中的凝固。这项工作的主要目的是确定细胞/树突过渡过程中的热凝固参数,并将预测细胞和主要树突间距的理论模型与非稳态热流中凝固情况的实验结果进行比较。在水冷单向凝固设备中进行实验,并使用Sn-Pb系统的稀合金(Sn 1.5wt%Pb,Sn 2.5wt%Pb和Sn 5wt%Pb)。 Hunt-Lu细胞生长模型的上限与实验间隔紧密匹配。用Hunt-Lu树突模型计算的下限最能产生实验结果。在分析冷却速率为0.28 K / s至1.8 K / s的范围内,观察到Sn 2.5wt%Pb合金发生了细胞/树枝状转变。

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