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Dendritic growth in undercooled Ni-25 wt percent Pb alloy melts

机译:Ni-25重量百分比过冷的Pb合金熔体中的枝晶生长

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摘要

Undercooled dendritic growth of bulk Ni-25 wt percent Pb alloy was investigated. When the alloy was undercooled less than 50 K, the solidification microstructures were composed of common dendrites and interdendritic lead phase. When the undercooling was up to 77 K, rapidly directional "pseudo-couple" microstructure formed. With the undercooling increasing into the range of 132-240 K, uniformly precipitated fine lead particles resulted from primary supersaturated dendrites were observed. When the alloy was undercooled up to 308 K, refined granular grains with homogeneously distributed fine lead particles on it formed. By calculating the thermodynamic parameters based on the BCT model, it was found that the formation of "pseudo-couple" microstructure was owing to the directional growth of primary dendrites.
机译:研究了块状Ni-25 wt%Pb合金的过冷枝晶生长。当合金过冷至低于50 K时,凝固组织由常见的枝晶和枝晶间的铅相组成。当过冷度达到77 K时,形成了快速定向的“伪耦合”微结构。随着过冷度增加到132-240 K范围,观察到由一次过饱和树枝状结晶导致的均匀沉淀的细铅颗粒。当合金过冷至308 K时,会形成细晶粒,其上均匀分布着细铅颗粒。通过基于BCT模型计算热力学参数,发现“伪偶合”微观结构的形成是由于初生枝晶的定向生长。

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