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Metastable phase formation from undercooled melt of Nd-Fe-B alloys

机译:Nd-Fe-B合金过冷熔体形成亚稳态相

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摘要

The undercooled melts of the Nd-Fe-B alloy, the chemical composition of which is stoichiometric Nd_2Fe_(14)B, solidified during free fall in a 26 m drop tube. The microstructures of the as-dropped samples were examined using X-ray diffraction analyzer and a scanning electron microscope with an energy dispersive X-ray analyzer. The microstructures were classified into two types: type I is the mixture of properitectic a-Fe and peritectic Nd_2Fe_(14)B, and type II is the monochromatic metastable phase having a crystal structure similar to that of rhombohedral Nd_2Fe _7 The samples cooled at relatively low cooling rates were observed to be type I and the samples cooled at relatively high cooling rates were observed to be type II. The high cooling rate followed by high undercooling facilitates the formation of the metastable phase directly in the undercooled melt. The critical conditions for the formation of the metastable phases in the undercooled melt are thermodynamically and kinetically discussed.
机译:Nd-Fe-B合金的过冷熔体,其化学成分为化学计量Nd_2Fe_(14)B,在26 m的下落管中自由下落期间凝固。使用X射线衍射分析仪和带有能量色散X射线分析仪的扫描电子显微镜检查滴下样品的微观结构。微观结构分为两种类型:I型是包晶的a-Fe和包晶的Nd_2Fe_(14)B的混合物,II型是具有类似于菱形Nd_2Fe _7晶体结构的单色亚稳态相。观察到低冷却速率是I型,观察到以较高冷却速率冷却的样品是II型。高冷却速率和高过冷度有助于直接在过冷熔体中形成亚稳相。在热力学和动力学上讨论了过冷熔体中亚稳相形成的关键条件。

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