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Competitive Nucleation and Growth Between the Primary and Peritectic Phases of Rapidly Solidifying Ni-Zr Hypoperitectic Alloy

机译:快速固化的Ni-ZR低质结构合金的初级和包层之间的竞争性成核和生长

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The Ni-16 at. pct Zr hypoperitectic alloy melt was substantially undercooled using an electromagnetic levitator and a drop tube. The undercooling-induced competitive growth between the primary Ni7Zr2 and peritectic Ni5Zr phases was revealed by observing of the recalescence process in situ and confirmed by analyzing the solidified microstructures, X-ray diffraction pattern as well as dendritic growth velocity. When the liquid undercooling is less than a critical value of 106 K, the primary Ni7Zr2 phase initially precipitates from the parent liquid, which is subsequently followed by the nucleation and growth of the peritectic Ni5Zr phase around it. The solidified microstructure consists of the Ni7Zr2 phase, the Ni5Zr phase, and inter-dendritic eutectics. The orientation relationship and interface characteristics of the Ni7Zr2 and Ni5Zr phases were investigated by electron backscatter diffraction (EBSD) and transmission electron microscopy (TEM). The EBSD results clearly demonstrate that the Ni7Zr2 and Ni5Zr phases have the parallel relationship of {111}Ni7Zr2 // {111}Ni5Zr. TEM analysis reveals that a large-scale flat interface exists between the Ni7Zr2 and Ni5Zr phases, indicating good lattice matching of the two phases along the phase boundary. Once the critical undercooling is exceeded, the peritectic Ni5Zr phase preferentially nucleates and grows from the undercooled melt by completely suppressing the formation of the primary Ni7Zr2 phase. The EBSD analysis shows that the peritectic Ni5Zr phase is highly orientated and its growth mode is almost parallel to the 110 directions. When containerlessly solidified during free fall, typical peritectic microstructures form in large droplets, while only peritectic phase appears in the small droplets. This result further confirms the strong competition between the primary and peritectic phases in the Ni-Zr hypoperitectic alloy induced by large undercoolings.
机译:NI-16在。 PCT ZR低质结构合金熔体基本上使用电磁悬浮器和滴管耗尽。通过观察原位的次振荡过程并通过分析凝固的微观结构,X射线衍射图以及树突生长速度来证实,通过观察到初级Ni7ZR2和包晶Ni5ZR相之间的过冷诱导的竞争性生长。当液体过冷小于106k的临界值时,初级Ni7zR2相最初从母体液体沉淀,随后将其含有含有颗粒和生长的晶态。凝固的微观结构由Ni7zR2相,Ni5zR相和树突间的共肠。通过电子反向散射衍射(EBSD)和透射电子显微镜(TEM)研究了Ni7ZR2和Ni5ZR相的取向关系和界面特性。 EBSD结果清楚地表明Ni7zR2和Ni5Zr相具有{111} Ni7zr2 // {111} Ni5zr的平行关系。 TEM分析显示,Ni7zR2和Ni5zr相之间存在大规模平面界面,表明沿相位边界的两个阶段的良好格子匹配。一旦超过临界过冷,晶的Ni5zr相就优先核肉,通过完全抑制原发性Ni7zR2相的形成,从过冷熔体生长。 EBSD分析表明,包层Ni5zr相位高度定向,其生长模式几乎平行于& 110&方向。当在自由落体过程中容器上凝固时,在大液滴中典型的包围微结构形成,而仅在小型液滴中出现包层。该结果进一步证实了大型过冷诱导的Ni-ZR低质结构合金中的初级和包层之间的强烈竞争。

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