Investigation on nonequilibrium crystallization of highly undercooled Cu–Ni–Co alloys

过冷 材料科学 等轴晶 过热 微观结构 电子背散射衍射 合金 冶金 结晶 热力学 物理
作者
Yongchao Hao,Xiaolong Xu,Qi Wu,Li Wu,Yuhong Zhao,Hua Hou
出处
期刊:Journal of materials research and technology [Elsevier BV]
卷期号:26: 654-665 被引量:1
标识
DOI:10.1016/j.jmrt.2023.07.219
摘要

Deep undercooling rapid solidification experiments of Cu-Ni-Co alloys were carried out using the molten glass purification cycle superheat method. 130 K, 177 K and 277 K undercooling degrees were obtained and analysed for Cu55Ni43Co2 alloy. The crystallographic information obtained by EBSD and the dynamics of the solidification front taken by high speed photography were analysed and it was concluded that both the formation of relatively rounded equiaxed grains during the first refinement and the subsequent formation of finer subcrystals were due to the release of a large amount of solidification energy during the solidification process. The re-glow stage releases a large amount of latent heat of solidification resulting in the remelting of the dendrites. TEM tests were carried out on Cu55Ni43Co2 alloy with a maximum undercooling of 277 K. It was found that part of the substructure showed a high density dislocation network. By analysing the effect of increasing undercooling on the microstructure evolution, combined with the EBSD and TEM characterisation data, it was found that the stress-induced recrystallisation mechanism was the dominant factor in the grain refinement mechanism at large undercooling.
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