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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Containerless Solidification Processing and Phase-Field Simulation for Ternary Fe-Cu-Co Peritectic Alloy Under Reduced-Gravity Conditions
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Containerless Solidification Processing and Phase-Field Simulation for Ternary Fe-Cu-Co Peritectic Alloy Under Reduced-Gravity Conditions

机译:减小重力条件下三元Fe-Cu-Co包层合金的容器凝固处理和相场模拟

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摘要

We experimentally and theoretically investigated the rapid solidification and microstructural evolution of freely falling droplets of the ternary Fe45Cu40Co15 peritectic alloy, with the critical undercooling temperature of metastable liquid phase-separation initiation being measured to be 38 K. We found that liquid phase separation occurs when the droplet diameter ranges from 80 to 980 mu m, resulting in the formation of either microscopically or macroscopically segregated microstructures. The peritectic solidification microstructure was produced when the droplet diameter either exceeded 980 mu m or was below 80 mu m. The dispersed morphology of the large alloy droplets possessed nonuniformly dispersive characteristics, i.e., proximity to the droplet surface is negatively associated with the size of Cu-rich globules. With the further reduction of the droplet size, the phase-separated morphology first transformed into a core-shell structure and finally displayed a homogeneously dispersed structure. Our theoretical calculations showed that the residual Stokes motion, Marangoni convection, and surface segregation are the dominant dynamic mechanisms for the phase separation and microstructural evolution under reduced-gravity conditions inside the drop tube. (C) The Minerals, Metals & Materials Society and ASM International 2018.
机译:我们在实验和理论上研究了三元Fe45Cu40Co15包晶合金的自由下降液滴的快速凝固和微观结构演化,测量亚稳态液相分离起始的临界过冷温度为38K。我们发现当液相分离发生时液滴直径范围为80至980μm,导致显微镜或宏观隔离的微观结构形成。当液滴直径超过980μm或低于80μm时,产生包晶凝固微观结构。大型合金液滴的分散形态具有不均匀的色散特性,即对液滴表面的邻近与富含Cu的小球的尺寸负相关。随着液滴尺寸的进一步减小,将相位分离的形态首先转化成芯壳结构,最后显示出均匀分散的结构。我们的理论计算表明,残留的斯托克斯运动,Marangoni对流和表面偏析是在滴管内减小重力条件下的相分离和微观结构演变的主导动态机制。 (c)2018年矿物质,金属和材料协会和ASM国际。

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    Northwestern Polytech Univ Key Lab Mat Phys &

    Chem Extraordinary Condit Mail Box 624 West 127 Youyi Rd Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ Key Lab Mat Phys &

    Chem Extraordinary Condit Mail Box 624 West 127 Youyi Rd Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ Key Lab Mat Phys &

    Chem Extraordinary Condit Mail Box 624 West 127 Youyi Rd Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ Key Lab Mat Phys &

    Chem Extraordinary Condit Mail Box 624 West 127 Youyi Rd Xian 710072 Shaanxi Peoples R China;

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  • 正文语种 eng
  • 中图分类 冶金技术;
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