Numerical Analysis on Rapid Solidification of Gas-atomized Al-8wt. pct Fe Droplets

가스분무한 Al-8wt.%Fe 합금분말의 급속응고과정에 대한 수치해석

  • Kim, Seong-Gyoon (Dept. of Materials Science and Eng., Kunsan National University) ;
  • Choi, Hoi-Jin (Dept. of Metallurgical Eng., Seoul National University) ;
  • Ra, Hyung-Yong (Dept. of Metallurgical Eng., Seoul National University)
  • 김성균 (군산대학교 재료공학과) ;
  • 최회진 (서울대학교 금속공학과) ;
  • 나형용 (서울대학교 금속공학과)
  • Published : 1993.10.30

Abstract

A numerical analysis on the microstructural evolutions of microcellular and cellular ${\alpha}-aluminum$ phase in the gas-atomized Al-8wt. pct droplets was represented. The 2-dimensional non-Newtonian heat transfer and the dendritic growth theory in the undercooled melt were combined under the assumptions of a point nucleation on droplet surface and the macroscopically smooth solid-liquid interface enveloping the cell tips. It reproduced the main characteristic features of the reported microstructures quite well. It predicted a considerable volume fraction of segregation-free region in a droplet smaller than $l0{\mu}m$ if an initial undercooling larger than 100K is given. The volume fractions of the microcellular region($g_A$) and the sum of the microcellular and cellular region($g_a$) were predicted as functions of the heat transfer coefficient, h and initial undercooling, ${\triangle}T$. It was shown that $g_A$ and $g_a$, in the typical gas-atomization processes with $h=0.1-1.0W/cm^2K$, are dominated by ${\triangle}T$ and h, respectively, but for h larger than $4.0W/cm^2K$, a fully microcellular structure can be obtained irrespective of the initial undercooling.

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