4.7 Article

Eutectic growth mechanism and heat transfer dynamics of ternary Cr-Ni-Fe alloy during triple containerless processing

期刊

JOURNAL OF ALLOYS AND COMPOUNDS
卷 871, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2021.159539

关键词

Heat transfer; Rapid solidification; Eutectic growth; Microgravity

资金

  1. National Natural Science Foundation of China [U1806219, 52073232, 52088101, U1660108]
  2. Science Fund for Distinguished Young Scholars of Shaanxi Province [2020JC11]

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The rapid solidification of ternary Cr49.5Ni40.5Fe10 alloy under different heat transfer conditions leads to the transformation of eutectic structures, reduction of macroscopic segregation of primary delta phase, and the appearance of non-uniform eutectic microstructures under falling quench condition.
The rapid solidification of ternary Cr49.5Ni40.5Fe10 alloy was realized by triple containerless processing techniques including free fall, falling quench and direct quench in order to systematically investigate its eutectic growth mechanism under different heat transfer conditions. Based upon Newtonian cooling model and classical heat transfer equation, the thermal information inside alloy droplets was obtained to derive the cooling rate, temperature difference and temperature gradient. After containerless solidification, the macroscopic segregation of primary delta phase was remarkably reduced owing to the microgravity effect and the spherically symmetrical temperature field within alloy droplets. Three typical eutectic structures were observed in the alloy droplets. With the increases of cooling rate, temperature difference and temperature gradient, the microstructures of alloy droplets evolved from coarse lamellar eutectic to refined anomalous eutectic and finally transformed to coarse anomalous eutectic because of the independent growth of delta and gamma phases. Especially, under falling quench condition, a non-uniform eutectic microstructure appeared, which was refined gradually from the surface to the center of alloy droplets. This was attributed to the sudden changes of these three thermodynamic parameters once the alloy droplets were rapidly quenched into liquid coolant. (C) 2021 Elsevier B.V. All rights reserved.

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