4.7 Article

Determination of fluoride component in the multifunctional refining flux used for recycling aluminum scrap

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ELSEVIER
DOI: 10.1016/j.jmrt.2020.01.082

关键词

Aluminum recycling; Multifunctional refining flux; Fluoride salt; Interfacial tension; Coalescence behavior

资金

  1. Guangdong -Major Scientific Research Program of Higher Education of Guangdong [2016KQNCX189]
  2. Special Scientific and Technological Innovation Projects of Universities of Guangdong Province [2017KTSCX177]
  3. Opening Project of National Engineering Research Center of Near-Net-Shape Forming for Metallic Materials (South China University of Technology) [2019010]

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In this paper, the optimum fluoride component in the multifunctional refining flux used for recycling aluminum scrap was determined. Theoretical analysis of solid fluxing shows that strong stripping ability of oxide layer on aluminum surface for the flux and appropriate interfacial tensions between Al melt/ inclusion (sigma(M-I)), flux / inclusion (sigma(F-I)), and flux/ Al melt (sigma(F-M)) are indispensable for making the flux achieve the properties of covering, drossing, and cleaning simultaneously. In term of four preliminarily selected fluoride salts, i.e., KF, AlF3, K3AlF6 and KAlF4, the results of interfacial tension measurements indicates that, combined addition of A-type fluoride (KF) and B-type fluoride (AlF3, K3AlF6 and KAlF4) to equimolar NaCl-KCI can just offset the shortage of single addition of KF which means worsening the separating effect of flux from melt surface and weakening the wettability of flux on the inclusions due to the lower sigma(F-M) and the higher sigma(F-I) respectively. Additionally, coalescence behaviors of aluminum droplets in molten fluxes reveals that, KF, K3AlF6 or KAlF4 possesses stronger stripping ability of oxide layer, while the stripping ability of oxide layer for AlF3 is weaker. Ultimately, the combination of KF with K3AlF6 or/and KAlF4 is ascertained to be an optimum selection for fluoride component in the multifunctional refining flux. (C) 2020 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license (http://creativecommons.orgilicensesiby-nc-nd/4.0/).

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