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Movement behavior and separation of Al_(2)O_(3)from Al melt under rotating magnetic field

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摘要 The effect of a rotating magnetic field(RMF)on the distribution of Al_(2)O_(3)particles with an Al melt was studied by means of simulation and experiment.The results show that Al_(2)O_(3)particles(diameter of 1-10μm,1wt.%)are significantly agglomerated at the top of ingots when subjected to an RMF,and their distribution is influenced by both the intensity and the duration of RMF application.The optimal separation efficiency is achieved with the magnetic intensity of 12 mT for 120 s.The number of the particles at the bottom and the middle decreases by 64.5%and 69.7%,respectively,while that at the top increases by 242.5%compared to the condition without an RMF.However,if further increase the intensity or the duration of RMF,it can induce turbulent flows that draw some of the separated Al_(2)O_(3)particles back into the melt,reducing separation efficiency.The calculation results show that as the magnetic intensity increases from 6 mT to 18 mT,the velocity difference between the particles and the Al melt flow quadruples,increasing from 0.013 m·s^(-1)to 0.066 m·s^(-1).Driven by this velocity difference,centrifugal motion,and secondary circulation,Al_(2)O_(3)particles tend to migrate upwards within the melt,facilitating the separation of impurity particles and enhancing the purity of the melt.
出处 《China Foundry》 SCIE EI CAS CSCD 2024年第6期625-633,共9页 中国铸造(英文版)
基金 support of the National Natural Science Foundation of China(Nos.52171135 and 51971048).
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  • 1苏志坚,李德伟,丸川雄净,赫冀成.电磁旋流水口在钢圆坯连铸中的作用[J].连铸,2011,36(S1):183-188. 被引量:7
  • 2雷作胜,任忠鸣,闫勇刚,邓康.高频调幅磁场下无结晶器振动电磁连铸技术的实验研究[J].金属学报,2004,40(9):995-999. 被引量:16
  • 3TaoWen-quan.Computational Heat Transfer[M].Xi′an: Xi′an Jiaotong University Press,1988..
  • 4Makarov, S. , Apelian, D. , Ludwig, R. Inclusion Removal and Detec- tion in Molten Aluminium:Mechanical, Electromagnetic and Acoustic Techniques [ J ]. AFS Transactions. 1999,107,727 - 735.
  • 5Singh, D. P. K. , Mitchell, D. J. Analysis of Metal Quality in a Low Pressure Permanent Mold Foundry [ J ]. AFS Transactions, 2001, 109,333 - 346.
  • 6Jeurgens, L. P. H. , Sloof, W. G. , Tichelaar, F. D. , Mittemeijer, E. J. Structure and Morphology of Aluminium - Oxide Films Formed by Thermal Oxidation of Aluminium [ J]. Thin Solid Films,2002,418, 89 - 101.
  • 7A. Nylund, K. Mizuno, I. Olef]ord, Influence of Mg and Si on the oxi- dation of Aluminum [J]. Oxid. Met,1998.50 (314) :309 -325.
  • 8Utigard ,T. Thermodynamic Considerations of Aluminum Refining and Fluxing [ J ]. Extraction, Refining, and Fabrication of Light Metals, Ottawa, Ontario;Canada;18 -21 Aug. 1991. pp353 -365.
  • 9D. H. DeYoung, D. Apelian, R.. Mutharasan. Method for Separation and Removal of Suspended Liquid Particles from Molten Metal and AssociatedApparatus[ P]. US Patent 5,336,295,1994.
  • 10T. Gudmundsson, G. Saevarsdottir, T. I. Sigfusson, D. G. McCartney. Chlorination of TiB2 Grain Refined Aluminium Melts [ J] . Light Met- als,1997:851 -855.

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