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Study on Multiple Electromagnetic Continuous Casting of Aluminum Alloy 被引量:13

Study on Multiple Electromagnetic Continuous Casting of Aluminum Alloy
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摘要 To obtain semi-solid Al alloy billet with high quality, an investigation was carried out by imposing a multiple magnetic field from the outside of a copper mold in the continuous casting. AISi6Mg2 alloy designed for semi-solid metal (SSM) processing was continuously cast through a submerged entry nozzle under various conditions. Effects of multiple magnetic field on meniscus motion, temperature distribution and billet quality were examined. The experimental results showed that meniscus disturbance caused by electromagnetic stirring could be controlled effectively and the surface quality of semi-solid AI alloy billet was improved greatly, and an uniformly fine, globular microstructure across the transverse section of the billet was achieved by optimizing the distribution of multiple magnetic field. To obtain semi-solid Al alloy billet with high quality, an investigation was carried out by imposing a multiple magnetic field from the outside of a copper mold in the continuous casting. AISi6Mg2 alloy designed for semi-solid metal (SSM) processing was continuously cast through a submerged entry nozzle under various conditions. Effects of multiple magnetic field on meniscus motion, temperature distribution and billet quality were examined. The experimental results showed that meniscus disturbance caused by electromagnetic stirring could be controlled effectively and the surface quality of semi-solid AI alloy billet was improved greatly, and an uniformly fine, globular microstructure across the transverse section of the billet was achieved by optimizing the distribution of multiple magnetic field.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2006年第4期437-440,共4页 材料科学技术(英文版)
关键词 Continuous casting Multiple magnetic field Aluminum alloy SEMI-SOLID MICROSTRUCTURE Continuous casting Multiple magnetic field Aluminum alloy Semi-solid Microstructure
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  • 1[1]M.Yoshida:ISIJ Int.,1987,73(3),403.
  • 2[2]M.C.Flemings:Metall.Trans.,1991,22B(6),269.
  • 3[3]D.H.Kirkwood:Int.Mater.Rev.,1994,39(5),173.
  • 4[4]K.P.Young:in Proc.of the 4th Int.Conf.on Semi-solid Processing of Alloys and Composites,eds.D.H.Kirkwood and P.Kapranos,Sheffield,England,1996,229.
  • 5[5]P.R.Sahm:in Proc.of the 5th Int.Conf.on Semi-Solid Processing of Alloys and Composites,eds.A.Kumar Bhasin,John J.Moore and Kenneth P.Stephen Midson,Colorado,USA,1998,576.
  • 6[6]Shoujing LUO,Wentong TIAN,Shuisheng XIE and Weimin MAO:Chin.J.Nonferrous Met.,2000,10(6),765.(in Chinese)
  • 7[7]X.F.Pan,H.F.Zhang,A.M.Wang,B.Z.Ding,K.Q.Qiu and Z.Q.Hu:J.Mater.Sci.Technol.,2000,16(5),453.
  • 8[8]C.Vives:Metall.Trans.,1992,23B(2),189.
  • 9[9]M.Ziflgen and G.Hirt:in Proc.of the 4th Int.Conf.on Semi-solid Processing of Alloys and Composites,eds.D.H.Kirkwood and P.Kapranos,University of Sheffield,England,1996,180.
  • 10[10]Soizic BLAIS,Willem LOUE and Christian PLUCHON:in Proc.of the 4th Int.Conf.on Semi-solid Processing of Alloys and Composites,eds.D.H.Kirkwood and P.Kapranos,University of Sheffield,England,1996,187.

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