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Influence of Ce and Mn addition on α-Fe morphology in recycled Al-Si alloy ingots 被引量:1

Influence of Ce and Mn addition on α-Fe morphology in recycled Al-Si alloy ingots
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摘要 The influence of Ce or Ce and Mn combined additions on the morphology of a-Fe phases in recycled AloSi alloys was experimentally investigated by microstructure observation and room temperature tensile testing. It is found that Ce modifies the morphology of a-Fe phase from the large Chinese script-like into the individual and fine nodular shape. A combined addition of Ce and Mn results in the promotion of primary a-Fe formation, and their size increases considerably with the increase in Ce content. The mechanism of the above morphological changes was discussed in accordance with the nucleation and growth of a-Fe phase during solidification. The influence of Ce or Ce and Mn combined additions on the morphology of a-Fe phases in recycled AloSi alloys was experimentally investigated by microstructure observation and room temperature tensile testing. It is found that Ce modifies the morphology of a-Fe phase from the large Chinese script-like into the individual and fine nodular shape. A combined addition of Ce and Mn results in the promotion of primary a-Fe formation, and their size increases considerably with the increase in Ce content. The mechanism of the above morphological changes was discussed in accordance with the nucleation and growth of a-Fe phase during solidification.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2013年第9期890-895,共6页 矿物冶金与材料学报(英文版)
基金 financially supported by the Major State Basic Research and Development Program of China(No.2007CB613702) the Special Project on the Integration of Industry-University-Research of Guangdong Province and the Ministry of Education(No.2012A090300016) the Fundamental Research Funds for the Central Universities(No.CDJXS11132226)
关键词 aluminum-silicon alloys CERIUM MANGANESE modification MORPHOLOGY aluminum-silicon alloys cerium manganese modification morphology
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  • 1J.C. Seegmiller,D.A. Buttry.A SECM study of het- erogeneous redox activity at AA2024 surfaces[].J Elec- trochem Soc.2003
  • 2A. Davoodi,,J. Pan,,C. Leygraf,,S. Norgren.In situ investigation of localized corrosion of aluminum alloys in chloride solution using integrated EC-AFM/SECM tech- niques[].Electrochemical and Solid State Letters.2005
  • 3E. Volker,,C.G. Inchauspe,,E.J. Calvo.Scanning elec- trochemical microscopy measurement of ferrous ion fluxes during localized corrosion of steel[].Electrochemistry Communications.2006
  • 4A. Davoodi J. Pan C. Leygraf and S. Norgren.Probing of local dissolution of Al-alloys in chloride solutions by AFM and SECM[].Applied Surface Science.2006
  • 5Szklarska-Smialowska Z.Pitting corrosion of aluminum[].Corrosion Science.1999
  • 6J H W DE WIT.LOCAL POTENTIAL MEASUREMENTS WITH THE SKPFM ON ALUMINIUM ALLOYS[].Electrochimica Acta.2004
  • 7Shao Y. H,Mirkin M. V.Probing Ion Transfer at the Liquid/Liquid Interface by Scanning Electrochemical Microscopy (SECM)[].Journal of Physical Chemistry B.1998
  • 8C. H. Paik,H. S. White,and R. C. Alkire.Scanning Electrochemical Microscopy Detection of Dissolved Sulfur Species from Inclusion in Stainless Steel[].Journal of the Electrochemical Society.2000
  • 9Buchheit R G,Martinez M A,Montes L P.Evidence for Cu ionformation by dissolution and dealloying the Al2CuMg intermetalliccompound in rotating ring-disk collection experiments[].Journal of the Electrochemical Society.2000
  • 10Buchheit R G,Grant R P,Hlava P F,et al.Local dissolution phenomena associated with S phase (Al2 CuMg)particles in aluminum alloy 2024-T3[].Journal of the Electrochemical Society.1997

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  • 1阎峰云,李文凤,郝远,肇玉卿,吴正德.电熔剂法净化处理铝熔体的影响因素[J].有色金属,2005,57(1):39-41. 被引量:3
  • 2廖萍,倪红军,周一丹,张万金.铝及铝合金熔体复合净化新方法及其装置[J].轻合金加工技术,2005,33(9):20-22. 被引量:15
  • 3冯美斌,褚东宁,敖炳秋,袁序弟,王勇.世界汽车铝合金材料技术的新进展[J].汽车工艺与材料,2007(10):1-5. 被引量:12
  • 4Reuter M A, van Schaik A, Ignatenko O, et al. Fundamental limits for the recycling of end-of-life vehicles [J]. Minerals Engineering, 2006, 19(5): 433-449.
  • 5Gaustad G, Olivetti E, Kirchain R. Improving aluminum recycling: A survey of sorting and impurity removal technologies [J]. Resources, Conservation and Recycling, 2012, 58:79-87.
  • 6Amini S H, Remmerswaal J A M, Castro M B, et al. Quantifying the quality loss and resource efficiency of recycling by means ofexergy analysis [J]. Journal of Cleaner Production, 2007, 15(10): 907-913.
  • 7Belmares-Perales S. Effect of Cooling Rate and Fe/Mn Weight Ratio on Volume Fractions of a-A1FeSi and fl-A1FeSi Phases in A1-7. 3Si-3. 5Cu Alloy [J]. Metals and Materials International, 2008, 14(3): 307-314.
  • 8康积行.傅高升.提高铝液净化效果的原理与技术一铝熔体中夹杂物和气体的行为:全国铸造有色合金高新技术研讨会[C],沈阳,1996.
  • 9刘昕怡,林高用,彭大暑.废铝回收的LARS技术处理[J].轻合金加工技术,2008,36(3):1-5. 被引量:2
  • 10葛维燕,疏达,高建卫,曹新乐,刘俊东,崔华清,孙敏,王俊,孙宝德.再生铝合金除铁述评[J].铸造,2008,57(3):207-210. 被引量:7

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