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Dynamical Solidification Behaviors and Metal Flow during Continuous Semisolid Extrusion Process of AZ31 Alloy 被引量:10

Dynamical Solidification Behaviors and Metal Flow during Continuous Semisolid Extrusion Process of AZ31 Alloy
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摘要 In this paper, a novel near-net-shape forming process, continuous semisolid extrusion process (CSEP) of AZ31 alloy was proposed, and the dynamical solidification behaviors and metal flow during the process were firstly investigated. During casting AZ31 alloy by this process, non-uniform microstructure distributions and non- equilibrium solidification region near the roll surface were found in the roll-shoe gap. Microstructural evolution from dendrite to rosette and spherical grains was observed during the casting by CSEP. Casting temperature, roll-shoe gap width and cooling ability have great effect on casting process and metal flow, so these factors should be carefully controlled, a proper casting temperature of 710-750℃ is suggested. The white α phases were strongly stretched during the processing, and the remnant liquids are correspondingly distributes along the solid phase boundaries and also show stripped lines. In this paper, a novel near-net-shape forming process, continuous semisolid extrusion process (CSEP) of AZ31 alloy was proposed, and the dynamical solidification behaviors and metal flow during the process were firstly investigated. During casting AZ31 alloy by this process, non-uniform microstructure distributions and non- equilibrium solidification region near the roll surface were found in the roll-shoe gap. Microstructural evolution from dendrite to rosette and spherical grains was observed during the casting by CSEP. Casting temperature, roll-shoe gap width and cooling ability have great effect on casting process and metal flow, so these factors should be carefully controlled, a proper casting temperature of 710-750℃ is suggested. The white α phases were strongly stretched during the processing, and the remnant liquids are correspondingly distributes along the solid phase boundaries and also show stripped lines.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2009年第3期395-400,共6页 材料科学技术(英文版)
基金 supports from National High-Tech R&D Program of China (GrantNo. 2007AA03Z111) Natural Science Foundation of China (Grant No. 50604007) the Program for New Century Excellent Talents in University (Grant No.NCET-06-0285 and NCET-08-0097)
关键词 Dynamical solidification Continuous semisolid extrusion process Micro structural evolution AZ31 alloy Dynamical solidification Continuous semisolid extrusion process Micro structural evolution AZ31 alloy
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  • 1M.C. Flemings: Metall. Trans., 1991, 22A, 957.
  • 2M. Nakada, Y. Shiohara and M.C. Flemmings: ISIJ Int., 1990, 30(1), 27.
  • 3D.H. Kirkwood: Int. Mater. Rev., 1994, 39, 173.
  • 4Z. Fan: Int. Mater. Rev., 2002, 47(2), 49.
  • 5T. Haga: J. Mater. Proc. Tech., 2001, 111, 64.
  • 6K.E. Blazek, J.E. Kelly and S. Pottore: ISIJ Int., 1995, 35(6), 813.
  • 7C Vives: Metall. Trans., 1992, 21B(4), 189.
  • 8O.J. Iiegbusi and J. Szekely: Trans. Iron Steel Inst., 1998, 28, 97.
  • 9R.G. Guan, J.L. Wen and X.H. Liu: Mater. Sci. Technol., 2003, 19(4), 503.
  • 10S.C. Wang, F.R. Cao, R.G. Guan and J.L. Wen: J. Mater. Sci. Technol., 2006, 22(2), 5.

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