The effect of cryogenic deformation on the limiting grain size in an SMG Al-alloy

被引:1
作者
P. B. Prangnell
Y. Huang
机构
[1] The University of Manchester,Manchester Materials Science Centre
来源
Journal of Materials Science | 2008年 / 43卷
关键词
Severe Plastic Deformation; Boundary Migration; High Angle Boundary; Equal Channel Angular Extrusion; Plane Strain Compression;
D O I
暂无
中图分类号
学科分类号
摘要
The minimum grain size obtainable in an Al–0.1%Mg submicron grained (SMG) alloy, subjected to cryogenic plane strain deformation, and its subsequent stability during room temperature deformation have been investigated. A decreasing steady state grain size was obtained with reducing deformation temperature. However, a true nanocrystalline grain structure was not obtained even at 77 K with the high angle boundary spacing only approaching the nanoscale in the sample normal direction. The cryogenically deformed material was unstable on subsequent deformation at room temperature and underwent rapid dynamic grain growth. Dynamic grain coarsening is shown to limit the minimum grain size achievable in an SPD process, even under cryogenic conditions.
引用
收藏
页码:7280 / 7285
页数:5
相关论文
共 73 条
  • [1] Prangnell PB(2007)undefined Mater Sci Forum 550 159-undefined
  • [2] Huang Y(2005)undefined Acta Mater 53 393-undefined
  • [3] Berta M(2004)undefined Acta Mater 52 3239-undefined
  • [4] Apps PJ(2006)undefined Mater Sci Forum 519–521 153-undefined
  • [5] Hebesberger T(1996)undefined Acta Mater 44 2947-undefined
  • [6] Stüwe HP(2002)undefined Nature 419 912-undefined
  • [7] Vorhauer A(2004)undefined Acta Mater 521 1699-undefined
  • [8] Wetscher F(2001)undefined Acta Mater 49 4055-undefined
  • [9] Pippan R(2004)undefined Acta Mater 52 5381-undefined
  • [10] Jazaeri H(2006)undefined Acta Mater 54 2253-undefined