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Residual stress and its effect on the mechanical properties of Y-doped Mg alloy fabricated via back-pressure assisted equal channel angular pressing (ECAP-BP)

  • Jianghua Shen
  • , Viera Gärtnerová
  • , Laszlo J. Kecskes
  • , Katsuyoshi Kondoh
  • , Aleš Jäger
  • , Qiuming Wei
  • University of North Carolina at Charlotte
  • Institute of Physics of the Czech Academy of Sciences
  • U.S. Army Research Laboratory
  • The University of Osaka

科研成果: 期刊稿件文章同行评审

26 引用 (Scopus)

摘要

In this study, pure magnesium (Mg) and Mg-0.6 wt% yttrium (Y) binary alloy were fabricated via casting followed by room temperature equal channel angular pressing (ECAP) using an applied back pressure (BP). Microstructural examination after ECAP-BP revealed a fine-grained Mg-Y alloy with a high residual stress level, whereas, the pure Mg exhibited a well-recrystallized microstructure with uniform and equiaxed grains, but retaining very little residual stress. The Y atoms were present in the Mg matrix as solid solutes and acted as dislocation and grain boundary blockers, thus suppressing dynamic recovery and/or recrystallization during the ECAP process. The Mg-Y alloy had an average grain size of ~400 nm, approximately one order smaller than that of pure Mg. The combination of high residual stress and ultrafine grains of the Mg-Y alloy gave rise to a significant difference in its mechanical behavior from that of the pure Mg, under both quasi-static and dynamic compressive loading.

源语言英语
页(从-至)110-117
页数8
期刊Materials Science and Engineering: A
669
DOI
出版状态已出版 - 1 7月 2016

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