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Solid-Solution Hardening in Mg-Gd-TM (TM = Ag, Zn, and Zr) Alloys: An Integrated Density Functional Theory and Electron Work Function Study

  • William Yi Wang
  • , Shun Li Shang
  • , Yi Wang
  • , Hongyeun Kim
  • , Kristopher A. Darling
  • , Laszlo J. Kecskes
  • , Suveen N. Mathaudhu
  • , Xi Dong Hui
  • , Zi Kui Liu
  • Pennsylvania State University
  • University of Science and Technology Beijing
  • U.S. Army Research Laboratory
  • University of California at Riverside

科研成果: 期刊稿件文章同行评审

19 引用 (Scopus)

摘要

The current work aims to reveal the effects of solute atoms (TM = Ag, Zn, and Zr) on the age hardening of Mg-Gd-based alloys via the density functional theory and electron work function (EWF) approaches. The 10H LPSO phases of Mg-Gd-TM alloys are selected as the model case due to the improved strength and ductility such long periodic stacking ordered precipitates (LPSOs) offer. The CALPHAD-modeling method is applied to predict the EWF in the ternary Mg-Gd-TM alloys. The obtained EWFs of these Mg alloys are shown to match well with previous experimental and theoretical results. Moreover, the variation of EWF in the ternary Mg-Gd-TM alloys is attributed to the structure contribution [i.e., the formation of face-centered cubic (fcc)-type fault layers] and the chemical effect of solute atoms (i.e., electron redistributions). With the knowledge of bonding charge density between the solute and solvent atoms, the present work provides insight into the correlations between the EWF and hardness of Mg-Gd-TM alloys.

源语言英语
页(从-至)2433-2441
页数9
期刊JOM
67
10
DOI
出版状态已出版 - 23 10月 2015
已对外发布

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