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The effect of solute atoms on aluminum grain boundary sliding at elevated temperature

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TitleThe effect of solute atoms on aluminum grain boundary sliding at elevated temperature
Publication TypeJournal Article
Year of Publication2011
AuthorsDu, N, Qi, Y, Krajewski, PE, Bower, AF
JournalMetallurgical Transactions A (Physical Metallurgy and Materials Science)
Volume42
Pagination651–659
Date Published3
ISSN1073-5623
Abstract

Grain boundary sliding (GBS) is an important deformation mechanism for elevated temperature forming processes. Molecular dynamics simulations are used to investigate the effect of solute atoms in near grain boundaries (GBs) on the sliding of Al bicrystals at 750 K (477 °C). The threshold stress for GBS is computed for a variety of GBs with different structures and energies. Without solute atoms, low-energy GBs tend to exhibit significantly less sliding than high-energy GBs. Simulation results show that elements which tend to phase segregate from Al, such as Si, can enhance GBS in high-energy GBs by weakening Al bonds and by increasing atomic mobility. In comparison, intermetallic forming elements, such as Mg, will form immobile Mg-Al clusters, decrease diffusivity, and inhibit GBS. © 2010 The Minerals, Metals & Materials Society and ASM International.

DOI10.1007/s11661-010-0326-z