4.7 Article

The electronic origins of the rare earth texture effect in magnesium alloys

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SCIENTIFIC REPORTS
卷 11, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-021-93703-w

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  1. Australian Government (National Computational Merit Allocation Scheme) [12247, mk63]

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Although magnesium alloys have poor ductility, the addition of rare earth elements can improve this. Ab initio simulations of crystallographically complex boundaries have shown that changes in grain boundary crystallography can affect the strong bonding between rare earth elements and their surroundings, contributing to the RE texture effect.
Although magnesium alloys are lightweight, recyclable and relatively cheap, they suffer from poor ductility. This can be improved by the addition of rare earth (RE) elements, and this is now a well-established criterion for wrought alloy design. It is notable that this behavior is largely restricted to the lanthanides, but no hypothesis is yet available to explain why other elements do not have the same effect. To answer this question, ab initio simulations of crystallographically complex boundaries have been undertaken to examine the electronic origin of the RE effect. While the electronic structure provided strong bonding between the RE elements and their Mg surroundings, local disruption in atomic arrangement at the grain boundaries was found to modify this effect. This work shows quantifiable changes in electronic structure of solutes resulting from grain boundary crystallography, and is suggested to be a contributing factor to the RE texture effect.

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