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Plastic deformation of the CaMg$_{2}$ C14-Laves phase from 50-250$^\circ$C

Published 23 Sep 2021 in cond-mat.mtrl-sci | (2109.11367v1)

Abstract: Intermetallic phases can significantly improve the creep resistance of magnesium alloys, extending their use to higher temperatures. However, little is known about the deformation behaviour of these phases at application temperatures, which are commonly below their macroscopic brittle-to-ductile-transition temperature. In this study, we therefore investigate the activation of different slip systems of the CaMg$2$ phase and the occurrence of serrated yielding in the temperature range from 50$\circ$C to 250$\circ$C. A decreasing amount of serrated flow with increasing temperature suggests that solute atoms govern the flow behaviour when the CaMg${2}$ phase is off-stoichiometric.

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