Taking pure Mg, Mg-Al, and Mg-Zn as prototypes, the effects of strain on the stacking fault energies (SFEs), dislocation core structure, and Peierls stress were systematically investigated by means of density functional theory and the semidiscrete variational Peierls-Nabarro model. Our results suggest that volumetric strain may significantly influence the values of SFEs of both pure Mg and its alloys, which will eventually modify the dislocation core structure, Peierls stress, and preferred slip system, in agreement with recent experimental results. The so-called "strain factor" that was previously proposed for the solute strengthening could be justified as a major contribution to the strain effect on SFEs. Based on multivariate regression ...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
Generalized planar fault energy (GPFE) curves are widely used to evaluate the deformation behavior o...
We use first-principles density functional theory total energy calculations based on pseudo-potentia...
Mg alloys have excellent strength to weight ratio but their use is limited by their poor room temper...
Zn-based and Mg-based alloys have been considered highly promising biodegradable materials for cardi...
We calculate the generalised stacking fault (GSF) surface energies of MgO using an interatomic poten...
Magnesium has multiple dislocation and twinning systems with starkly different properties, which mak...
Solution strengthening is a well-known approach to tailoring the mechanical properties of structural...
In this work, the generalized stacking fault energies (GSFEs) of {10-11}<11-23> slip system in...
The finite-temperature yield stress of Mg-Al alloys undergoing basal slip is investigated using a re...
The elastic properties and the generalized-stacking-fault-energy (GSFE) in MeO (Me = Mg, Ca) under...
Mg-3wt.%RE alloys show substantially enhanced activity as compared to pure Mg or other Mg-Al, Mg-Zn...
Water-related defects, principally in the form of protonated cation vacancies, are potentially able ...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
The core structures of screw and edge dislocations on the basal and prism planes in Mg, and the asso...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
Generalized planar fault energy (GPFE) curves are widely used to evaluate the deformation behavior o...
We use first-principles density functional theory total energy calculations based on pseudo-potentia...
Mg alloys have excellent strength to weight ratio but their use is limited by their poor room temper...
Zn-based and Mg-based alloys have been considered highly promising biodegradable materials for cardi...
We calculate the generalised stacking fault (GSF) surface energies of MgO using an interatomic poten...
Magnesium has multiple dislocation and twinning systems with starkly different properties, which mak...
Solution strengthening is a well-known approach to tailoring the mechanical properties of structural...
In this work, the generalized stacking fault energies (GSFEs) of {10-11}<11-23> slip system in...
The finite-temperature yield stress of Mg-Al alloys undergoing basal slip is investigated using a re...
The elastic properties and the generalized-stacking-fault-energy (GSFE) in MeO (Me = Mg, Ca) under...
Mg-3wt.%RE alloys show substantially enhanced activity as compared to pure Mg or other Mg-Al, Mg-Zn...
Water-related defects, principally in the form of protonated cation vacancies, are potentially able ...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
The core structures of screw and edge dislocations on the basal and prism planes in Mg, and the asso...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
Generalized planar fault energy (GPFE) curves are widely used to evaluate the deformation behavior o...
We use first-principles density functional theory total energy calculations based on pseudo-potentia...