Metadislocations are highly complex defects mediating plasticity in several complex metallic alloys. Available models characterizing the atomic rearrangements during the movement of these defects are limited to two dimensions and heavy atomic species. Combining high-resolution scanning transmission electron microscopy, density functional theory and simulated annealing we develop a three-dimensional model of a metadislocation glide step of 12.3 Å in the complex metallic alloy Al13Co4 including all atomic species. The rearrangements within the core are shown to involve maximum atomic jump distances of 3.4 Å
Metadislocations are novel structural defects firstly observed in the complex metallic alloy xi'-Al-...
We present a detailed investigation, based on ensemble density functional theory simulations, of the...
Deformation twins grow by the motion of disconnections along their interfaces, thereby coupling shea...
The atomic structure of metadislocation cores in the phase o-Al13Co4 is investigated using aberratio...
Metadislocations are highly complex and pivotal defects mediating plastic deformation in complex met...
Metadislocations are novel defects recently identified in complex metallic alloys. It was reasoned t...
Metadislocations are a novel type of structural defect in complex metallic alloys. We present an exp...
The existence of metadislocations in the complex, orthorhombic phase metallic alloy Al13Co4 has been...
We investigate dislocations in the complex metallic alloys T-Al-Mn-Pd and T-Al-Mn-Fe using high-reso...
High-resolution scanning transmission electron microscopy was used to investigate the core structure...
In several complex crystals, like Al13Co4, metadislocations have been shown to facilitate plastic fl...
Metadislocations are structural defects in materials with large lattice parameters. In these materia...
Complex metallic alloys and quasicrystals are closely related. Both possess icosahedral local order,...
In several complex crystals, like Al13Co4, metadislocations have been shown to facilitate plastic fl...
In several complex crystals, like Al13Co4, metadislocations have been shown to facilitate plastic fl...
Metadislocations are novel structural defects firstly observed in the complex metallic alloy xi'-Al-...
We present a detailed investigation, based on ensemble density functional theory simulations, of the...
Deformation twins grow by the motion of disconnections along their interfaces, thereby coupling shea...
The atomic structure of metadislocation cores in the phase o-Al13Co4 is investigated using aberratio...
Metadislocations are highly complex and pivotal defects mediating plastic deformation in complex met...
Metadislocations are novel defects recently identified in complex metallic alloys. It was reasoned t...
Metadislocations are a novel type of structural defect in complex metallic alloys. We present an exp...
The existence of metadislocations in the complex, orthorhombic phase metallic alloy Al13Co4 has been...
We investigate dislocations in the complex metallic alloys T-Al-Mn-Pd and T-Al-Mn-Fe using high-reso...
High-resolution scanning transmission electron microscopy was used to investigate the core structure...
In several complex crystals, like Al13Co4, metadislocations have been shown to facilitate plastic fl...
Metadislocations are structural defects in materials with large lattice parameters. In these materia...
Complex metallic alloys and quasicrystals are closely related. Both possess icosahedral local order,...
In several complex crystals, like Al13Co4, metadislocations have been shown to facilitate plastic fl...
In several complex crystals, like Al13Co4, metadislocations have been shown to facilitate plastic fl...
Metadislocations are novel structural defects firstly observed in the complex metallic alloy xi'-Al-...
We present a detailed investigation, based on ensemble density functional theory simulations, of the...
Deformation twins grow by the motion of disconnections along their interfaces, thereby coupling shea...