Rapid solidification leads to unique microstructural features, where a less studied topic is the formation of various crystalline defects, including high dislocation densities, as well as gradients and splitting of the crystalline orientation. As these defects critically affect the material's mechanical properties and performance features, it is important to understand the defect formation mechanisms, and how they depend on the solidification conditions and alloying. To illuminate the formation mechanisms of the rapid solidification induced crystalline defects, we conduct a multiscale modelling analysis consisting of bond-order potential-based molecular dynamics (MD), phase field crystal-based amplitude expansion simulations, and sequential...
Despite the continuous and remarkable development of experimental techniques for the investigation o...
The dendritic structure is one of the most complex forms of crystallisation in nature and technology...
The dendritic structure is one of the most complex forms of crystallisation in nature and technology...
Rapid solidification leads to unique microstructural features, where a less studied topic is the for...
Rapid solidification leads to unique microstructural features, where a less studied topic is the for...
International audienceRapid solidification leads to unique microstructural features, where a less st...
Understanding the mechanism of plasticity is of great significance in material science, structure de...
Microstructure is the origin of the properties and performance for additively manufactured metals. R...
Tens-nanometer sized defect substructures such as dislocation network, nanotwin and new grain or pha...
Despite the continuous and remarkable development of experimental techniques for the investigation o...
Für die Untersuchung des Verformungsverhaltens von Festkörpern sind atomistische Simulationen ein ge...
Dislocation-mediated plasticity in alloy systems is strongly affected by the concentration and distr...
Current strategies of computational crystal plasticity that focus on individual atoms or dislocation...
Plastic deformation is thought to involve highly 'stochastic' phenomena, caused by the gen...
This work investigates the dislocation nucleation processes that occur at the tip of a crack in alum...
Despite the continuous and remarkable development of experimental techniques for the investigation o...
The dendritic structure is one of the most complex forms of crystallisation in nature and technology...
The dendritic structure is one of the most complex forms of crystallisation in nature and technology...
Rapid solidification leads to unique microstructural features, where a less studied topic is the for...
Rapid solidification leads to unique microstructural features, where a less studied topic is the for...
International audienceRapid solidification leads to unique microstructural features, where a less st...
Understanding the mechanism of plasticity is of great significance in material science, structure de...
Microstructure is the origin of the properties and performance for additively manufactured metals. R...
Tens-nanometer sized defect substructures such as dislocation network, nanotwin and new grain or pha...
Despite the continuous and remarkable development of experimental techniques for the investigation o...
Für die Untersuchung des Verformungsverhaltens von Festkörpern sind atomistische Simulationen ein ge...
Dislocation-mediated plasticity in alloy systems is strongly affected by the concentration and distr...
Current strategies of computational crystal plasticity that focus on individual atoms or dislocation...
Plastic deformation is thought to involve highly 'stochastic' phenomena, caused by the gen...
This work investigates the dislocation nucleation processes that occur at the tip of a crack in alum...
Despite the continuous and remarkable development of experimental techniques for the investigation o...
The dendritic structure is one of the most complex forms of crystallisation in nature and technology...
The dendritic structure is one of the most complex forms of crystallisation in nature and technology...