Fracture is one of the most challenging ‘multi-scale’ problems to model: since crack propagation is driven by the concentration of a long-range stress field at an atomically sharp crack tip, an accurate description of the chemical processes occurring in the small crack tip region is therefore essential, as is the inclusion of a much larger region in the model systems. Both these requirements can be met by combining a quantum mechanical description of the crack tip with a classical atomistic model that captures the long-range elastic behaviour of the surrounding crystal matrix. Examples of the application of these techniques to fracture problems include: low-speed dynamical fracture instabilities in silicon; interactions between moving crack...
We study the problem of atomic scale fracture using the recently developed quasicontinuum method in ...
Dynamic fracture has been modeled using a modified embedded atom method (MEAM) potential for silicon...
One major research focus in the Material Science and Engineering Community in the past decade has be...
AbstractFracture is one of the most challenging ‘multi-scale’ problems to model: since crack propaga...
AbstractFracture is one of the most challenging ‘multi-scale’ problems to model: since crack propaga...
When a brittle material is loaded to the limit of its strength, it fails by nucleation and propagati...
Energy dissipation by dislocation plasticity in metals provides the resistance against crack growth ...
Atomistic modeling of fracture is intended to illuminate the complex response of atoms in the very h...
Material behavior and microstructure geometries at small scales strongly influence the physical beha...
Modeling fracture and failure of material is a complex phenomenon that needs atomic-scale understand...
When a brittle material is loaded to the limit of its strength, it fails by the nucleation and propa...
When a brittle material is loaded to the limit of its strength, it fails by the nucleation and propa...
Any fracture process ultimately involves the rupture of atomic bonds. Processes at the atomic scale ...
Understanding failure process in metallic materials is crucial to their engineering applications. Th...
This report describes an Engineering Sciences Research Foundation (ESRF) project to characterize and...
We study the problem of atomic scale fracture using the recently developed quasicontinuum method in ...
Dynamic fracture has been modeled using a modified embedded atom method (MEAM) potential for silicon...
One major research focus in the Material Science and Engineering Community in the past decade has be...
AbstractFracture is one of the most challenging ‘multi-scale’ problems to model: since crack propaga...
AbstractFracture is one of the most challenging ‘multi-scale’ problems to model: since crack propaga...
When a brittle material is loaded to the limit of its strength, it fails by nucleation and propagati...
Energy dissipation by dislocation plasticity in metals provides the resistance against crack growth ...
Atomistic modeling of fracture is intended to illuminate the complex response of atoms in the very h...
Material behavior and microstructure geometries at small scales strongly influence the physical beha...
Modeling fracture and failure of material is a complex phenomenon that needs atomic-scale understand...
When a brittle material is loaded to the limit of its strength, it fails by the nucleation and propa...
When a brittle material is loaded to the limit of its strength, it fails by the nucleation and propa...
Any fracture process ultimately involves the rupture of atomic bonds. Processes at the atomic scale ...
Understanding failure process in metallic materials is crucial to their engineering applications. Th...
This report describes an Engineering Sciences Research Foundation (ESRF) project to characterize and...
We study the problem of atomic scale fracture using the recently developed quasicontinuum method in ...
Dynamic fracture has been modeled using a modified embedded atom method (MEAM) potential for silicon...
One major research focus in the Material Science and Engineering Community in the past decade has be...