Indiana University-Purdue University Indianapolis (IUPUI)Atomistic simulations are used in this project to study the deformation mechanism of polycrystalline and bicrystal of pure Al and Al-Mg alloys. Voronoi Tessellation was used to create three-dimensional polycrystalline models. Monte Carlo and Molecular Dynamics simulations were used to achieve both mechanical and chemical equilibrium in all models. The first part of the results showed improved strength, which is included the yield strength and ultimate strength in the applied tensile loading through the addition of 5 at% Mg to nanocrystalline aluminum. By viewing atomic structures, it clearly shows the multiple strengthening mechanisms related to doping in Al-Mg alloys. The strength me...
In this study, the interaction of edge dislocations with nano-scale voids was investigated for the f...
In this study, the interaction of edge dislocations with nano-scale voids was investigated for the f...
Dislocations (line defects) and grain boundaries (planar defects) are two types of lattice defects t...
Atomistic simulations have been used to study the deformation mechanisms of nanocrystalline pure Al ...
Bulk nanocrystalline (NC) metals and alloys demonstrating very high ultimate strength compared to co...
The paper studies the stress-strain and fracture behaviour of nanocrystalline (NC) pure Al and NC bi...
The influence of the temperature and sort of alloying element on the deformation of the nanocrystall...
Nanocrystalline metals exhibit many excellent mechanical properties and their underlying deformation...
Atomistic simulations are employed in this thesis to investigate defect nucleation and free volume o...
Mg alloys have excellent strength to weight ratio but their use is limited by their poor room temper...
A major difference between coarse-grained materials and nanocrystalline materials is the volume frac...
Polycrystalline metallic materials commonly exhibit the Hall-Petch relationship, which states that d...
This dissertation describes the development and testing of modified embedded atom method (MEAM) inte...
Magnesium is the lightest engineering metal. Replacing steel with Mg based materials in automotive a...
In the present study, the mechanical properties of a single crystal and nanocrystalline aluminum wer...
In this study, the interaction of edge dislocations with nano-scale voids was investigated for the f...
In this study, the interaction of edge dislocations with nano-scale voids was investigated for the f...
Dislocations (line defects) and grain boundaries (planar defects) are two types of lattice defects t...
Atomistic simulations have been used to study the deformation mechanisms of nanocrystalline pure Al ...
Bulk nanocrystalline (NC) metals and alloys demonstrating very high ultimate strength compared to co...
The paper studies the stress-strain and fracture behaviour of nanocrystalline (NC) pure Al and NC bi...
The influence of the temperature and sort of alloying element on the deformation of the nanocrystall...
Nanocrystalline metals exhibit many excellent mechanical properties and their underlying deformation...
Atomistic simulations are employed in this thesis to investigate defect nucleation and free volume o...
Mg alloys have excellent strength to weight ratio but their use is limited by their poor room temper...
A major difference between coarse-grained materials and nanocrystalline materials is the volume frac...
Polycrystalline metallic materials commonly exhibit the Hall-Petch relationship, which states that d...
This dissertation describes the development and testing of modified embedded atom method (MEAM) inte...
Magnesium is the lightest engineering metal. Replacing steel with Mg based materials in automotive a...
In the present study, the mechanical properties of a single crystal and nanocrystalline aluminum wer...
In this study, the interaction of edge dislocations with nano-scale voids was investigated for the f...
In this study, the interaction of edge dislocations with nano-scale voids was investigated for the f...
Dislocations (line defects) and grain boundaries (planar defects) are two types of lattice defects t...