A Monte Carlo simulation method is used to study the energetics and configuration of binary alloys when grain boundary states are included as potential equilibrium features. For certain sets of alloy properties, a nanostructured grain assembly is found to be the most energetically favorable state, and is stabilized by grain boundary segregation of solute. The conditions for stability against grain coarsening and the “grain boundary energy” requirement are clarified, with emphasis on the closed system conditions that prevail in nanostructured alloys. Two thermodynamic parameters, the grain boundary area potential and the grain boundary formation energy, are quantitatively disentangled and shown to differently reflect grain stability and the ...
In nanocrystalline alloys, a range of configurations c an have low energies when solute atoms have ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Alloying nanocrystalline materials to stabilize them against grain growth is proving a critical enab...
Improvement in material properties as a result of grain size refinement to the nanoscale is often li...
The instability of nanocrystalline materials against both grain growth and bulk phase separation is ...
A free-energy function for binary polycrystalline solid solutions is developed based on pairwise nea...
Grain boundary segregation can reduce the driving force for grain growth in nanocrystalline material...
Grain boundary segregation provides a method for stabilization of nanocrystalline metals—an alloying...
Abstract Nanocrystalline metals are transitioning from laboratory curiosities to engi...
Grain boundaries are the dominating type of defect in nanocrystalline materials. Understanding their...
Grain boundary segregation has been established through both simulation and experiments as a success...
In the last few decades, nanocrystalline metals have been of increasing interest. Their ability to s...
Thermal stability in nanocrystalline alloys has been extensively explored while using both experimen...
Thermal stability in nanocrystalline alloys has been extensively explored while using both experimen...
In nanocrystalline alloys, a range of configurations c an have low energies when solute atoms have ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Alloying nanocrystalline materials to stabilize them against grain growth is proving a critical enab...
Improvement in material properties as a result of grain size refinement to the nanoscale is often li...
The instability of nanocrystalline materials against both grain growth and bulk phase separation is ...
A free-energy function for binary polycrystalline solid solutions is developed based on pairwise nea...
Grain boundary segregation can reduce the driving force for grain growth in nanocrystalline material...
Grain boundary segregation provides a method for stabilization of nanocrystalline metals—an alloying...
Abstract Nanocrystalline metals are transitioning from laboratory curiosities to engi...
Grain boundaries are the dominating type of defect in nanocrystalline materials. Understanding their...
Grain boundary segregation has been established through both simulation and experiments as a success...
In the last few decades, nanocrystalline metals have been of increasing interest. Their ability to s...
Thermal stability in nanocrystalline alloys has been extensively explored while using both experimen...
Thermal stability in nanocrystalline alloys has been extensively explored while using both experimen...
In nanocrystalline alloys, a range of configurations c an have low energies when solute atoms have ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...