The kinetics of composite particle formation during attritor milling of insoluble binary elemental powders have been examined. The effects of processing conditions (i.e., mill power, temperature, and charge ratio) on these kinetics were studied. Particle size distributions and fractions of elemental and composite particles were determined as functions of milling time and processing conditions. This allowed the deduction of phenomenological rate constants describing the propensity for fracture and welding during processing. For the mill-operating conditions investigated, the number of particles in the mill generally decreased with milling time, indicating a greater tendency for particle welding than fracture. Moreover, a bimodal size distrib...
The present work focuses on the refinement of the lamellar structure in composite Ag-Cu particles du...
In the present study, alloying of Ni with Cu was attempted using Ni and Cu elemental powders via hig...
A model of the mechanical alloying process, applicable to a single collision event involving ductile...
The aim of the current study is to investigate the effect of milling time and speed on mixing prope...
The aim of the current study is to investigate the effect of milling time and speed on mixing proper...
The coarsening behavior of copper nanopowders (50-150 nm in size) during mechanical milling was inve...
Commercial Cu powders were subjected to ball milling at different collision energies. The resulting ...
The fabrication of copper–graphite composites by a milling process was investigated using a centrifu...
The effects of processing parameters in ball milling and the different behaviors of Cu-Nb and Cu-Mo ...
The influence of enthalpy of mixing and elemental mechanical characteristics on the kinetics of mech...
The coarsening behavior of copper nanopowders (50-150. nm in size) during mechanical milling was inv...
AbstractThe process of nanocrystalline structure formation during mechanical milling was studied in ...
Mechanical alloying is a process in which the formation of solid solutions or compounds during high ...
The role of new particle surfaces in synthesizing bulk nanostructured metallic materials by consolid...
The phase formation of carbides and borides during high-energy ball milling has been investigated by...
The present work focuses on the refinement of the lamellar structure in composite Ag-Cu particles du...
In the present study, alloying of Ni with Cu was attempted using Ni and Cu elemental powders via hig...
A model of the mechanical alloying process, applicable to a single collision event involving ductile...
The aim of the current study is to investigate the effect of milling time and speed on mixing prope...
The aim of the current study is to investigate the effect of milling time and speed on mixing proper...
The coarsening behavior of copper nanopowders (50-150 nm in size) during mechanical milling was inve...
Commercial Cu powders were subjected to ball milling at different collision energies. The resulting ...
The fabrication of copper–graphite composites by a milling process was investigated using a centrifu...
The effects of processing parameters in ball milling and the different behaviors of Cu-Nb and Cu-Mo ...
The influence of enthalpy of mixing and elemental mechanical characteristics on the kinetics of mech...
The coarsening behavior of copper nanopowders (50-150. nm in size) during mechanical milling was inv...
AbstractThe process of nanocrystalline structure formation during mechanical milling was studied in ...
Mechanical alloying is a process in which the formation of solid solutions or compounds during high ...
The role of new particle surfaces in synthesizing bulk nanostructured metallic materials by consolid...
The phase formation of carbides and borides during high-energy ball milling has been investigated by...
The present work focuses on the refinement of the lamellar structure in composite Ag-Cu particles du...
In the present study, alloying of Ni with Cu was attempted using Ni and Cu elemental powders via hig...
A model of the mechanical alloying process, applicable to a single collision event involving ductile...