In this paper we suggest a new method of producing a Fe-28 wt% Cu composite by compacting and subsequent sintering of bimetallic nanoparticles made of metals with limited mutual miscibility: iron and copper. The influence of the temperature of annealing on the structure and phase composition of consolidated composite samples has been analyzed. It has been shown that annealing in the temperature range of 200–400 °C induces the processes of low-temperature sintering of copper and iron. These processes are accompanied by the growth of the size of coherent scattering regions and the separation of the metallic components of nanoparticles. During thermal treatment in the range between 400 and 600 °C, adjacent sidewalls of large particles are weld...
The study was conducted on the influence of chemical precipitation of copper on the change in the ph...
The immiscible Cu-Fe system is often used as a base for advanced heterogeneous alloys. With a suitab...
The most important issue in the processing of nanoscale metal powders is whether the metal nanopowde...
In this paper we suggest a new method of producing a Fe-28 wt% Cu composite by compacting and subseq...
Nanotechnology has multiple and enormous advantages for all application. Therefore, this research is...
A new route has been developed to produce full-density, bulk, two-phase nanocomposites. Nanocrystall...
The purpose of this study is an attempt to obtain nanocrystalline bulk Cu-40 at.% Fe alloy by mechan...
The microstructure of Fe-40%wtCu nanocrystalline powders, prepared by mechanical alloying, was studi...
Nanoparticle agglomerates of passivated Fe (n-Fe) and Fe0.96Cu0.04 (n-Fe0.96Cu0.04), synthesized thr...
Although Cu and Fe are immiscible under equilibrium conditions, they can form supersaturated solid s...
AbstractIn this paper the high-temperature consolidation of bimodal powder mixtures was investigated...
Copper-matrix composites have received a lot of attention and are used widely in various application...
Continuous dilatometry and metallographic techniques have been used to study the..dimensional change...
Copper and iron are immiscible elements according to the equilibrium phase diagram, but they can for...
In order to improve the homogeneity of spherical Fe-rich particles within the Cu-rich matrix, the Cu...
The study was conducted on the influence of chemical precipitation of copper on the change in the ph...
The immiscible Cu-Fe system is often used as a base for advanced heterogeneous alloys. With a suitab...
The most important issue in the processing of nanoscale metal powders is whether the metal nanopowde...
In this paper we suggest a new method of producing a Fe-28 wt% Cu composite by compacting and subseq...
Nanotechnology has multiple and enormous advantages for all application. Therefore, this research is...
A new route has been developed to produce full-density, bulk, two-phase nanocomposites. Nanocrystall...
The purpose of this study is an attempt to obtain nanocrystalline bulk Cu-40 at.% Fe alloy by mechan...
The microstructure of Fe-40%wtCu nanocrystalline powders, prepared by mechanical alloying, was studi...
Nanoparticle agglomerates of passivated Fe (n-Fe) and Fe0.96Cu0.04 (n-Fe0.96Cu0.04), synthesized thr...
Although Cu and Fe are immiscible under equilibrium conditions, they can form supersaturated solid s...
AbstractIn this paper the high-temperature consolidation of bimodal powder mixtures was investigated...
Copper-matrix composites have received a lot of attention and are used widely in various application...
Continuous dilatometry and metallographic techniques have been used to study the..dimensional change...
Copper and iron are immiscible elements according to the equilibrium phase diagram, but they can for...
In order to improve the homogeneity of spherical Fe-rich particles within the Cu-rich matrix, the Cu...
The study was conducted on the influence of chemical precipitation of copper on the change in the ph...
The immiscible Cu-Fe system is often used as a base for advanced heterogeneous alloys. With a suitab...
The most important issue in the processing of nanoscale metal powders is whether the metal nanopowde...