The purpose of this study is an attempt to obtain nanocrystalline bulk Cu-40 at.% Fe alloy by mechanical alloying followed by consolidation process under 7 GPa and annealing. The transformations occurring in the material were studied by the use of X-ray diffraction. The structural investigations revealed that consolidation enabled supersaturated Cu(Fe) to precipitate out Cu4Fe and CuFe4 intermetallics. A limited grain growth was noticed after annealing. The results of microhardness have shown that the hardening increases similarly up to 40 h milling. The variation of microhardness as a function of the reciprocal square root of the grain size demonstrates that the rate of hardening is similar to that predicted by the Hall-Petch behaviorThis ...
The sinterability of a commercial Fe-Cu pre-alloyed powder, designed to be used as a metallic bond i...
Copper and iron are immiscible elements according to the equilibrium phase diagram, but they can for...
A state of the art, custom-built direct-metal deposition (DMD)-based additive manufacturing (AM) sys...
Nanocrystalline Cu(Fe) solid solution was successfully synthesized by using high-energy mechanical m...
A new route has been developed to produce full-density, bulk, two-phase nanocomposites. Nanocrystall...
The microstructure of Fe-40%wtCu nanocrystalline powders, prepared by mechanical alloying, was studi...
Although Cu and Fe are immiscible under equilibrium conditions, they can form supersaturated solid s...
The mechanical properties of mechanically milled copper and copper-30 iron were studied in the as-mi...
The compressibility of nanostructured FeCu materials prepared by mechanical milling has been investi...
In this study, the formation of super saturated solid solution in the binary Cu-Fe system was invest...
This article presents a method for the sample preparation and characterisation of bulk copper having...
The immiscible Cu-Fe system is often used as a base for advanced heterogeneous alloys. With a suitab...
This thesis deals with investigations regarding the microstructural development of severe plasticall...
In this paper we suggest a new method of producing a Fe-28 wt% Cu composite by compacting and subseq...
International audienceA Cu-Fe nanocomposite containing 50 nm thick iron filaments dispersed in a cop...
The sinterability of a commercial Fe-Cu pre-alloyed powder, designed to be used as a metallic bond i...
Copper and iron are immiscible elements according to the equilibrium phase diagram, but they can for...
A state of the art, custom-built direct-metal deposition (DMD)-based additive manufacturing (AM) sys...
Nanocrystalline Cu(Fe) solid solution was successfully synthesized by using high-energy mechanical m...
A new route has been developed to produce full-density, bulk, two-phase nanocomposites. Nanocrystall...
The microstructure of Fe-40%wtCu nanocrystalline powders, prepared by mechanical alloying, was studi...
Although Cu and Fe are immiscible under equilibrium conditions, they can form supersaturated solid s...
The mechanical properties of mechanically milled copper and copper-30 iron were studied in the as-mi...
The compressibility of nanostructured FeCu materials prepared by mechanical milling has been investi...
In this study, the formation of super saturated solid solution in the binary Cu-Fe system was invest...
This article presents a method for the sample preparation and characterisation of bulk copper having...
The immiscible Cu-Fe system is often used as a base for advanced heterogeneous alloys. With a suitab...
This thesis deals with investigations regarding the microstructural development of severe plasticall...
In this paper we suggest a new method of producing a Fe-28 wt% Cu composite by compacting and subseq...
International audienceA Cu-Fe nanocomposite containing 50 nm thick iron filaments dispersed in a cop...
The sinterability of a commercial Fe-Cu pre-alloyed powder, designed to be used as a metallic bond i...
Copper and iron are immiscible elements according to the equilibrium phase diagram, but they can for...
A state of the art, custom-built direct-metal deposition (DMD)-based additive manufacturing (AM) sys...