Some novel high conductivity–high strength materials were designed in the binary Cu–Mg. They exhibit an excellent balance between strength and electrical properties. The properties and the performance of the designed materials are compared with the main Cu-based alloys and the analysis shows that they perform equally to the best one (Cu–Be). Furthermore, we show that an increase of Mg content modifies the microstructure feature and leads to a strong increase of strength without any significant deterioration of the electrical conductivity. This behavior was attributed to the formation of eutectic islands in which high density of Cu2Mg nanoparticles precipitate.Alliages Conducteurs à Haute Résistance Mécanique (New High Strength-High Conducti...
Pre-aging treatment before cold rolling and final aging was introduced to optimize the mechanical pr...
High strength-to-weight nanocrystalline alloy enabled conductor (NEC) prototypes were successfully d...
Significantly improving the balance between the mechanical strength and electrical conductivity of s...
Some novel high conductivity–high strength materials were designed in the binary Cu–Mg. They exhibit...
Solid-solution copper alloys are standard and widely used conductive materials. However, it is gener...
Les alliages conducteurs à haute tenue mécanique sont utilisés dans de nombreux domaines tels que le...
Copper-based high strength conductive alloys are used in a myriad of applications such as transport,...
Cu/Mg-composites, the copper matrix of which contains 1, 7 and 2730 magnesium filaments, were obtain...
High strength and high conductivity (HSHC) are two intrinsic properties difficult to combine in meta...
Cu-based alloys have a wide range of applications in the electronics industry, communications indust...
Both a Cu–26 wt % Ag (Fe-free) alloy and Cu–26 wt % Ag–0.1 wt % Fe (Fe-doping) alloy were subjected ...
The microstructure design of Cu-Cr-Zr alloys, the effect of thermomechanical treatment based on seve...
Multi-pass equal-channel angular pressing (EACP) was applied to produce ultrafine-grained (UFG) Cu-0...
The material, obtained in reactor, is a composition, consisting of a copper matrix of microcrystalli...
International audienceWe chose high strength and high conductive Cu-Nb composite as strengthening co...
Pre-aging treatment before cold rolling and final aging was introduced to optimize the mechanical pr...
High strength-to-weight nanocrystalline alloy enabled conductor (NEC) prototypes were successfully d...
Significantly improving the balance between the mechanical strength and electrical conductivity of s...
Some novel high conductivity–high strength materials were designed in the binary Cu–Mg. They exhibit...
Solid-solution copper alloys are standard and widely used conductive materials. However, it is gener...
Les alliages conducteurs à haute tenue mécanique sont utilisés dans de nombreux domaines tels que le...
Copper-based high strength conductive alloys are used in a myriad of applications such as transport,...
Cu/Mg-composites, the copper matrix of which contains 1, 7 and 2730 magnesium filaments, were obtain...
High strength and high conductivity (HSHC) are two intrinsic properties difficult to combine in meta...
Cu-based alloys have a wide range of applications in the electronics industry, communications indust...
Both a Cu–26 wt % Ag (Fe-free) alloy and Cu–26 wt % Ag–0.1 wt % Fe (Fe-doping) alloy were subjected ...
The microstructure design of Cu-Cr-Zr alloys, the effect of thermomechanical treatment based on seve...
Multi-pass equal-channel angular pressing (EACP) was applied to produce ultrafine-grained (UFG) Cu-0...
The material, obtained in reactor, is a composition, consisting of a copper matrix of microcrystalli...
International audienceWe chose high strength and high conductive Cu-Nb composite as strengthening co...
Pre-aging treatment before cold rolling and final aging was introduced to optimize the mechanical pr...
High strength-to-weight nanocrystalline alloy enabled conductor (NEC) prototypes were successfully d...
Significantly improving the balance between the mechanical strength and electrical conductivity of s...