Solid-solution copper alloys are standard and widely used conductive materials. However, it is generally considered difficult to significantly improve the balance between the strength and electrical conductivity of these alloys. Here, we designed copper alloys that exhibit high strength and conductivity by using solid-solution hardening enhanced by supersaturation with Mg. Cu–Mg alloy has a conductivity at least three times higher than that of the representative solid-solution Cu–Sn, while retaining comparable strength. Cu–Al–Mg alloy showed greater strength and conductivity than Cu–Sn
Among the many aluminum alloys which have been studied are the binary copper-aluminum alloys. These ...
Copper alloys with chromium, hafnium, and scandium combining enhanced strength as well as high elect...
Nine Al-(1-3)Mg-(0-0.4)Cu-0.15Si-0.25Mn (in wt%) alloys with potential applications in both packagin...
Solid-solution copper alloys are standard and widely used conductive materials. However, it is gener...
International audienceSome novel high conductivity–high strength materials were designed in the bina...
Significantly improving the balance between the mechanical strength and electrical conductivity of s...
High strength and high conductivity (HSHC) are two intrinsic properties difficult to combine in meta...
Copper alloys, combining optimized strength with high electrical and thermal conductivity, are analy...
Cu/Mg-composites, the copper matrix of which contains 1, 7 and 2730 magnesium filaments, were obtain...
Purpose: Precipitation hardening by nano-sized precipitates had proven to be the most adequate way t...
Many important applications of copper require a combination of properties that fall into the followi...
A mother alloy of 10% Cr and 90% Cu was prepared by sintering. This was alloyed with the Cu melt and...
For development of new composition materials for the electric contacts, which would differ by high e...
This research is part of a project whose scope was to investigate the engineering properties of new ...
Cu-Cr has been proposed to be a good substitute to replace the Cu-Be system for the high strength hi...
Among the many aluminum alloys which have been studied are the binary copper-aluminum alloys. These ...
Copper alloys with chromium, hafnium, and scandium combining enhanced strength as well as high elect...
Nine Al-(1-3)Mg-(0-0.4)Cu-0.15Si-0.25Mn (in wt%) alloys with potential applications in both packagin...
Solid-solution copper alloys are standard and widely used conductive materials. However, it is gener...
International audienceSome novel high conductivity–high strength materials were designed in the bina...
Significantly improving the balance between the mechanical strength and electrical conductivity of s...
High strength and high conductivity (HSHC) are two intrinsic properties difficult to combine in meta...
Copper alloys, combining optimized strength with high electrical and thermal conductivity, are analy...
Cu/Mg-composites, the copper matrix of which contains 1, 7 and 2730 magnesium filaments, were obtain...
Purpose: Precipitation hardening by nano-sized precipitates had proven to be the most adequate way t...
Many important applications of copper require a combination of properties that fall into the followi...
A mother alloy of 10% Cr and 90% Cu was prepared by sintering. This was alloyed with the Cu melt and...
For development of new composition materials for the electric contacts, which would differ by high e...
This research is part of a project whose scope was to investigate the engineering properties of new ...
Cu-Cr has been proposed to be a good substitute to replace the Cu-Be system for the high strength hi...
Among the many aluminum alloys which have been studied are the binary copper-aluminum alloys. These ...
Copper alloys with chromium, hafnium, and scandium combining enhanced strength as well as high elect...
Nine Al-(1-3)Mg-(0-0.4)Cu-0.15Si-0.25Mn (in wt%) alloys with potential applications in both packagin...