Copper is a key material for cooling of thermally stressed components in modern aerospace propulsion systems, due to its high thermal conductivity. The use of copper materials for such applications requires both high material strength and high stability at high temperatures, which can be achieved by the concept of oxide dispersion strengthening. In the present work, we demonstrate the oxide reinforcement of two highly conductive precipitation-strengthened Cu-Cr-Nb alloys using laser additive manufacturing. Gas-atomized Cu-3.3Cr-0.5Nb and Cu-3.3Cr-1.5Nb (wt.%) powder materials are decorated with Y2O3 nanoparticles by mechanical alloying in a planetary mill and followed by consolidation by the laser additive manufacturing process of laser pow...
A new route for the synthesis of powder composites suitable for processing with laser additive manuf...
Designing a metastable microstructure with a coherent nano-sized precipitation phase in the matrix i...
The hardening of copper alloy by using powder metallurgy techniques and analysis of its effects on t...
Laser additive manufacturing (LAM) of metallic alloys has emerged as a promising manufacturing proce...
Copper–chrome–niobium alloys exhibit excellent thermal and electrical properties combined with high ...
Fabrication of fully dense and highly conductive copper alloy parts via laser-based additive manufac...
Dispersion strengthened copper alloys have been produced following an innovative powder metallurgy r...
Copper is widely used in high heat flux and electrical applications because of its excellent electri...
Additive manufacturing (AM) has gained attention in recent decades. Due to excellent mechanical and ...
International audienceCuCrZr is a precipitation hardening alloy, used for its good electrical and th...
Owing to the high optical reflectivity of copper, silver, and gold in the infrared region, high lase...
Pure Copper (Cu) is very difficult to prepare using selective laser melting (SLM) technology. This w...
Copper (Cu) has high thermal conductivity and is thus ideal for high heat flux, thermal heat sink ap...
Additive manufacturing of Cu is interesting for many applications where high thermal and electric co...
Laser powder bed fusion (LPBF) technology is beneficial for the fabrication of thermal conductive ma...
A new route for the synthesis of powder composites suitable for processing with laser additive manuf...
Designing a metastable microstructure with a coherent nano-sized precipitation phase in the matrix i...
The hardening of copper alloy by using powder metallurgy techniques and analysis of its effects on t...
Laser additive manufacturing (LAM) of metallic alloys has emerged as a promising manufacturing proce...
Copper–chrome–niobium alloys exhibit excellent thermal and electrical properties combined with high ...
Fabrication of fully dense and highly conductive copper alloy parts via laser-based additive manufac...
Dispersion strengthened copper alloys have been produced following an innovative powder metallurgy r...
Copper is widely used in high heat flux and electrical applications because of its excellent electri...
Additive manufacturing (AM) has gained attention in recent decades. Due to excellent mechanical and ...
International audienceCuCrZr is a precipitation hardening alloy, used for its good electrical and th...
Owing to the high optical reflectivity of copper, silver, and gold in the infrared region, high lase...
Pure Copper (Cu) is very difficult to prepare using selective laser melting (SLM) technology. This w...
Copper (Cu) has high thermal conductivity and is thus ideal for high heat flux, thermal heat sink ap...
Additive manufacturing of Cu is interesting for many applications where high thermal and electric co...
Laser powder bed fusion (LPBF) technology is beneficial for the fabrication of thermal conductive ma...
A new route for the synthesis of powder composites suitable for processing with laser additive manuf...
Designing a metastable microstructure with a coherent nano-sized precipitation phase in the matrix i...
The hardening of copper alloy by using powder metallurgy techniques and analysis of its effects on t...