Fabrication of fully dense and highly conductive copper alloy parts via laser-based additive manufacturing (L-AM) is challenging due to the high optical reflectivity and high thermal conductivity. To overcome this, the use of optically absorptive surface-modified copper powders is being evaluated in the laser powder bed fusion (LPBF) process. Although the surface-modified powders exhibit high optical absorption at room temperature, not all of them allow the fabrication of fully dense parts at a laser power below 500 W. Accordingly, this article proposes the use of optically absorptive carburized CuCr1 powder for the consistent fabrication of copper parts. Moreover, a densification mechanism of parts is discussed to explain the distinct LPBF...
The demand for additive manufacturing (AM) of Cu and its alloys shows an increased trend from the en...
This book chapter elaborates on different additive manufacturing (AM) processes of copper and copper...
Recently, we showed that >99% dense CuCrZr parts can be produced by Laser Powder Bed Fusion (L-PBF) ...
Owing to the high optical reflectivity of copper, silver, and gold in the infrared region, high lase...
Additive manufacturing (AM) has gained attention in recent decades. Due to excellent mechanical and ...
Selective laser melting (SLM) of copper is gaining interest because of its potential to make geometr...
In this study, a novel approach of powder surface alloying is proposed to address the issue of insuf...
Additive manufacturing (AM) is a group of processing technologies which has the potential to revolut...
The high optical reflectivity of copper (Cu) in the near infrared (NIR) domain and its elevated heat...
Copper (Cu) and Cu-alloy are good candidates for the engineered components that require good thermal...
International audienceAdditive Manufacturing (AM) has become a relatively common material forming te...
Copper is widely used in high heat flux and electrical applications because of its excellent electri...
Additive manufacturing of Cu is interesting for many applications where high thermal and electric co...
SLM of copper is gaining interest because of its high electrical and thermal conductivity. However, ...
Copper–chrome–niobium alloys exhibit excellent thermal and electrical properties combined with high ...
The demand for additive manufacturing (AM) of Cu and its alloys shows an increased trend from the en...
This book chapter elaborates on different additive manufacturing (AM) processes of copper and copper...
Recently, we showed that >99% dense CuCrZr parts can be produced by Laser Powder Bed Fusion (L-PBF) ...
Owing to the high optical reflectivity of copper, silver, and gold in the infrared region, high lase...
Additive manufacturing (AM) has gained attention in recent decades. Due to excellent mechanical and ...
Selective laser melting (SLM) of copper is gaining interest because of its potential to make geometr...
In this study, a novel approach of powder surface alloying is proposed to address the issue of insuf...
Additive manufacturing (AM) is a group of processing technologies which has the potential to revolut...
The high optical reflectivity of copper (Cu) in the near infrared (NIR) domain and its elevated heat...
Copper (Cu) and Cu-alloy are good candidates for the engineered components that require good thermal...
International audienceAdditive Manufacturing (AM) has become a relatively common material forming te...
Copper is widely used in high heat flux and electrical applications because of its excellent electri...
Additive manufacturing of Cu is interesting for many applications where high thermal and electric co...
SLM of copper is gaining interest because of its high electrical and thermal conductivity. However, ...
Copper–chrome–niobium alloys exhibit excellent thermal and electrical properties combined with high ...
The demand for additive manufacturing (AM) of Cu and its alloys shows an increased trend from the en...
This book chapter elaborates on different additive manufacturing (AM) processes of copper and copper...
Recently, we showed that >99% dense CuCrZr parts can be produced by Laser Powder Bed Fusion (L-PBF) ...