Owing to the physical properties of copper and its alloys it is challenging to achieve good surface quality and low porosity by the widely used laser-based additive manufacturing processes. This paper deals with the role of alloy composition, powder size and process parameters in additive manufacturing with laser beam melting machine (with power up to 100 W). Test parts were produced in pure copper and CuNiSi(Cr) alloys. The porosity was investigated as a function of different process parameters and powder size ranges. The effects of the alloy physical properties (reflectivity, thermal conductivity, melting range and surface tension) are discussed. Moreover, the effect of thermal treatment on the properties of CuNiSi parts was assessed in c...
This diploma thesis deals with finding copper alloy suitable for processing SLM technology and deter...
Copper–chrome–niobium alloys exhibit excellent thermal and electrical properties combined with high ...
This book chapter elaborates on different additive manufacturing (AM) processes of copper and copper...
The demand for additive manufacturing (AM) of Cu and its alloys shows an increased trend from the en...
In the field of Additive Manufacturing (AM), interest in the production of pure copper parts is grow...
International audienceAdditive Manufacturing (AM) has become a relatively common material forming te...
Copper (Cu) and Cu-alloy are good candidates for the engineered components that require good thermal...
Additive manufacturing (AM) has gained attention in recent decades. Due to excellent mechanical and ...
This work investigates the use of fine Cu powder, with ~ 20 vol% smaller than 15 µm size, for the se...
Owing to the high optical reflectivity of copper, silver, and gold in the infrared region, high lase...
Fabrication of fully dense and highly conductive copper alloy parts via laser-based additive manufac...
This work investigates the use of fine Cu powder, with ~ 20 vol% smaller than 15 μm size, for the s...
In this study, a novel approach of powder surface alloying is proposed to address the issue of insuf...
In the work is used the processing of metallic material by the method of Selective Laser Melting. Th...
Additive manufacturing (AM) is a group of processing technologies which has the potential to revolut...
This diploma thesis deals with finding copper alloy suitable for processing SLM technology and deter...
Copper–chrome–niobium alloys exhibit excellent thermal and electrical properties combined with high ...
This book chapter elaborates on different additive manufacturing (AM) processes of copper and copper...
The demand for additive manufacturing (AM) of Cu and its alloys shows an increased trend from the en...
In the field of Additive Manufacturing (AM), interest in the production of pure copper parts is grow...
International audienceAdditive Manufacturing (AM) has become a relatively common material forming te...
Copper (Cu) and Cu-alloy are good candidates for the engineered components that require good thermal...
Additive manufacturing (AM) has gained attention in recent decades. Due to excellent mechanical and ...
This work investigates the use of fine Cu powder, with ~ 20 vol% smaller than 15 µm size, for the se...
Owing to the high optical reflectivity of copper, silver, and gold in the infrared region, high lase...
Fabrication of fully dense and highly conductive copper alloy parts via laser-based additive manufac...
This work investigates the use of fine Cu powder, with ~ 20 vol% smaller than 15 μm size, for the s...
In this study, a novel approach of powder surface alloying is proposed to address the issue of insuf...
In the work is used the processing of metallic material by the method of Selective Laser Melting. Th...
Additive manufacturing (AM) is a group of processing technologies which has the potential to revolut...
This diploma thesis deals with finding copper alloy suitable for processing SLM technology and deter...
Copper–chrome–niobium alloys exhibit excellent thermal and electrical properties combined with high ...
This book chapter elaborates on different additive manufacturing (AM) processes of copper and copper...