AbstractSintered alumina ceramics are used as refractory materials for industrial aluminum furnaces. In this environment the ceramic surface is in permanent contact with molten aluminum resulting in deposition of oxidic material on its surface. Consequently, a lower volume capacity as well as thermal efficiency of the furnaces follows. To reduce oxidic adherence of the ceramic material, two laser-based surface treatment processes were investigated: a powder- based single-step laser cladding and a laser surface remelting. Main objective is to achieve an improved surface quality of the ceramic material considering the industrial requirements as a high process speed
This paper reports an approach to coat a ceramic layer on aluminium alloys by means of chemical reac...
This paper reports an approach to coat a ceramic layer on aluminium alloys by means of chemical reac...
This paper reports an approach to coat a ceramic layer on aluminium alloys by means of chemical reac...
Additive manufacturing (AM; aka 3D printing) has the potential to rapidly shape parts, without compr...
AbstractDirect selective laser sintering (SLS) or selective laser melting (SLM) are additive manufac...
A novel process was developed to firmly coat an aluminium alloy, Al6061, with α-Al2O3 by means of la...
A novel process was developed to firmly coat an aluminium alloy, Al6061, with α-Al2O3 by means of la...
A novel process was developed to firmly coat an aluminium alloy, Al6061, with α-Al2O3 by means of la...
A novel process was developed to firmly coat an aluminium alloy, Al6061, with α-Al2O3 by means of la...
Laser polishing (LP) of aluminium alloys by re-melting is particularly challenging due to their high...
Laser polishing (LP) of aluminium alloys by re-melting is particularly challenging due to their high...
A novel process was developed to firmly coat an aluminium alloy, Al6061, with α-Al2O3 by means of la...
AbstractAdditive manufacturing of alumina by laser is a delicate process and small changes of proces...
This paper reports an approach to coat a ceramic layer on aluminium alloys by means of chemical reac...
This paper reports an approach to coat a ceramic layer on aluminium alloys by means of chemical reac...
This paper reports an approach to coat a ceramic layer on aluminium alloys by means of chemical reac...
This paper reports an approach to coat a ceramic layer on aluminium alloys by means of chemical reac...
This paper reports an approach to coat a ceramic layer on aluminium alloys by means of chemical reac...
Additive manufacturing (AM; aka 3D printing) has the potential to rapidly shape parts, without compr...
AbstractDirect selective laser sintering (SLS) or selective laser melting (SLM) are additive manufac...
A novel process was developed to firmly coat an aluminium alloy, Al6061, with α-Al2O3 by means of la...
A novel process was developed to firmly coat an aluminium alloy, Al6061, with α-Al2O3 by means of la...
A novel process was developed to firmly coat an aluminium alloy, Al6061, with α-Al2O3 by means of la...
A novel process was developed to firmly coat an aluminium alloy, Al6061, with α-Al2O3 by means of la...
Laser polishing (LP) of aluminium alloys by re-melting is particularly challenging due to their high...
Laser polishing (LP) of aluminium alloys by re-melting is particularly challenging due to their high...
A novel process was developed to firmly coat an aluminium alloy, Al6061, with α-Al2O3 by means of la...
AbstractAdditive manufacturing of alumina by laser is a delicate process and small changes of proces...
This paper reports an approach to coat a ceramic layer on aluminium alloys by means of chemical reac...
This paper reports an approach to coat a ceramic layer on aluminium alloys by means of chemical reac...
This paper reports an approach to coat a ceramic layer on aluminium alloys by means of chemical reac...
This paper reports an approach to coat a ceramic layer on aluminium alloys by means of chemical reac...
This paper reports an approach to coat a ceramic layer on aluminium alloys by means of chemical reac...