In selective laser sintering (SLS) additive manufacturing (AM), a substantial amount of polyamide 12 materials remains un-sintered, recyclable, and reusable. However, using reclaimed polyamide 12 powder in SLS results in undesirable part surface finish. Very limited research has been done on the improvement of part surface quality and results barely exist on improving or modifying the surface quality of parts using extremely aged powders (powders held close to the heat-affected zones). Aiming to improve the surface quality, we propose a novel approach for SLS with (extremely) aged polyamide 12 powders. By combining material preparation, powder and part characterizations, and SLS with a customized method of post-heating, we obtain par...
Laser sintering (LS) is one of the most versatile rapid prototyping (RP) processes currently availab...
The Selective Laser Sintering (SLS) process has proved to be an excellent method for prototyping fu...
Additive manufacturing (AM) research development as well as its usage has been growing over the past...
In selective laser sintering (SLS) additive manufacturing (AM), a substantial amount of polyamide 1...
Polyamide 12 is one of the most extensively used semi-crystalline polymer materials to date in selec...
Selective Laser Sintering (SLS) is a form of additive manufacturing (“3D printing”) in which objects...
© 2019 IOP Publishing Ltd. All rights reserved. The purpose of this work was determination of the ch...
3D printing, also known as additive manufacturing, is becoming increasingly popular for prototype pr...
Additive manufacturing (AM) technologies are recognized as promising new approaches for the producti...
In the Selective Laser Sintering (SLS) technique, the great majority of the powder involved is not i...
Additive Manufacturing (AM) is close to become a production technique changing the way of part fabri...
Additive manufacturing technologies, such as selective laser melting of polymers enable manufacturin...
The fundamental factors of polymer powders, their importance for successful selective laser sinterin...
Selective Laser Sintering (SLS) with Polyamide 12 is increasingly used for production of functional ...
The term Additive Manufacturing (AM) is used to describe several manufacturing technologies that sha...
Laser sintering (LS) is one of the most versatile rapid prototyping (RP) processes currently availab...
The Selective Laser Sintering (SLS) process has proved to be an excellent method for prototyping fu...
Additive manufacturing (AM) research development as well as its usage has been growing over the past...
In selective laser sintering (SLS) additive manufacturing (AM), a substantial amount of polyamide 1...
Polyamide 12 is one of the most extensively used semi-crystalline polymer materials to date in selec...
Selective Laser Sintering (SLS) is a form of additive manufacturing (“3D printing”) in which objects...
© 2019 IOP Publishing Ltd. All rights reserved. The purpose of this work was determination of the ch...
3D printing, also known as additive manufacturing, is becoming increasingly popular for prototype pr...
Additive manufacturing (AM) technologies are recognized as promising new approaches for the producti...
In the Selective Laser Sintering (SLS) technique, the great majority of the powder involved is not i...
Additive Manufacturing (AM) is close to become a production technique changing the way of part fabri...
Additive manufacturing technologies, such as selective laser melting of polymers enable manufacturin...
The fundamental factors of polymer powders, their importance for successful selective laser sinterin...
Selective Laser Sintering (SLS) with Polyamide 12 is increasingly used for production of functional ...
The term Additive Manufacturing (AM) is used to describe several manufacturing technologies that sha...
Laser sintering (LS) is one of the most versatile rapid prototyping (RP) processes currently availab...
The Selective Laser Sintering (SLS) process has proved to be an excellent method for prototyping fu...
Additive manufacturing (AM) research development as well as its usage has been growing over the past...