Porosity is a key parameter determining the functional application limits of polymeric parts produced by laser sintering (LS). In this paper, X-ray computed tomography (CT) is used to investigate the influence of the LS scanning parameters (laser power, hatch spacing, and scan speed) and part or feature size on the distribution and size of pores within polyamide-12 (PA12) laser sintered parts. CT model slices are created parallel to the original LS manufacturing layers in order to determine the porosity distribution and variation within each layer as well as along subsequent layers. Mapping the porosity distribution within these slices onto the laser scanning trajectory moreover allows investigating the influence of LS scanning parameters. ...
Qualification of new materials for the laser sintering (SLS) process includes development of suitab...
Additive manufacturing (AM) is emerging as an important manufacturing sector, due to its almost unli...
In this work, systematic studies were carried out on SLS (selective laser sintering) printed samples...
Porosity is a key parameter determining the functional application limits of polymeric parts produce...
Laser Sintering is an Additive Manufacturing technique increasingly used to produce functional parts...
Laser Sintering is an Additive Manufacturing technique increasingly used to produce functional parts...
Polymeric parts produced by Laser Sintering (LS) present a consistent amount of pores with a wide po...
Laser Sintering of polymers is an Additive Manufacturing process that allows to produce parts layer ...
Literature reports on many cases where X-ray Computed Tomography (CT) has been used to measure the ...
Polymeric parts produced by Laser Sintering (LS) present a consistent amount of pores w...
In this work Computer Tomography (CT) is used to investigate the influence of the mach...
Laser Sintering (LS) is an Additive Manufacturing (AM) technology for polymers processing which is i...
AbstractLaser Sintering (LS) is an Additive Manufacturing (AM) technology for polymers processing wh...
Laser Sintering (LS) is an additive manufacturing technology that is progressively used to manufactu...
cited By 35International audienceThe microstructure and properties of plastic parts made by laser si...
Qualification of new materials for the laser sintering (SLS) process includes development of suitab...
Additive manufacturing (AM) is emerging as an important manufacturing sector, due to its almost unli...
In this work, systematic studies were carried out on SLS (selective laser sintering) printed samples...
Porosity is a key parameter determining the functional application limits of polymeric parts produce...
Laser Sintering is an Additive Manufacturing technique increasingly used to produce functional parts...
Laser Sintering is an Additive Manufacturing technique increasingly used to produce functional parts...
Polymeric parts produced by Laser Sintering (LS) present a consistent amount of pores with a wide po...
Laser Sintering of polymers is an Additive Manufacturing process that allows to produce parts layer ...
Literature reports on many cases where X-ray Computed Tomography (CT) has been used to measure the ...
Polymeric parts produced by Laser Sintering (LS) present a consistent amount of pores w...
In this work Computer Tomography (CT) is used to investigate the influence of the mach...
Laser Sintering (LS) is an Additive Manufacturing (AM) technology for polymers processing which is i...
AbstractLaser Sintering (LS) is an Additive Manufacturing (AM) technology for polymers processing wh...
Laser Sintering (LS) is an additive manufacturing technology that is progressively used to manufactu...
cited By 35International audienceThe microstructure and properties of plastic parts made by laser si...
Qualification of new materials for the laser sintering (SLS) process includes development of suitab...
Additive manufacturing (AM) is emerging as an important manufacturing sector, due to its almost unli...
In this work, systematic studies were carried out on SLS (selective laser sintering) printed samples...