Laser Sintering (LS) is an additive manufacturing technology that is progressively used to manufacture functional products for end-use applications. However, LS technology provides limited ability to produce thin-walled structures that feature high material quality. A key parameter determining the quality of LS polymeric parts is porosity. This article presents a new approach towards clarifying the porosity characteristics of thin-walled structures produced by LS. Therefore, thin sheets of different thickness built in different orientations within the building chamber are examined by means of X-ray micro tomography. The porosity analysis includes the overall porosity, pore number density, pore size distribution and porosity distribution alo...
Figure2. Relationship of porosity and characteristic length. Figure2-H: porosity and wall thickness ...
cited By 35International audienceThe microstructure and properties of plastic parts made by laser si...
The main aim of the present paper is to evaluate the porosity and mechanical properties of Ti6Al4V a...
Polymeric parts produced by Laser Sintering (LS) present a consistent amount of pores w...
Laser Sintering is an Additive Manufacturing technique increasingly used to produce functional parts...
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...
AbstractLaser Sintering (LS) is an Additive Manufacturing (AM) technology for polymers processing wh...
Polymeric parts produced by Laser Sintering (LS) present a consistent amount of pores with a wide po...
Literature reports on many cases where X-ray Computed Tomography (CT) has been used to measure the ...
Laser Sintering (LS) is an Additive Manufacturing (AM) technology for polymers processing which is i...
Selective laser sintering (SLS) is a rapid prototyping method in which three-dimensional objects are...
In this work, systematic studies were carried out on SLS (selective laser sintering) printed samples...
Porous structures have unique physical properties(mechanical, density, etc.) that are related to th...
Selective laser melting (SLM) as additive manufacturing technology is studied in this paper for the ...
Figure2. Relationship of porosity and characteristic length. Figure2-H: porosity and wall thickness ...
cited By 35International audienceThe microstructure and properties of plastic parts made by laser si...
The main aim of the present paper is to evaluate the porosity and mechanical properties of Ti6Al4V a...
Polymeric parts produced by Laser Sintering (LS) present a consistent amount of pores w...
Laser Sintering is an Additive Manufacturing technique increasingly used to produce functional parts...
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...
AbstractLaser Sintering (LS) is an Additive Manufacturing (AM) technology for polymers processing wh...
Polymeric parts produced by Laser Sintering (LS) present a consistent amount of pores with a wide po...
Literature reports on many cases where X-ray Computed Tomography (CT) has been used to measure the ...
Laser Sintering (LS) is an Additive Manufacturing (AM) technology for polymers processing which is i...
Selective laser sintering (SLS) is a rapid prototyping method in which three-dimensional objects are...
In this work, systematic studies were carried out on SLS (selective laser sintering) printed samples...
Porous structures have unique physical properties(mechanical, density, etc.) that are related to th...
Selective laser melting (SLM) as additive manufacturing technology is studied in this paper for the ...
Figure2. Relationship of porosity and characteristic length. Figure2-H: porosity and wall thickness ...
cited By 35International audienceThe microstructure and properties of plastic parts made by laser si...
The main aim of the present paper is to evaluate the porosity and mechanical properties of Ti6Al4V a...