AbstractLaser Sintering (LS) is an Additive Manufacturing (AM) technology for polymers processing which is increasingly being used to produce functional products with designs not achievable with traditional manufacturing technologies. Lightweight cellular structures are a good example of complex designs which are increasingly finding applications in AM parts. However, it is not yet clear how the LS process affects the porosity and geometrical characteristics of the cell structural elements. Getting this information allows to perform quality control of the LS process, gives insights into how to improve it, and might help to take into account manufacturing process variability during the design phase.In this work a test artifact containing cyl...
Laser Sintering (LS) is an additive manufacturing technology that is progressively used to manufactu...
Laser additive manufacturing is an established and constantly developing technique. Structural asses...
Purpose X-Ray-computed micro-tomography (micro-CT) is relatively well established in additive manuf...
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 of polymers is an Additive Manufacturing process that allows to produce parts layer ...
Polymeric parts produced by Laser Sintering (LS) present a consistent amount of pores w...
Polymeric parts produced by Laser Sintering (LS) present a consistent amount of pores with a wide po...
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...
In this work Computer Tomography (CT) is used to investigate the influence of the mach...
Laser Sintering is an Additive Manufacturing technique increasingly used to produce functional parts...
Literature reports on many cases where X-ray Computed Tomography (CT) has been used to measure the ...
Additive Manufacturing (AM) is a novel method for fabricating parts from three-dimensional model dat...
Quality control and microstructure characterization are essential corner stones of the process optim...
Laser Sintering (LS) is an additive manufacturing technology that is progressively used to manufactu...
Laser additive manufacturing is an established and constantly developing technique. Structural asses...
Purpose X-Ray-computed micro-tomography (micro-CT) is relatively well established in additive manuf...
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 of polymers is an Additive Manufacturing process that allows to produce parts layer ...
Polymeric parts produced by Laser Sintering (LS) present a consistent amount of pores w...
Polymeric parts produced by Laser Sintering (LS) present a consistent amount of pores with a wide po...
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...
In this work Computer Tomography (CT) is used to investigate the influence of the mach...
Laser Sintering is an Additive Manufacturing technique increasingly used to produce functional parts...
Literature reports on many cases where X-ray Computed Tomography (CT) has been used to measure the ...
Additive Manufacturing (AM) is a novel method for fabricating parts from three-dimensional model dat...
Quality control and microstructure characterization are essential corner stones of the process optim...
Laser Sintering (LS) is an additive manufacturing technology that is progressively used to manufactu...
Laser additive manufacturing is an established and constantly developing technique. Structural asses...
Purpose X-Ray-computed micro-tomography (micro-CT) is relatively well established in additive manuf...