Porosity is an inherent feature of additively manufactured components that impairs the mechanical properties. Since porosity depends not only on the process parameters but also on the component geometry, it is necessary to investigate this dependency. This study reveals relationships between porosity, process parameters and component geometry in AlSi10Mg specimens. Micro-computed tomography images of different geometries built with varying parameters were analysed for pore concentrations. The quantity and distribution of pores at overhangs depends on the laser scan speed and the width of the overhang. Similarly, the scan speed influences the effective bead width and thus the pore formation at thin structures. This relationship is revealed b...
Besides the optimisation of process parameters such as laser power or scan speed, the choice of the ...
Additive manufacturing techniques are known for the unrivalled geometric freedom they offer to desig...
Additive manufacturing using laser powder bed fusion (AM-LPBF) methods have recently experienced rap...
Internal porosity of metallic parts manufactured by laser powder bed fusion (LPBF) is governed by pr...
Material which is produced by the additive manufacturing technology laser powder-bed fusion (L- PBF)...
Additive manufacturing can be used to produce complex and custom geometries, consolidating different...
Laser powder bed fusion (LPBF) process has a great ability to produce complex AlSi10Mg 3D components...
Laser powder bed fusion is an additive manufacturing process characterized by different advantages l...
Laser powder bed fusion is an additive manufacturing process characterized by different advantages l...
We used X-ray computed tomography (CT), microscopy and hardness measurements to study Al–Si10–Mg pro...
We used X-ray computed tomography (CT), microscopy and hardness measurements to study Al–Si10–Mg pro...
Porosity and high surface roughness can be detrimental to the mechanical performance of laser powder...
Porosity and high surface roughness can be detrimental to the mechanical performance of laser powder...
Abstract: Additive manufacturing techniques areknown for the unrivalled geometric freedom they offer...
In powder bed fusion with laser beam (PBF-LB), two process-induced defects by pore formation are kno...
Besides the optimisation of process parameters such as laser power or scan speed, the choice of the ...
Additive manufacturing techniques are known for the unrivalled geometric freedom they offer to desig...
Additive manufacturing using laser powder bed fusion (AM-LPBF) methods have recently experienced rap...
Internal porosity of metallic parts manufactured by laser powder bed fusion (LPBF) is governed by pr...
Material which is produced by the additive manufacturing technology laser powder-bed fusion (L- PBF)...
Additive manufacturing can be used to produce complex and custom geometries, consolidating different...
Laser powder bed fusion (LPBF) process has a great ability to produce complex AlSi10Mg 3D components...
Laser powder bed fusion is an additive manufacturing process characterized by different advantages l...
Laser powder bed fusion is an additive manufacturing process characterized by different advantages l...
We used X-ray computed tomography (CT), microscopy and hardness measurements to study Al–Si10–Mg pro...
We used X-ray computed tomography (CT), microscopy and hardness measurements to study Al–Si10–Mg pro...
Porosity and high surface roughness can be detrimental to the mechanical performance of laser powder...
Porosity and high surface roughness can be detrimental to the mechanical performance of laser powder...
Abstract: Additive manufacturing techniques areknown for the unrivalled geometric freedom they offer...
In powder bed fusion with laser beam (PBF-LB), two process-induced defects by pore formation are kno...
Besides the optimisation of process parameters such as laser power or scan speed, the choice of the ...
Additive manufacturing techniques are known for the unrivalled geometric freedom they offer to desig...
Additive manufacturing using laser powder bed fusion (AM-LPBF) methods have recently experienced rap...