In this study, the porosity of Ti-6Al-4V (Ti64) tensile specimen fabricated by laser powder bed fusion (L-PBF) with varying three process conditions was investigated. The variation included the energy density in fabrication (3 levels), the build location (3 levels) and the build orientation (2 levels) for a constant scan speed of 600 mm/s. The tensile specimens were scanned using a micro-CT system before and after tensile testing. The porosity of the specimens varied significantly according to the energy density and the build direction, but only a minor effect of the location change was observed. The fractured specimens showed a significant increase, more than nine percent increase in the pore volume in all cases, for the pore volum...
Optimizing the process window for an additively manufactured material using X-ray computed tomogra...
In this study, morphological and mechanical characterization was performed on Ti6Al4V scaffolds prod...
Additive manufacturing by laser powder bed fusion allows the production of complex parts including l...
The main aim of the present paper is to evaluate the porosity and mechanical properties of Ti6Al4V a...
Microstructural characteristics of additively manufactured Ti-6Al-4V specimens are analyzed in this ...
Additive manufacturing (AM) is emerging as an important manufacturing sector, due to its almost unli...
An original approach based on 2D fracture surface and 3D X-ray tomography analysis is proposed in th...
Additive manufacturing (AM) is a method of fabrication involving the joining of feedstock material t...
This work aimed at optimizing the robustness and controllability of the production of porous Ti6Al4V...
In this study, micro-computed tomography (CT) is utilized to detect defects of Ti-6Al-4V specimens f...
Ti6Al4V lattice structures were fabricated using selective laser melting with a wide range of proces...
Laser Metal Deposition (LMD) is an additive manufacturing technique that produces parts layer by lay...
Laser direct metal deposition has wide applications in the areas of rapid manufacturing, surface coa...
In this study, deviations for the porosity level of the Ti-6Al-4V functionally graded porous structu...
Abstract: This research paper reports the effect of laser power on the degree of porosity of the dep...
Optimizing the process window for an additively manufactured material using X-ray computed tomogra...
In this study, morphological and mechanical characterization was performed on Ti6Al4V scaffolds prod...
Additive manufacturing by laser powder bed fusion allows the production of complex parts including l...
The main aim of the present paper is to evaluate the porosity and mechanical properties of Ti6Al4V a...
Microstructural characteristics of additively manufactured Ti-6Al-4V specimens are analyzed in this ...
Additive manufacturing (AM) is emerging as an important manufacturing sector, due to its almost unli...
An original approach based on 2D fracture surface and 3D X-ray tomography analysis is proposed in th...
Additive manufacturing (AM) is a method of fabrication involving the joining of feedstock material t...
This work aimed at optimizing the robustness and controllability of the production of porous Ti6Al4V...
In this study, micro-computed tomography (CT) is utilized to detect defects of Ti-6Al-4V specimens f...
Ti6Al4V lattice structures were fabricated using selective laser melting with a wide range of proces...
Laser Metal Deposition (LMD) is an additive manufacturing technique that produces parts layer by lay...
Laser direct metal deposition has wide applications in the areas of rapid manufacturing, surface coa...
In this study, deviations for the porosity level of the Ti-6Al-4V functionally graded porous structu...
Abstract: This research paper reports the effect of laser power on the degree of porosity of the dep...
Optimizing the process window for an additively manufactured material using X-ray computed tomogra...
In this study, morphological and mechanical characterization was performed on Ti6Al4V scaffolds prod...
Additive manufacturing by laser powder bed fusion allows the production of complex parts including l...