AbstractTitanium and its alloys are successfully used in aerospace through to marine applications. Selective laser melting (SLM) is an additive manufacturing technique, which promises to allow production of novel Ti structures. However, there is still a paucity of accepted methods for quantifying build quality. The viability of using X-ray microtomography (μCT) to quantify and track changes in morphology of SLM Ti porous structures at each stage of the post-laser melting production was tested, quantifying its quality through process. Quantification was achieved using an accessible volume tool to determine pore and strut sizes. Removal of partially sintered struts by cleaning was visualised and quantified. Eighty-eight percent of the struts ...
The use of Additive Manufacturing (AM) technologies is rapidly expanding in biomedical engineering, ...
Nowadays, post-surgical or post-accidental bone loss can be substituted by custom-made scaffolds fab...
The objective of this project is to examine and analyse the microstructures and mechanical propertie...
AbstractTitanium and its alloys are successfully used in aerospace through to marine applications. S...
This work aimed at optimizing the robustness and controllability of the production of porous Ti6Al4V...
In this study, morphological and mechanical characterization was performed on Ti6Al4V scaffolds prod...
Additive manufacturing (AM) is a method of fabrication involving the joining of feedstock material t...
Additive manufacturing (AM) is emerging as an important manufacturing sector, due to its almost unli...
Using non-optimum combination manufacturing parameters in selective laser melting (SLM) may lead to ...
Ti6Al4V lattice structures were fabricated using selective laser melting with a wide range of proces...
Selective laser melting (SLM) is an additive manufacturing (AM) process that has been gaining widesp...
Selective laser melting (SLM) is an additive manufacturing technique, which allows varying the relat...
Porous materials have very attractive properties because of their lightweight and unique geometry th...
Additively manufactured parts are characterized by metrological challenges and complexities, due to ...
This PhD study firstly presents the results of using selective laser melting (SLM) to produce commer...
The use of Additive Manufacturing (AM) technologies is rapidly expanding in biomedical engineering, ...
Nowadays, post-surgical or post-accidental bone loss can be substituted by custom-made scaffolds fab...
The objective of this project is to examine and analyse the microstructures and mechanical propertie...
AbstractTitanium and its alloys are successfully used in aerospace through to marine applications. S...
This work aimed at optimizing the robustness and controllability of the production of porous Ti6Al4V...
In this study, morphological and mechanical characterization was performed on Ti6Al4V scaffolds prod...
Additive manufacturing (AM) is a method of fabrication involving the joining of feedstock material t...
Additive manufacturing (AM) is emerging as an important manufacturing sector, due to its almost unli...
Using non-optimum combination manufacturing parameters in selective laser melting (SLM) may lead to ...
Ti6Al4V lattice structures were fabricated using selective laser melting with a wide range of proces...
Selective laser melting (SLM) is an additive manufacturing (AM) process that has been gaining widesp...
Selective laser melting (SLM) is an additive manufacturing technique, which allows varying the relat...
Porous materials have very attractive properties because of their lightweight and unique geometry th...
Additively manufactured parts are characterized by metrological challenges and complexities, due to ...
This PhD study firstly presents the results of using selective laser melting (SLM) to produce commer...
The use of Additive Manufacturing (AM) technologies is rapidly expanding in biomedical engineering, ...
Nowadays, post-surgical or post-accidental bone loss can be substituted by custom-made scaffolds fab...
The objective of this project is to examine and analyse the microstructures and mechanical propertie...