Figure2. Relationship of porosity and characteristic length. Figure2-H: porosity and wall thickness of honeycomb structure; Figure2-D: porosity and diameter of diamond lattice structure; Figure2-P: porosity and wall thickness of Primitive TPMS structure; Figure2-G: porosity and wall thickness of Gyroid TPMS structure. Figure4. Porosity measurement. The left one of two vertical axes is the relationship of designed porosity and measured porosity while the right one is the relative error. Figure5. Relationship of porosity and compressive properties of four porous structures
In this work, systematic studies were carried out on SLS (selective laser sintering) printed samples...
Ti6Al4V lattice structures were fabricated using selective laser melting with a wide range of proces...
Rapid prototyping methods embrace a family of manufacturing methods that are developed to speed up t...
Figure2. Relationship of porosity and characteristic length. Figure2-H: porosity and wall thickness ...
In this study, deviations for the porosity level of the Ti-6Al-4V functionally graded porous structu...
Selective laser sintering (SLS) is a rapid prototyping method in which three-dimensional objects are...
There is an increased interest to produce open porous metallic lattice structures with regular unit ...
In order to analyze the process characterization and the design rules of porous structures, several ...
Laser Sintering (LS) is an additive manufacturing technology that is progressively used to manufactu...
Direct metal laser sintering is spread technology today. The main advantage of this method is the ab...
The combination of topology optimization (TOP) and selective laser melting (SLM) provides the possib...
This research article published by Scientific.Net, 2009Selective laser sintering (SLS) is a rapid pr...
Selective laser melting technology makes it possible to produce 3D cellular lattice structures with ...
In this study, morphological and mechanical characterization was performed on Ti6Al4V scaffolds prod...
The significantly growing use of Additive Manufacturing (AM) enables the fabrication of innovative p...
In this work, systematic studies were carried out on SLS (selective laser sintering) printed samples...
Ti6Al4V lattice structures were fabricated using selective laser melting with a wide range of proces...
Rapid prototyping methods embrace a family of manufacturing methods that are developed to speed up t...
Figure2. Relationship of porosity and characteristic length. Figure2-H: porosity and wall thickness ...
In this study, deviations for the porosity level of the Ti-6Al-4V functionally graded porous structu...
Selective laser sintering (SLS) is a rapid prototyping method in which three-dimensional objects are...
There is an increased interest to produce open porous metallic lattice structures with regular unit ...
In order to analyze the process characterization and the design rules of porous structures, several ...
Laser Sintering (LS) is an additive manufacturing technology that is progressively used to manufactu...
Direct metal laser sintering is spread technology today. The main advantage of this method is the ab...
The combination of topology optimization (TOP) and selective laser melting (SLM) provides the possib...
This research article published by Scientific.Net, 2009Selective laser sintering (SLS) is a rapid pr...
Selective laser melting technology makes it possible to produce 3D cellular lattice structures with ...
In this study, morphological and mechanical characterization was performed on Ti6Al4V scaffolds prod...
The significantly growing use of Additive Manufacturing (AM) enables the fabrication of innovative p...
In this work, systematic studies were carried out on SLS (selective laser sintering) printed samples...
Ti6Al4V lattice structures were fabricated using selective laser melting with a wide range of proces...
Rapid prototyping methods embrace a family of manufacturing methods that are developed to speed up t...