Abstract Additive manufacturing of as-build metal materials with laser powder bed fusion typically leads to the formations of various chemical phases and their corresponding microstructure types. Such microstructures have very complex shape and size anisotropic distributions due to the history of the laser heat gradients and scanning patterns. With higher complexity compared to the post-heat-treated materials, the synthetic volume reconstruction of as-build materials for accurate modelling of their mechanical properties is a serious challenge. Here, we present an example of complete workflow pipeline for such nontrivial task. It takes into account the statistical distributions of microstructures: object sizes for each phase, several shape p...
Microstructure evolution in metal additive manufacturing (AM) is a complex multi-physics and multi-s...
Laser powder bed fusion (L-PBF) additive manufacturing technology is suitable for the direct 3D prin...
Microstructure is the origin of the properties and performance for additively manufactured metals. R...
In recent times, additive manufacturing (AM) has proven to be an indispensable technique for process...
Laser powder bed fusion (L-PBF) Additive Manufacturing (AM) has exponentially grown in the last deca...
The development of process parameters and scanning strategies for bulk metallic glass formation duri...
International audienceGrain structures generated by laser powder bed fusion (L-PBF) of the Ni-based ...
Additive manufacturing (AM) processes have the ability to build complex geometries from a wide varie...
Additive manufacturing (AM), and in particular laser powder bed fusion (LPBF), is a technology that ...
Abstract The elasto-plastic material behavior, material strength and failure modes of metals fabrica...
Additive manufacturing (AM) processes have the ability to build complex geometries from a wide varie...
For the broader industrial usage of metal additive manufactured parts, especially made by laser powd...
Additive manufacturing (AM) has attracted huge attention in the past decade due to its capability of...
The unique microstructure of the alloy AlSi10Mg produced by the laser-based powder bed fusion of met...
The unique microstructure of the alloy AlSi10Mg produced by the laser-based powder bed fusion of met...
Microstructure evolution in metal additive manufacturing (AM) is a complex multi-physics and multi-s...
Laser powder bed fusion (L-PBF) additive manufacturing technology is suitable for the direct 3D prin...
Microstructure is the origin of the properties and performance for additively manufactured metals. R...
In recent times, additive manufacturing (AM) has proven to be an indispensable technique for process...
Laser powder bed fusion (L-PBF) Additive Manufacturing (AM) has exponentially grown in the last deca...
The development of process parameters and scanning strategies for bulk metallic glass formation duri...
International audienceGrain structures generated by laser powder bed fusion (L-PBF) of the Ni-based ...
Additive manufacturing (AM) processes have the ability to build complex geometries from a wide varie...
Additive manufacturing (AM), and in particular laser powder bed fusion (LPBF), is a technology that ...
Abstract The elasto-plastic material behavior, material strength and failure modes of metals fabrica...
Additive manufacturing (AM) processes have the ability to build complex geometries from a wide varie...
For the broader industrial usage of metal additive manufactured parts, especially made by laser powd...
Additive manufacturing (AM) has attracted huge attention in the past decade due to its capability of...
The unique microstructure of the alloy AlSi10Mg produced by the laser-based powder bed fusion of met...
The unique microstructure of the alloy AlSi10Mg produced by the laser-based powder bed fusion of met...
Microstructure evolution in metal additive manufacturing (AM) is a complex multi-physics and multi-s...
Laser powder bed fusion (L-PBF) additive manufacturing technology is suitable for the direct 3D prin...
Microstructure is the origin of the properties and performance for additively manufactured metals. R...