Additive manufacturing (AM), and in particular selective laser melting (SLM) technology, allows to produce structural components made of lattice structures. These kinds of structures have received a lot of research attention over recent years due to their capacity to generate easy-to-manufacture and lightweight components with enhanced mechanical properties. Despite a large amount of work available in the literature, the prediction of the mechanical behavior of lattice structures is still an open issue for researchers. Numerical simulations can help to better understand the mechanical behavior of such a kind of structure without undergoing long and expensive experimental campaigns. In this work, we compare numerical and experimental results...
Tensile and compression test specimens comprising lattice structures with simple cubic, crossing-rod...
The growing availability of additive manufacturing technology, such as SLM, enables the creation of ...
The interest in manufacturing complex devices with integrated extra-functional properties is steadil...
Additive manufacturing (AM), and in particular selective laser melting (SLM) technology, allows to p...
AbstractAdditive manufacturing (AM), and in particular selective laser melting (SLM) technology, all...
The production of lightweight metal lattice structures has received much attention due to the recent...
Additive manufacture (AM) technologies allow innovative structural design, including complex lattice...
Additive manufacture (AM) technologies allow innovative structural design, including complex lattice...
In this work, we used the powder bed fusion selective laser melting (SLM) technique to build two dif...
Additive manufacturing (AM), and in particular laser powder bed fusion (LPBF), is a technology that ...
Selective Laser Melting (SLM) technology has undergone significant development in the past years pro...
Selective Laser Melting (SLM) technology has undergone significant development in the past years pro...
Tensile and compression test specimens comprising lattice structures with simple cubic, crossing-rod...
Tensile and compression test specimens comprising lattice structures with simple cubic, crossing-rod...
Tensile and compression test specimens comprising lattice structures with simple cubic, crossing-rod...
Tensile and compression test specimens comprising lattice structures with simple cubic, crossing-rod...
The growing availability of additive manufacturing technology, such as SLM, enables the creation of ...
The interest in manufacturing complex devices with integrated extra-functional properties is steadil...
Additive manufacturing (AM), and in particular selective laser melting (SLM) technology, allows to p...
AbstractAdditive manufacturing (AM), and in particular selective laser melting (SLM) technology, all...
The production of lightweight metal lattice structures has received much attention due to the recent...
Additive manufacture (AM) technologies allow innovative structural design, including complex lattice...
Additive manufacture (AM) technologies allow innovative structural design, including complex lattice...
In this work, we used the powder bed fusion selective laser melting (SLM) technique to build two dif...
Additive manufacturing (AM), and in particular laser powder bed fusion (LPBF), is a technology that ...
Selective Laser Melting (SLM) technology has undergone significant development in the past years pro...
Selective Laser Melting (SLM) technology has undergone significant development in the past years pro...
Tensile and compression test specimens comprising lattice structures with simple cubic, crossing-rod...
Tensile and compression test specimens comprising lattice structures with simple cubic, crossing-rod...
Tensile and compression test specimens comprising lattice structures with simple cubic, crossing-rod...
Tensile and compression test specimens comprising lattice structures with simple cubic, crossing-rod...
The growing availability of additive manufacturing technology, such as SLM, enables the creation of ...
The interest in manufacturing complex devices with integrated extra-functional properties is steadil...