The production of lightweight metal lattice structures has received much attention due to the recent de- velopments in additive manufacturing (AM). The design flexibility comes, however, with the complexity of the underlying physics. In fact, metal additive manufacturing introduces process-induced geometrical defects that mainly result in deviations of the effective geometry from the nominal one. This change in the final printed shape is the primary cause of the gap between the as-designed and as-manufactured mechanical behavior of AM products. Thus, the possibility to incorporate the precise manufactured geometries into the computational analysis is crucial for the quality and performance assessment of the final parts. Computed tomog...
Cellular materials, often called lattice materials, are increasingly receiving attention for their u...
Additive manufacturing (AM) empowers the creation of novel open-celled architectures that can achiev...
Additive manufacturing (AM) empowers the creation of novel open-celled architectures that can achiev...
Additive manufacturing (AM), and in particular selective laser melting (SLM) technology, allows to p...
Additive manufacturing (AM), and in particular selective laser melting (SLM) technology, allows to p...
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...
AbstractAdditive manufacturing (AM), and in particular selective laser melting (SLM) technology, all...
Funding Information: We gratefully acknowledge the support of Deutsche Forschungsgemeinschaft (DFG) ...
Additive manufacturing (AM), and in particular laser powder bed fusion (LPBF), is a technology that ...
Purpose: Additive manufacturing (AM) enables the production of lightweight parts with complex shapes...
Purpose: Additive manufacturing (AM) enables the production of lightweight parts with complex shapes...
Purpose: Additive manufacturing (AM) enables the production of lightweight parts with complex shapes...
Purpose: Additive manufacturing (AM) enables the production of lightweight parts with complex shapes...
Purpose: Additive manufacturing (AM) enables the production of lightweight parts with complex shapes...
Cellular materials, often called lattice materials, are increasingly receiving attention for their u...
Additive manufacturing (AM) empowers the creation of novel open-celled architectures that can achiev...
Additive manufacturing (AM) empowers the creation of novel open-celled architectures that can achiev...
Additive manufacturing (AM), and in particular selective laser melting (SLM) technology, allows to p...
Additive manufacturing (AM), and in particular selective laser melting (SLM) technology, allows to p...
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...
AbstractAdditive manufacturing (AM), and in particular selective laser melting (SLM) technology, all...
Funding Information: We gratefully acknowledge the support of Deutsche Forschungsgemeinschaft (DFG) ...
Additive manufacturing (AM), and in particular laser powder bed fusion (LPBF), is a technology that ...
Purpose: Additive manufacturing (AM) enables the production of lightweight parts with complex shapes...
Purpose: Additive manufacturing (AM) enables the production of lightweight parts with complex shapes...
Purpose: Additive manufacturing (AM) enables the production of lightweight parts with complex shapes...
Purpose: Additive manufacturing (AM) enables the production of lightweight parts with complex shapes...
Purpose: Additive manufacturing (AM) enables the production of lightweight parts with complex shapes...
Cellular materials, often called lattice materials, are increasingly receiving attention for their u...
Additive manufacturing (AM) empowers the creation of novel open-celled architectures that can achiev...
Additive manufacturing (AM) empowers the creation of novel open-celled architectures that can achiev...