Lattice structures are currently of high interest, especially for lightweight design. They generally have better structural performance per weight than parts made of bulk material. With conventional manufacturing techniques they are difficult to produce, but with additive manufacturing (AM) fabricationisfeasible. To better understand their behaviour under various loading conditions two lattice structures in different configurations were observed. For each structure three different test specimens were designed and manufactured using selective laser sintering (SLS). To investigate the mechanical performance under large deformations the specimens were made of a thermoplastic polyurethane(TPU), which shows a hyperelastic material behaviour. Beside t...
peer-reviewedAdditive manufacturing (AM) technology has undergone an evolutionary process from fabr...
Additive manufacturing (AM), and in particular selective laser melting (SLM) technology, allows to p...
Sandwich structures are widely used due to their light weight, high specific strength, and high spec...
Many natural and engineered structures possess cellular and porous architecture. This paper is focus...
Cellular materials, often called lattice materials, are increasingly receiving attention for their u...
[Abstract] This work focuses on evaluating and establishing the relationship of the influence of geo...
Three-dimensional lattices have applications across a range of fields including structural lightweig...
The availability of additive manufacturing technologies in particular the selective laser sintering ...
Three-dimensional lattices have applications across a range of fields including structural lightweig...
Sandwich structures are widely used due to their light weight, high specific strength, and high spec...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
Three-dimensional lattices have applications across a range of fields including structural lightweig...
Additive manufacturing (AM), and in particular selective laser melting (SLM) technology, allows to p...
Emerging polymer 3D-printing technologies are enabling the design and fabrication of mechanically ef...
Purpose This study aims to investigate the behaviour of soft lattices, i.e. lattices capable of rea...
peer-reviewedAdditive manufacturing (AM) technology has undergone an evolutionary process from fabr...
Additive manufacturing (AM), and in particular selective laser melting (SLM) technology, allows to p...
Sandwich structures are widely used due to their light weight, high specific strength, and high spec...
Many natural and engineered structures possess cellular and porous architecture. This paper is focus...
Cellular materials, often called lattice materials, are increasingly receiving attention for their u...
[Abstract] This work focuses on evaluating and establishing the relationship of the influence of geo...
Three-dimensional lattices have applications across a range of fields including structural lightweig...
The availability of additive manufacturing technologies in particular the selective laser sintering ...
Three-dimensional lattices have applications across a range of fields including structural lightweig...
Sandwich structures are widely used due to their light weight, high specific strength, and high spec...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
Three-dimensional lattices have applications across a range of fields including structural lightweig...
Additive manufacturing (AM), and in particular selective laser melting (SLM) technology, allows to p...
Emerging polymer 3D-printing technologies are enabling the design and fabrication of mechanically ef...
Purpose This study aims to investigate the behaviour of soft lattices, i.e. lattices capable of rea...
peer-reviewedAdditive manufacturing (AM) technology has undergone an evolutionary process from fabr...
Additive manufacturing (AM), and in particular selective laser melting (SLM) technology, allows to p...
Sandwich structures are widely used due to their light weight, high specific strength, and high spec...