Honeycomb lattices exhibit remarkable structural properties and novel functionalities, such as high specific energy absorption, excellent vibroacoustic properties, and tailorable specific strength and stiffness. A range of modern structural applications demands for maximizing the failure strength and energy absorption capacity simultaneously with the minimum additional weight of material to the structure. To this end, conventional approaches of designing the periodic microstructural geometry have possibly reached to a saturation point. This creates a strong rationale in this field to exploit the recent advances in artificial intelligence and machine learning for further enhancement in the mechanical performance of artificially engineered la...
To create a more sustainable future for aviation, new, lighter-weight structures and materials will ...
Lattice structures (LS) manufactured by 3D printing are widely applied in many areas, such as aerosp...
Mechanical metamaterials such as open- and closed-cell lattice structures, foams, composites, and so...
Gradient structures with enhanced performance are ubiquitously observed in nature and in engineering...
The drive to reduce material usage and improve properties of structures has led to additive manufa...
Lattice materials, such as honeycombs, are remarkable in their ability to combine high stiffness, st...
Cellular structures are lightweight-engineered materials that have gained much attention with the de...
Lattice materials are artificial materials made of repeating unit-cells. The internal architecture o...
In this study we perform an experimental and computational investigation about the fracture behaviou...
Extensive amount of research on additively manufactured (AM) lattice structures has been made to dev...
Lattice models, which are essentially networks of springs having variable strength and stiffness, ar...
Even minute amounts of one solute atom per one million bulk atoms may give rise to qualitative chang...
In the current work, the mechanical response of multiscale cellular materials with hollow variable-s...
Machine learning is a branch of artificial intelligence that uses data to automatically build infere...
Architected materials typically rely on regular periodic patterns to achieve improved mechanical pro...
To create a more sustainable future for aviation, new, lighter-weight structures and materials will ...
Lattice structures (LS) manufactured by 3D printing are widely applied in many areas, such as aerosp...
Mechanical metamaterials such as open- and closed-cell lattice structures, foams, composites, and so...
Gradient structures with enhanced performance are ubiquitously observed in nature and in engineering...
The drive to reduce material usage and improve properties of structures has led to additive manufa...
Lattice materials, such as honeycombs, are remarkable in their ability to combine high stiffness, st...
Cellular structures are lightweight-engineered materials that have gained much attention with the de...
Lattice materials are artificial materials made of repeating unit-cells. The internal architecture o...
In this study we perform an experimental and computational investigation about the fracture behaviou...
Extensive amount of research on additively manufactured (AM) lattice structures has been made to dev...
Lattice models, which are essentially networks of springs having variable strength and stiffness, ar...
Even minute amounts of one solute atom per one million bulk atoms may give rise to qualitative chang...
In the current work, the mechanical response of multiscale cellular materials with hollow variable-s...
Machine learning is a branch of artificial intelligence that uses data to automatically build infere...
Architected materials typically rely on regular periodic patterns to achieve improved mechanical pro...
To create a more sustainable future for aviation, new, lighter-weight structures and materials will ...
Lattice structures (LS) manufactured by 3D printing are widely applied in many areas, such as aerosp...
Mechanical metamaterials such as open- and closed-cell lattice structures, foams, composites, and so...