International audienceIn this study we perform an experimental and computational investigation about the fracture behaviour of polymer honeycombs presenting gradients in terms of lattice density. Such lattice relative density variations are introduced with the aim of mimicking the micro-morphology encountered in some natural materials, such as several kinds of woods, which seems related to the ability of the corresponding macro-material to delay the propagation of fracture under certain conditions. Starting from the conclusions of previous computational analyses, we perform a few experimental tensile tests on ABS model honeycombs obtained by additive manufacturing, with the aim of getting insights into their fracture behaviour and assessing...
The study aims to compare mechanical properties of polymer and metal honeycomb lattice structures be...
Honeycombs resemble the structure of a number of natural and biological materials such as cancellous...
Honeycombs resemble the structure of a number of natural and biological materials such as cancellous...
International audienceIn this study we perform an experimental and computational investigation about...
International audienceLattice materials, such as honeycombs, are remarkable in their ability to comb...
In the last decades the use of cellular materials, either in the form of foams or lattices, has wide...
The main key performance factors of honeycombs are represented by the ability to withstand through-t...
Additive manufacture and rapid prototyping are versatile methods for the generation of lattice mater...
Honeycomb structures have found numerous applications as structural and biomedical materials due to ...
International audienceThis paper proposes a fracture mechanics model for the analysis of crack propa...
Compared with regular honeycombs, irregular honeycombs are more representative of real foams, and th...
In the present study, two irregular honeycombs are manufactured by a 3D printer and tested under com...
Lightweight metallic lattices in the form of honeycombs are long known to exhibit a good mechanical ...
In nature, structure, material and function are constantly evolving in tandem. This work employs pol...
The study aims to compare mechanical properties of polymer and metal honeycomb lattice structures be...
Honeycombs resemble the structure of a number of natural and biological materials such as cancellous...
Honeycombs resemble the structure of a number of natural and biological materials such as cancellous...
International audienceIn this study we perform an experimental and computational investigation about...
International audienceLattice materials, such as honeycombs, are remarkable in their ability to comb...
In the last decades the use of cellular materials, either in the form of foams or lattices, has wide...
The main key performance factors of honeycombs are represented by the ability to withstand through-t...
Additive manufacture and rapid prototyping are versatile methods for the generation of lattice mater...
Honeycomb structures have found numerous applications as structural and biomedical materials due to ...
International audienceThis paper proposes a fracture mechanics model for the analysis of crack propa...
Compared with regular honeycombs, irregular honeycombs are more representative of real foams, and th...
In the present study, two irregular honeycombs are manufactured by a 3D printer and tested under com...
Lightweight metallic lattices in the form of honeycombs are long known to exhibit a good mechanical ...
In nature, structure, material and function are constantly evolving in tandem. This work employs pol...
The study aims to compare mechanical properties of polymer and metal honeycomb lattice structures be...
Honeycombs resemble the structure of a number of natural and biological materials such as cancellous...
Honeycombs resemble the structure of a number of natural and biological materials such as cancellous...