In nature, mesoscopic or microscopic cellular structures like trabecular bone, wood, shell, and sea urchin, can have high load-carrying capacity. These cellular structures with diverse shapes, forms and designs can be mainly classified into open and closed cell cellular structures. It is difficult to replicate these natural complex lattice structures with traditional manufacturing, but additive manufacturing (AM) technology development has allowed engineers and scientists to mimic these natural structures. Fabricating close cell lattice structures is still considered difficult due to the support structure within the lattices. This paper evaluates a novel way of fabricating a close cell lattice structure with a material extrusion process. Th...
Sandwich panels have been widely used in many engineering applications where saving weight whilst ma...
The increasing demand for energy absorbent structures, paired with the need for more efficient use o...
Cellular materials are widespread. Some, like wood and bone, occur in nature, while others, like pol...
Abstract In nature, mesoscopic or microscopic cellular structures like trabecular bone, wood, shell,...
This study analyses the energy absorption and stiffness behaviour of 3D-printed supportless, closed...
This paper analyzes the effect of thin and thick walls on functional properties of 3D printed cell ...
Cellular material structures, such as honeycombs and lattice structures, enable unprecedented stiff...
Cellular materials, such as foams, can be used as load bearing members in civil construction and as ...
This study proposes an innovative design solution based on the design for additive manufacturing (Df...
The bio-inspired structure (e.g., honeycomb) has been studied for its ability to absorb energy and i...
The aim of this work is to evaluate the mechanical properties and failure analysis of cellular core ...
AbstractAdditive manufacturing has opened doors to many new technological developments that could no...
Many natural and engineered structures possess cellular and porous architecture. This paper is focus...
Cellular lattice structure offers high strength together with low density, high stiffness, good impa...
Lattice structures possess exceptional mechanical strength resulting in highly efficient load suppor...
Sandwich panels have been widely used in many engineering applications where saving weight whilst ma...
The increasing demand for energy absorbent structures, paired with the need for more efficient use o...
Cellular materials are widespread. Some, like wood and bone, occur in nature, while others, like pol...
Abstract In nature, mesoscopic or microscopic cellular structures like trabecular bone, wood, shell,...
This study analyses the energy absorption and stiffness behaviour of 3D-printed supportless, closed...
This paper analyzes the effect of thin and thick walls on functional properties of 3D printed cell ...
Cellular material structures, such as honeycombs and lattice structures, enable unprecedented stiff...
Cellular materials, such as foams, can be used as load bearing members in civil construction and as ...
This study proposes an innovative design solution based on the design for additive manufacturing (Df...
The bio-inspired structure (e.g., honeycomb) has been studied for its ability to absorb energy and i...
The aim of this work is to evaluate the mechanical properties and failure analysis of cellular core ...
AbstractAdditive manufacturing has opened doors to many new technological developments that could no...
Many natural and engineered structures possess cellular and porous architecture. This paper is focus...
Cellular lattice structure offers high strength together with low density, high stiffness, good impa...
Lattice structures possess exceptional mechanical strength resulting in highly efficient load suppor...
Sandwich panels have been widely used in many engineering applications where saving weight whilst ma...
The increasing demand for energy absorbent structures, paired with the need for more efficient use o...
Cellular materials are widespread. Some, like wood and bone, occur in nature, while others, like pol...