When selecting cellular materials for energy absorption applications, there have traditionally been two choices: a periodic structure such as a honeycomb, or a stochastic one, as seen in foams. Both choices involve a global definition governing the allocation of the members of the structure, be they beams or surfaces. With Additive Manufacturing, the exploration of more complex structures enables the creation of aperiodicity through the local modification of periodic structures. This paper explores one application of this approach by deleting beams in square honeycombs, with the aim of avoiding localization of failure that generates significant undulations in the stress plateau under in-plane quasi-static compression. These pe...
In recent years, study involving aluminium honeycomb has grown rapidly. This is due to the propertie...
A honeycomb structure having high levels of recoverable energy absorption is provided. The honeycomb...
Tailoring of material architectures in three-dimensions enabled by additive manufacturing (AM) offer...
When selecting cellular materials for energy absorption applications, there have traditionally bee...
Tailoring of material architectures in three-dimensions enabled by additive manufacturing (AM) offer...
Honeycomb materials are well known for providing lightweight stiffness, strength, and energy absorp...
The increasing demand for energy absorbent structures, paired with the need for more efficient use o...
From a design perspective, there are four decisions that need to be made when integrating cellular ...
Cellular solids are characteristically excellent energy absorbers due to their capacity to store lar...
Explorations into the structural instabilities of mechanical metamaterials have led to the developme...
This study examines the energy absorption capabilities of cellular honeycombs subjected to in-plane ...
The in-plane crushing and energy absorption of sandwiched honeycomb cores with facesheets are examin...
We describe the in-plane compressive performance of a new type of hierarchical cellular structure cr...
Enhancing the energy absorption characteristics of a material/structure without compromising its str...
Honeycomb structures are widely used in applications that require excellent strain energy mitigation...
In recent years, study involving aluminium honeycomb has grown rapidly. This is due to the propertie...
A honeycomb structure having high levels of recoverable energy absorption is provided. The honeycomb...
Tailoring of material architectures in three-dimensions enabled by additive manufacturing (AM) offer...
When selecting cellular materials for energy absorption applications, there have traditionally bee...
Tailoring of material architectures in three-dimensions enabled by additive manufacturing (AM) offer...
Honeycomb materials are well known for providing lightweight stiffness, strength, and energy absorp...
The increasing demand for energy absorbent structures, paired with the need for more efficient use o...
From a design perspective, there are four decisions that need to be made when integrating cellular ...
Cellular solids are characteristically excellent energy absorbers due to their capacity to store lar...
Explorations into the structural instabilities of mechanical metamaterials have led to the developme...
This study examines the energy absorption capabilities of cellular honeycombs subjected to in-plane ...
The in-plane crushing and energy absorption of sandwiched honeycomb cores with facesheets are examin...
We describe the in-plane compressive performance of a new type of hierarchical cellular structure cr...
Enhancing the energy absorption characteristics of a material/structure without compromising its str...
Honeycomb structures are widely used in applications that require excellent strain energy mitigation...
In recent years, study involving aluminium honeycomb has grown rapidly. This is due to the propertie...
A honeycomb structure having high levels of recoverable energy absorption is provided. The honeycomb...
Tailoring of material architectures in three-dimensions enabled by additive manufacturing (AM) offer...