Tailoring of material architectures in three-dimensions enabled by additive manufacturing (AM) offers the potential to realize bulk materials with unprecedented properties optimized for location-specific structural and/or functional requirements. Here we report tunable energy absorption characteristics of architected honeycombs enabled via material jetting AM. We realize spatially tailored 3D printed honeycombs (guided by FE studies) by varying the cell wall thickness gradient and evaluate experimentally and numerically the energy absorption characteristics. The measured response of architected honeycombs characterized by local buckling (wrinkling) and progressive failure reveals over 110% increase in specific energy absorption (SEA) with a...
Selective laser sintering has been used to manufacture different structural variations of a pre-buck...
Density gradation has been analytically and experimentally proven to enhance the load-bearing and en...
In nature, structure, material and function are constantly evolving in tandem. This work employs pol...
Tailoring of material architectures in three-dimensions enabled by additive manufacturing (AM) offer...
Tailoring of material architectures in three-dimensions enabled by additive manufacturing (AM) offer...
Enhancing the energy absorption characteristics of a material/structure without compromising its str...
When selecting cellular materials for energy absorption applications, there have traditionally bee...
Lattice materials, such as honeycombs, are remarkable in their ability to combine high stiffness, st...
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 ...
We describe the in-plane compressive performance of a new type of hierarchical cellular structure cr...
Cellular material structures, such as honeycombs and lattice structures, enable unprecedented stiff...
Honeycomb structures are widely used in applications that require excellent strain energy mitigation...
Honeycomb structures have a wide range of applications, from medical implants to industrial componen...
This article presents the experimental and simulation analysis of the energy absorption capacity o...
Selective laser sintering has been used to manufacture different structural variations of a pre-buck...
Density gradation has been analytically and experimentally proven to enhance the load-bearing and en...
In nature, structure, material and function are constantly evolving in tandem. This work employs pol...
Tailoring of material architectures in three-dimensions enabled by additive manufacturing (AM) offer...
Tailoring of material architectures in three-dimensions enabled by additive manufacturing (AM) offer...
Enhancing the energy absorption characteristics of a material/structure without compromising its str...
When selecting cellular materials for energy absorption applications, there have traditionally bee...
Lattice materials, such as honeycombs, are remarkable in their ability to combine high stiffness, st...
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 ...
We describe the in-plane compressive performance of a new type of hierarchical cellular structure cr...
Cellular material structures, such as honeycombs and lattice structures, enable unprecedented stiff...
Honeycomb structures are widely used in applications that require excellent strain energy mitigation...
Honeycomb structures have a wide range of applications, from medical implants to industrial componen...
This article presents the experimental and simulation analysis of the energy absorption capacity o...
Selective laser sintering has been used to manufacture different structural variations of a pre-buck...
Density gradation has been analytically and experimentally proven to enhance the load-bearing and en...
In nature, structure, material and function are constantly evolving in tandem. This work employs pol...