To lower costs and improve efficiency, most additively manufactured parts are printed as thin shells filled with a lightweight cellular material, which reacts to secondary stresses and provides distributed support to the load-carrying outer casing. This paper proposes a two-step method to design filling metamaterials that are intrinsically strong, stiff and lightweight. First, the space is divided into repetitive volumes according to available three-dimensional tessellation schemes. The tessellation is then transformed into a trabecular wireframe by converting each unit volume into a kinematically-rigid open cell with edge beams and bracings. Dimensional analysis allows the lattice structures to be characterized mechanically and elastically...
<p>Stress distribution has led to the design of both tough and lightweight materials. Truss structur...
Additive manufacturing (AM) methods have a growing application in different fields such as aeronaut...
Inspired by natural cellular materials such as trabecular bone, lattice structures have been develop...
To lower costs and improve efficiency, most additively manufactured parts are printed as thin shells...
To improve the structural efficiency and reduce costs, most additively manufactured parts are printe...
In order to reduce carbon emissions from transportation and renewable energy sectors, there has been...
Cellular material structures, such as honeycombs and lattice structures, enable unprecedented stiff...
This paper focuses on the potential of curvy mechanical metamaterials to show how topological design...
The design and analysis of lattice structures manufactured using Additive Manufacturing (AM) techniq...
This paper was presented at the Proceedings of the Rapid Manufacturing Conference, Loughborough, UK,...
Architected lattice materials, realized through artificial micro-structuring, have drawn tremendous ...
<p>Stress distribution has led to the design of both tough and lightweight materials. Truss structur...
Periodic cellular solids offer an intuitive solution for lightweight designs as they provide the mea...
In this paper we present a numerical investigation into surface-based lattice structures with the ai...
With the increasing development of Additive Manufacturing technologies in the past two decades, the ...
<p>Stress distribution has led to the design of both tough and lightweight materials. Truss structur...
Additive manufacturing (AM) methods have a growing application in different fields such as aeronaut...
Inspired by natural cellular materials such as trabecular bone, lattice structures have been develop...
To lower costs and improve efficiency, most additively manufactured parts are printed as thin shells...
To improve the structural efficiency and reduce costs, most additively manufactured parts are printe...
In order to reduce carbon emissions from transportation and renewable energy sectors, there has been...
Cellular material structures, such as honeycombs and lattice structures, enable unprecedented stiff...
This paper focuses on the potential of curvy mechanical metamaterials to show how topological design...
The design and analysis of lattice structures manufactured using Additive Manufacturing (AM) techniq...
This paper was presented at the Proceedings of the Rapid Manufacturing Conference, Loughborough, UK,...
Architected lattice materials, realized through artificial micro-structuring, have drawn tremendous ...
<p>Stress distribution has led to the design of both tough and lightweight materials. Truss structur...
Periodic cellular solids offer an intuitive solution for lightweight designs as they provide the mea...
In this paper we present a numerical investigation into surface-based lattice structures with the ai...
With the increasing development of Additive Manufacturing technologies in the past two decades, the ...
<p>Stress distribution has led to the design of both tough and lightweight materials. Truss structur...
Additive manufacturing (AM) methods have a growing application in different fields such as aeronaut...
Inspired by natural cellular materials such as trabecular bone, lattice structures have been develop...