The mechanical properties of seven semi-regular lattices were derived analytically for in-plane uniaxial compression and shear. These analytical expressions were then validated using Finite Element simulations. Our analysis showed that one topology is stretching-dominated; two are stretching-dominated in compression but bending-dominated in shear; and four are bending-dominated. To assess their potential, the properties of these seven semi-regular topologies were compared to regular lattices. We found the elastic buckling strength of the stretching-dominated semi-regular tessellation to be 43% higher than a regular triangular lattice. In addition, three of the four bending-dominated semi-regular topologies had a higher elastic modulus than ...
Three-dimensional lattices have applications across a range of fields including structural light weig...
In this paper we study analytically the elastic properties of the 2-D and 3-D regular lattices consi...
To create a more sustainable future for aviation, new, lighter-weight structures and materials will ...
Honeycombs and other lattice materials have the advantage that their topology can be designed to ach...
Hierarchical lattices are made of finer lattices in successive smaller scales. This paper analytical...
This paper focuses on the stiffness and strength of lattices with multiple hierarchical levels. We e...
AbstractTwo novel statically indeterminate planar lattice materials are designed: a new Kagome cell ...
This paper presents a method for the linear analysis of the stiffness and strength of open and close...
Funding Information: We would like to acknowledge the financial support of the Academy of Finland (d...
Highly compressible and stretchable lattice materials are perfectly suitable to be exploited in a ra...
Metal cellular lattice structure is a new class of material that combines useful mechanical properti...
A family of robust stretch-dominated bimaterial lattices is introduced which combines low (or zero) ...
The collapse strength is analyzed for typical periodic planar lattices under uniaxial compression. I...
We study a special class of mechanical metamaterials, namely lattices, based on beams (struts) with ...
Lattice material is an innovative structure providing a good range of strength and fracture in relat...
Three-dimensional lattices have applications across a range of fields including structural light weig...
In this paper we study analytically the elastic properties of the 2-D and 3-D regular lattices consi...
To create a more sustainable future for aviation, new, lighter-weight structures and materials will ...
Honeycombs and other lattice materials have the advantage that their topology can be designed to ach...
Hierarchical lattices are made of finer lattices in successive smaller scales. This paper analytical...
This paper focuses on the stiffness and strength of lattices with multiple hierarchical levels. We e...
AbstractTwo novel statically indeterminate planar lattice materials are designed: a new Kagome cell ...
This paper presents a method for the linear analysis of the stiffness and strength of open and close...
Funding Information: We would like to acknowledge the financial support of the Academy of Finland (d...
Highly compressible and stretchable lattice materials are perfectly suitable to be exploited in a ra...
Metal cellular lattice structure is a new class of material that combines useful mechanical properti...
A family of robust stretch-dominated bimaterial lattices is introduced which combines low (or zero) ...
The collapse strength is analyzed for typical periodic planar lattices under uniaxial compression. I...
We study a special class of mechanical metamaterials, namely lattices, based on beams (struts) with ...
Lattice material is an innovative structure providing a good range of strength and fracture in relat...
Three-dimensional lattices have applications across a range of fields including structural light weig...
In this paper we study analytically the elastic properties of the 2-D and 3-D regular lattices consi...
To create a more sustainable future for aviation, new, lighter-weight structures and materials will ...