Honeycombs and other lattice materials have the advantage that their topology can be designed to achieve unique combinations of properties, such as high strength at low density. The work presented here is exploratory in nature: we investigated the mechanical properties of a two-dimensional lattice and compared its performances to other topologies. Analytical expressions for the uniaxial stiffness and compressive strength were developed and validated against Finite Element simulations. The results showed that the lattice considered is stiffer and stronger than the diamond lattice, and has a higher resistance to elastic buckling than the triangular lattice.  
To construct a hierarchical lattice structure (HLS), truss wall is introduced into ordinary lattice ...
Highly compressible and stretchable lattice materials are perfectly suitable to be exploited in a ra...
The toughness of closed-cell lattice structure was analysed through a set of variables, including th...
Honeycombs and other lattice materials have the advantage that their topology can be designed to ach...
The mechanical properties of seven semi-regular lattices were derived analytically for in-plane unia...
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...
This paper presents a method for the linear analysis of the stiffness and strength of open and close...
AbstractTwo novel statically indeterminate planar lattice materials are designed: a new Kagome cell ...
To create a more sustainable future for aviation, new, lighter-weight structures and materials will ...
Publisher Copyright: © 2021 World Scientific Publishing Europe Ltd.Lattice materials, such as honeyc...
Lattice material is an innovative structure providing a good range of strength and fracture in relat...
Funding Information: We would like to acknowledge the financial support of the Academy of Finland (d...
Lightweight materials that are simultaneously strong and stiff are desirable for a range of applicat...
Additive manufacturing offers a manufacturing technique to produce complex geometry prototypes at a ...
To construct a hierarchical lattice structure (HLS), truss wall is introduced into ordinary lattice ...
Highly compressible and stretchable lattice materials are perfectly suitable to be exploited in a ra...
The toughness of closed-cell lattice structure was analysed through a set of variables, including th...
Honeycombs and other lattice materials have the advantage that their topology can be designed to ach...
The mechanical properties of seven semi-regular lattices were derived analytically for in-plane unia...
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...
This paper presents a method for the linear analysis of the stiffness and strength of open and close...
AbstractTwo novel statically indeterminate planar lattice materials are designed: a new Kagome cell ...
To create a more sustainable future for aviation, new, lighter-weight structures and materials will ...
Publisher Copyright: © 2021 World Scientific Publishing Europe Ltd.Lattice materials, such as honeyc...
Lattice material is an innovative structure providing a good range of strength and fracture in relat...
Funding Information: We would like to acknowledge the financial support of the Academy of Finland (d...
Lightweight materials that are simultaneously strong and stiff are desirable for a range of applicat...
Additive manufacturing offers a manufacturing technique to produce complex geometry prototypes at a ...
To construct a hierarchical lattice structure (HLS), truss wall is introduced into ordinary lattice ...
Highly compressible and stretchable lattice materials are perfectly suitable to be exploited in a ra...
The toughness of closed-cell lattice structure was analysed through a set of variables, including th...