Lattices with hierarchical architectures exhibit unique geometric and mechanical properties compared with single scale ones. While numerous research efforts have focused on hierarchical strut lattices, hierarchical sheet lattices have yet to be studied in detail. This paper proposes a systemic framework including geometric design, finite element modelling, additive manufacturing, and mechanical testing for hierarchical sheet triply periodic minimal surface (TPMS) lattices such that the lattice walls comprise successively smaller scale TPMS architectures. Geometric properties including relative densities and volume-specific surface areas of hierarchical lattices are analytically calculated and verified via numerical calculations. The compres...
The need for high-performance and lightweight materials which have superior mechanical performance h...
With an increasingly ageing population, challenges within healthcare in the coming decades are expec...
To create a more sustainable future for aviation, new, lighter-weight structures and materials will ...
Three-dimensional lattices have applications across a range of fields including structural light weig...
Three-dimensional lattices have applications across a range of fields including structural lightweig...
Additive Manufacturing (AM) is rapidly evolving due to its unlimited design freedom to fabricate com...
This work deals with the elastic and plastic properties of two-dimensional periodic metamaterials. D...
Porous structures, including those with lattice geometries, have been shown to mimic the mechanical ...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
To construct a hierarchical lattice structure (HLS), truss wall is introduced into ordinary lattice ...
Three-dimensional lattices have applications across a range of fields including structural lightweig...
Three-dimensional lattices have applications across a range of fields including structural lightweig...
This paper proposes a novel methodology to design a family of strut-based lattice structures derived...
In this work, after a general introduction to Lattice structures, the elastic properties of Triply P...
Hierarchical lattices are made of finer lattices in successive smaller scales. This paper analytical...
The need for high-performance and lightweight materials which have superior mechanical performance h...
With an increasingly ageing population, challenges within healthcare in the coming decades are expec...
To create a more sustainable future for aviation, new, lighter-weight structures and materials will ...
Three-dimensional lattices have applications across a range of fields including structural light weig...
Three-dimensional lattices have applications across a range of fields including structural lightweig...
Additive Manufacturing (AM) is rapidly evolving due to its unlimited design freedom to fabricate com...
This work deals with the elastic and plastic properties of two-dimensional periodic metamaterials. D...
Porous structures, including those with lattice geometries, have been shown to mimic the mechanical ...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
To construct a hierarchical lattice structure (HLS), truss wall is introduced into ordinary lattice ...
Three-dimensional lattices have applications across a range of fields including structural lightweig...
Three-dimensional lattices have applications across a range of fields including structural lightweig...
This paper proposes a novel methodology to design a family of strut-based lattice structures derived...
In this work, after a general introduction to Lattice structures, the elastic properties of Triply P...
Hierarchical lattices are made of finer lattices in successive smaller scales. This paper analytical...
The need for high-performance and lightweight materials which have superior mechanical performance h...
With an increasingly ageing population, challenges within healthcare in the coming decades are expec...
To create a more sustainable future for aviation, new, lighter-weight structures and materials will ...